dcsimg

Associations ( anglais )

fourni par BioImages, the virtual fieldguide, UK
Foodplant / open feeder
larva of Arge berberidis grazes on live leaf of Berberis thunbergii

In Great Britain and/or Ireland:
Foodplant / parasite
cleistothecium of Erysiphe berberidis parasitises live twig of Berberis thunbergii

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Comments ( anglais )

fourni par eFloras
The U.S. Department of Agriculture lists Berberis thunbergii as resistant to infection by Puccinia graminis , and the species is widely grown as an ornamental in the United States. Preliminary tests carried out by Agriculture Canada, however, suggest that some strains may be susceptible to Puccinia graminis infection, and cultivation of B . thunbergii is illegal in Canada.
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
citation bibliographique
Flora of North America Vol. 3 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of North America @ eFloras.org
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Flora of North America Editorial Committee
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eFloras.org
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eFloras

Description ( anglais )

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Shrubs , deciduous, 0.3-3 m. Stems dimorphic, with short axillary shoots. Bark of 2d-year stems purple or brown, glabrous. Bud scales 1-2 mm, deciduous. Spines present, simple or 3-fid. Leaves simple; petioles 0-0.8 cm. Leaf blade obovate to spatulate, 1-veined from base, (0.5-)1.2-2.4 × 0.3-1(-1.8) cm, thin and flexible, base long-attenuate, margins plane, entire, apex rounded or obtuse; surfaces abaxially dull, smooth, adaxially dull, scarcely glaucous. Inflorescences umbellate, 1-5-flowered, 1-1.5 cm; bracteoles membranous, apex acute. Flowers: anther filaments without distal pair of recurved lateral teeth. Berries red, ellipsoid or spheric, (7-)9-10 mm, juicy, solid.
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droit d’auteur
Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
citation bibliographique
Flora of North America Vol. 3 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of North America @ eFloras.org
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Flora of North America Editorial Committee
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eFloras.org
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eFloras

Distribution ( anglais )

fourni par eFloras
introduced; N.B., N.S., Ont., P.E.I.; Conn., Del., Ga., Ill., Ind., Iowa, Kans., Ky., Maine, Md., Mass., Mich., Minn., Mo., Nebr., N.H., N.J., N.Y., N.C., Ohio, Pa., S.Dak., Vt., Va., W.Va., Wis., Wyo.; native, Asia (Japan).
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cc-by-nc-sa-3.0
droit d’auteur
Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
citation bibliographique
Flora of North America Vol. 3 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
source
Flora of North America @ eFloras.org
rédacteur
Flora of North America Editorial Committee
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eFloras

Flowering/Fruiting ( anglais )

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Flowering late winter-spring (Mar-May).
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
citation bibliographique
Flora of North America Vol. 3 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
source
Flora of North America @ eFloras.org
rédacteur
Flora of North America Editorial Committee
projet
eFloras.org
original
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eFloras

Habitat ( anglais )

fourni par eFloras
Woods, old fields, roadsides; 0-1300m.
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cc-by-nc-sa-3.0
droit d’auteur
Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
citation bibliographique
Flora of North America Vol. 3 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
source
Flora of North America @ eFloras.org
rédacteur
Flora of North America Editorial Committee
projet
eFloras.org
original
visiter la source
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eFloras

Brief Summary ( anglais )

fourni par EOL authors

Japanese barberry (Berberis thunbergii) is a perennial deciduous shrub native to Japan, now considered a serious invasive in the United States.It is one of about 500 in the genus.This plant was sent from eastern Russia to the Arnold Arboretum in 1875 as a potential ornamental with notable autumn coloration for settlers in New England (Swearingen 2005; Wikipedia 2013).When the European barberry (B. vulgaris), another introduced species widespread in the United States, was found to host the destructive grain fungus black stem grain rust (Puccinia graminis f. sp. tritici), a long federal and state B. vulgaris eradiation campaignbegan in 1918 and the USDA encouraged planting of the closely related Japanese barberry as a fungus-resistant and attractive substitute to B. vulgaris (USDA Agricultural Resource Service 2010; Swearingen 2005).As a result, Japanese barberry now grows throughout the northeastern United States as far west as western North and South Dakota and is still spreading west (Zouhar 2008).

A very adaptable drought- and shade-resistant plant with very low rates of mortality, B. thunbergii grows in a range of habitats from open fields and meadows to wetlands to deep shaded forest, growing up to 8 feet (2.5 m) high, often in dense impenetrable thickets (Grebenstein 2013; Swearingen 2005; Ehrenfeld 1999).Its prolific and readily germinating bright red berries are widely spread by birds and small mammals, but white-tailed deer avoid eating the plant, giving it a competitive advantage over native species, which it easily and completely displaces. In addition to growth from seed, the branches of B. thunbergii root when they touch the ground and root fragments readily sprout to form new individuals, so it is persistant difficult to remove once established.As well as altering native wildlife habitat, Japanese barberry changes the ecology around it by raising the soil pH, altering nitrogen levels and biological activity in the ground, and reducing leaf litter depth in forests (Swearingen 2005; Kourtev et al. 1999; Silander and Klepeis 1999).The Plant Conservation Alliance’s working group lists it as one of the least wanted alien plant invaders of natural areas and recommends against planting it, however it has many popular cultivars and nurseries in the US commonly sell it for landscaping purposes (Swearingen 2005).

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Dana Campbell
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Broad-scale Impacts of Plant Response to Fire ( anglais )

fourni par Fire Effects Information System Plants
More info for the terms: cover, density, forest, invasive species, shrubs, species richness, swamp

Phenology of Japanese barberry at the time of burning may have an impact on its postfire
recovery. Richburg and others [86,88] evaluated the effectiveness of applying cutting and
burning treatments at different times of year in reducing sprout "vigor" for 7
woody invasive species including Japanese barberry. All treatments, regardless of timing,
reduced Japanese barberry cover for over 1 year, with a decrease of nearly 90% in treatments
that included a burn [86,88]. Japanese barberry sprout height, biomass, and density were
generally similar between cut plots and burned plots but were not compared to control plots [88].
Although differences were not significant, total nonstructural carbohydrate (TNC) levels
were lower than controls in the April-treated Japanese barberry and remained depleted
throughout the growing season. Any depleted TNC in treated plants returned to levels
comparable to those of the control plots after 1 growing season without treatments. Species
richness did not appear to be affected by treatments [86].

In the Berkshire region of western Massachusetts, Japanese barberry occurs on 2
parcels owned by The Nature Conservancy: The Bartholomew site is a mature deciduous forest
dominated by sugar maple, black birch, and white ash, with an understory dominated by
Japanese barberry, with an average cover of 70%. No other species had a cover value above
10% in Japanese barberry thickets. The Bear Rock site is a forested swamp dominated by white
ash and red maple with an understory dominated by Morrow's honeysuckle with Japanese barberry
and other nonnative shrubs as common associates. Four plots at each site were randomly assigned
to 1 of 4 understory treatments in 2001: 1) untreated control, 2) dormant-season burn (or cut
if unable to burn), 3) growing-season cut and burn combination, and 4) repeated growing-season
cuts. All growing-season treatments were cut again in 2002. The "dormant-season" burn
at the Bartholomew site was conducted on 19 April 2002, after leaf-out of Japanese barberry.
Therefore, this should be considered a growing-season treatment for Japanese barberry.
Researchers were unable to ignite Japanese barberry slash in treated stands during the growing
season (August). However, burning was accomplished in November of the same year [86,88].

Following treatments at the Bartholomew site, Japanese barberry cover decreased to less
than 6% in the plots that included burning, but only decreased by about one-third (to 23% cover)
in the cut-only plot. At the Bear Rock site, Japanese barberry cover declined following
treatments, with the greatest declines in growing-season-treated plots [86,88].

Percent cover of Japanese barberry before and
after cutting and burning treatments at 2 sites in Massachusetts [86,88]
Site

Year measured


Treatments (dates)


Control

Cut (6 July 2001)
Burn (18 Nov 2001)
Cut (25 July 2002)

Cut (6 July 2001)
Cut (25 July 2002)

Burn
(19 April 2002)


Bartholomew (upland forest)
2001*
80.9
83.3
85.9
31.3
2003**
72.5
5.1
23.3
2.9
 

Control


Cut (10 July 2001)
Burn (18 Nov 2001)

Cut (13 June 2002)
Cut (24 July 2002)
Cut (10 July 2001)
Cut (13 June 2002)
Cut (24 July
2002)
Cut
(12 April 2002)
Bear Rock
(forested swamp)
2001
4.2
7.1
12.2
2.9
2003
4.8
0.7
3.7
1.4
*Pretreatment measures conducted
prior to initial treatment.

**Posttreatment measures conducted 20 August and 21 September.

Japanese barberry sprout height, biomass, and density were compared among
treated plots but were not compared to control plots. At Bear Rock, Japanese
barberry sprout heights were generally similar on growing-season treatment
plots, while the dormant-season cut had the tallest sprout heights [88]. Dormant-
season-treated Japanese barberry plants had more than 6 times the biomass of the
growing-season-treated plants, a result that cannot be explained solely by the
difference in amount of growing time before harvest. Japanese barberry sprout
density was similar among all treated sites [88].

Although differences were not significant, TNC levels were lower than controls
in April-treated Japanese barberry and remained depleted throughout the growing
season. TNC levels in treated plants returned to levels similar to those in untreated
control plants after 1 growing season without treatments [86,88].

Species richness and understory species cover did not change at the Bartholomew
site after treatment. Richness values were not given for the Bear Rock site [86,88].

Species richness (number of species) before and
after cutting and burning treatments at Bartholomew [86,88]
Site

Year measured


Treatments (dates)


Control

Cut (6 July 2001)
Burn (18 Nov 2001)
Cut (25 July 2002)

Cut (6 July 2001)
Cut (25 July 2002)

Burn
(19 April 2002)


Bartholomew
2001*
43
44
32
47
2003**
44
45
27
43
*Pretreatment measures conducted
prior to initial treatment.

**Posttreatment measures conducted 20 August and 21 September.
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citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Common Names ( anglais )

fourni par Fire Effects Information System Plants
Japanese barberry
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cc-publicdomain
citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Conservation Status ( anglais )

fourni par Fire Effects Information System Plants
Japanese barberry is considered a pest species with varying degrees of invasiveness throughout its North American range. Information on state-level noxious weed status of plants in the United States is available through Plants Database.  Invasiveness rankings are available through individual pest plant councils and land management agencies (e.g., [49,72,94,102,103,104,107,109]).
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cc-publicdomain
citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Description ( anglais )

fourni par Fire Effects Information System Plants
More info for the terms: cover, density, fruit, genet, leaf area index (LAI), root crown, seed, shrub, shrubs

This description provides characteristics that may be relevant to fire ecology and is not meant for identification. Keys for identification are available in these sources: [8,34,36,73,89,98,111].

Aboveground description: Japanese barberry is a deciduous shrub, usually about 3 to 6 feet (1-2 m) tall but ranging from about 1 to 10 feet (0.3-3 m) tall [34,36,45,84,98,100]. Shrubs have multiple stems [55] originating from the root crown, plus shoots arising from rhizomes at variable distances from the root crown [27]. Individual shrubs are typically dense and compact [36,84,93,100] and usually broader than tall at maturity, with widths of 3 to 8 feet (1-2.5 m) [88]. Stems may be erect to decumbent [27], and have short axillary shoots [34] and dense, spreading branches [36]. Ehrenfeld [27] also refers to shoots arising from stolons. Aerial stems have simple, short, stiff spines [34,36,45,73,84,93,98] and dense foliage [45]. Leaves are simple and entire [34,36,73,84], typically about 0.2 to 1 inch (0.5-2.5 cm) long and 3 to 18 mm wide [34,84,100], with short petioles, 0 to 8 mm [34,36]. Flowers are 8 to 15 mm wide [34,36,84] and solitary or borne in small, umbellate clusters of 2 to 5 flowers [34,36,73,84,98,100,111] along the entire length of the stem [100]. Fruits are bright red berries [34,84,100] with dry flesh [13,73], about 7 to 11 mm long [34,36,84,100].

Cultivars of Japanese barberry vary mainly in foliage color, growth habit (size and shape), fruit production, germination, and seedling establishment [60,62].

Belowground description: Japanese barberry has a large, shallow root system with rhizomes and many fine roots radiating from a root crown [55]. Japanese barberry populations studied on invaded sites at 3 locations in northern New Jersey produced large amounts of fine-root biomass in the surface soils, about 3 times the root biomass of native blueberries in the same areas [29]. Sprouts occur from rhizomes at variable distances from the root base and form diffuse swarms of stems [27].

Plant growth form and stand structure: Japanese barberry populations range from small plants occurring at low densities to dense stands with up to 40 stems/individual, 36 stems/m² [27], and few plants growing under the crown area [55]. Japanese barberry stems arise from seeds, sprout from the root crown, sprout from rhizomes, and arise from the rooting of long stems that touch the ground at variable distances from the root base. These many forms of reproduction can result in diffuse swarms of stems covering a large area, making it difficult to determine the limits of an individual genet [27].

The combination of multiple forms of population growth and low mortality rates allows Japanese barberry to produce dense, persistent populations. A survey of Japanese barberry populations in Morristown National Historic Park found the average number of Japanese barberry individuals ranged from 0.08 individuals/m² in a sparse population to 3.95 individuals/m² in a dense population. The average number of stems/individual ranged from 2.4 in a sparse population to 8.2 in a dense population. The average density of stems ranged from 0.53 stems/m² in a sparse population to 16.78 stems/m² in a dense population. Small, upright stems less than 20 inches (50 cm) long were most abundant in all populations regardless of density. Stems longer than 20 inches were more abundant in dense versus sparse populations [27]. Average stem density of Japanese barberry on invaded sites at 3 other locations in northern New Jersey was 3.99, 5.01, and 3.66 stems/m². Average aboveground biomass of Japanese barberry ranged from 4 to 44 times the average aboveground biomass of the native blueberry understory [29]. At 2 forested sites in western Massachusetts, Japanese barberry was the dominant understory species, forming thickets 6 feet (2 m) in height. At one site Japanese barberry stem density was 12 stems/m² and leaf area index (LAI) was 1.7; at another site Japanese barberry stem density was 14 stems/m² and LAI was 2.0 [11].

Ehrenfeld [27] observed on New Jersey study sites that Japanese barberry population growth accelerates rapidly, due to greater recruitment as density increases and low mortality rates. Japanese barberry seedling establishment was proportional to shoot density, so that as plants grew in size, local recruitment from seed increased. Rates of individual stem mortality were low (0.04-0.05 individuals/m²/year). Even in the densest population, survivorship of individuals was 95% to 96%. Dead stems remained standing for several months [27]. On research plots where Japanese barberry plants were removed in southern Maine, density of Japanese barberry seedlings was not correlated with pretreatment cover of Japanese barberry. However, there was a marginally significant (P=0.055) trend of increased abundance of sprouts with increased initial Japanese barberry cover. The author speculated that the abundance of Japanese barberry sprouts on plots with high Japanese barberry cover would likely increase with additional growing seasons [14].

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citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Distribution ( anglais )

fourni par Fire Effects Information System Plants

Japanese barberry is not native to North America, but was introduced in the 1800s. At the time of this writing (2008), Japanese barberry distribution in North America is from Quebec and Ontario in Canada, south to Georgia and Tennessee, and westward to the eastern edge of North and South Dakota, Nebraska, and Kansas [34,47,105]. In the United States it is most abundant throughout the Northeast with the exception of northern Maine and northern Vermont [71]. Silander and Klepis [92] provide detailed documentation of the spread of Japanese barberry in the northeastern United States over the past century. Japanese barberry is less common where it occurs west of the Mississippi River and south of North Carolina [105]. At the western extreme of its distribution, it is reported from Crook County in Wyoming [24,105]. Flora of North America and Plants Database provide general distribution maps of Japanese barberry.

Japanese barberry is a popular ornamental and landscape plant [95,96]. Local florae indicate that Japanese barberry is commonly planted and escapes cultivation in the northeastern United States and adjacent Canada [13,36] including Ontario [93], Nova Scotia [89], Michigan [111], Illinois [73], Ohio [8], and West Virginia [98]; and the Blue Ridge Mountain counties in North Carolina [84,117], South Carolina, and Virginia [117]. Barton and others [3] found that Japanese barberry spread from intentional plantings in a rural town in western Maine into surrounding deciduous forests, although it did not appear to be invasive in that area at the time of the study (2001-2002).

Japanese barberry is native to Japan [34]. A review by Wells and Brown [114] states that Japanese barberry was documented in the United States by 1818. Other accounts indicate that Japanese barberry seeds were received at the Arnold Arboretum in Boston around 1875 and from there were distributed for cultivation in the United States [96]. Japanese barberry was promoted as a substitute for common barberry, which was introduced to North America by early settlers from Europe for hedgerows, dyes, and jams, and later found to be a host for black stem rust (Puccinia graminis) of wheat and consequently eradicated [100]. Most Japanese barberry cultivars are resistant to infection by black stem rust and are therefore approved for cultivation in the United States by the USDA, Agricultural Research Service. Fewer cultivars are approved by Agriculture Canada for cultivation in Canada. However, Japanese barberry is considered invasive in many areas (see Other Status), although some cultivars may be less invasive than others (see Regeneration Processes).

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citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Fire Ecology ( anglais )

fourni par Fire Effects Information System Plants
More info for the terms: basal area, cone, cover, density, fire exclusion, fire frequency, fire management, fire occurrence, fire regime, forest, frequency, fuel, hardwood, invasive species, litter, low-severity fire, natural, nonnative species, potential natural vegetation, prescribed fire, root crown, seed, shrub, total heat release

Fire adaptations: As of this writing (2008) the available literature did not include descriptions of fire adaptations in Japanese barberry. Fire likely only top-kills Japanese barberry and does little damage to belowground organs. Japanese barberry is likely to sprout from the root crown or rhizomes after fire, as was observed after prescribed burning and cutting treatments in Massachusetts forests (see Fire Effects).

Japanese barberry can probably establish after fire from off-site seed sources and possibly from the soil seed bank as suggested in a review by Huebner [41], although limited seed banking information suggests that substantial seed banking is lacking for this species. More information is needed on seed banking and heat tolerance of Japanese barberry seed.

FIRE REGIMES: While it is unclear what type of fire regime Japanese barberry is best adapted to, it most commonly occurs in northern hardwood forests (see Habitat Types and Plant Communities) that experience long fire-return intervals (see Fire Regime table, below), and it has been suggested that repeated fires decrease Japanese barberry abundance [41]. Wind and insects are more common disturbance agents than fire in northern hardwood forests, and fire-return intervals in these forests have been estimated at several hundred to several thousand years (e.g., [31]). Japanese barberry may also occur on sites with potential natural vegetation that is adapted to more frequent fire, such as oak-hickory communities. However, at 3 sites in New Jersey, oak basal area was significantly lower (P<0.05) on Japanese barberry invaded versus uninvaded areas; and yellow-poplar and white ash basal area tended to be greater in invaded areas [52].

Plant communities in the northeastern United States have been severely altered by human settlement during the past several centuries, and the potential natural vegetation may be difficult to discern on many sites. FIRE REGIMES have also been altered by European settlement. In some cases, such as in northern hardwood forests, fire occurrence may have increased; but overall, with fire exclusion policies beginning around the 1920s, fire occurrence decreased throughout the eastern United States. As a result, many oak-hickory and other communities previously maintained by fire have converted to closed-canopy forests; and shade-tolerant, fire-sensitive plants have begun to replace sun-loving, fire-tolerant plants. Thus a cool, damp, shaded microenvironment with less flammable fuel beds develops and favors shade-tolerant mesophytic species over shade-intolerant, fire-adapted species [79]. More moist, shady conditions may favor the persistence and spread of Japanese barberry in some areas (see Site Characteristics).

Fuels: According to a review by Richburg and others [88], fuels from woody invasive species in the northeastern United States can be categorized into 2 types: 1) those that increase a fire hazard and 2) those that do not increase the fire hazard of an area. While Japanese barberry may increase biomass in the shrub layer on invaded sites [21,29] and may be more flammable than associated native species [22], unsuccessful attempts to use prescribed fire in invaded stands during the growing season suggest that Japanese barberry probably does not increase the fire hazard in invaded communities during the growing season [88].

Shrub cover, height, and frequency were higher in invaded versus uninvaded forests where Japanese barberry occurred in New Jersey and Maine. In a mixed-deciduous forest in New Jersey, the average aboveground biomass of Japanese barberry ranged from 4 to 44 times the average aboveground biomass of the native blueberry understory [29]. In eastern white pine forests on old fields and in mixed hardwoods on the Rachel Carson National Wildlife Refuge in Maine, Japanese barberry was in some areas "a wall of thorny vegetation" that might present "a substantial live fuel that is significantly more abundant than the shrub layer in a nearby uninvaded stand". The authors suggest that this could either increase or decrease fire frequency and intensity, and that fire behavior may vary according to the heat content of the invasive species [21]. Based on this hypothesis, combustion characteristics of foliage and twigs of several eastern native and nonnative species were measured in a cone calorimeter. The average heat of combustion (15.63 MJ/kg) and total heat release (14.55 MJ/kg) for Japanese barberry were higher than those of most other species tested. However, a comparison of invasive plants, including Japanese barberry, and co-occurring noninvasive plants, found that the average heat of combustion was significantly (P<0.0001) higher for the noninvasive species as a group. Average time to sustained ignition and peak heat release rate were also presented. See Dibble and others [22] for details.

Japanese barberry generally invades areas that rarely burn and does not seem to increase the threat of fire [88]. Sites invaded by Japanese barberry may have less surface fuel, as Japanese barberry density was negatively correlated (P<0.05) with litter layer and organic horizon thickness on invaded sites in New Jersey [52] (see Soil characteristics). Treatments to control Japanese barberry, such as cutting, can increase the fuel load, but probably not enough to present a hazard during the growing season (see Fire Management Considerations). Researchers were unable to ignite Japanese barberry slash during the growing season in treated stands in mature deciduous forest sites dominated by sugar maple, black birch, and white ash. However, dormant-season burning was accomplished in November and April in treated and untreated Japanese barberry stands, respectively [88].

The following table provides fire regime information on vegetation communities in which Japanese barberry is most likely to be a common or dominant component, based on descriptions in available literature. The table does not include plant communities across the entire distributional range of Japanese barberry. Find further fire regime information for the plant communities in which this species may occur by entering the species name in the FEIS home page under "Find FIRE REGIMES".

Fire regime information that may be relevant to Japanese barberry. For each community, fire regime characteristics are taken from the LANDFIRE Rapid Assessment Vegetation Models [57]. These vegetation models were developed by local experts using available literature, local data, and/or expert opinion as documented in the PDF file linked from the name of each Potential Natural Vegetation Group listed below. Cells are blank where information is not available in the Rapid Assessment Vegetation Model. Great Lakes Northeast Southern Appalachians Great Lakes Vegetation Community (Potential Natural Vegetation Group) Fire severity* Fire regime characteristics Percent of fires Mean interval
(years) Minimum interval
(years) Maximum interval
(years) Northern hardwood maple-beech-eastern hemlock Replacement 60% >1,000     Mixed 40% >1,000     Northern hardwood-eastern hemlock forest (Great Lakes) Replacement 99% >1,000     Oak-hickory Replacement 13% 66 1   Mixed 11% 77 5   Surface or low 76% 11 2 25 Northeast Vegetation Community (Potential Natural Vegetation Group) Fire severity* Fire regime characteristics Percent of fires Mean interval
(years) Minimum interval
(years) Maximum interval
(years) Northern hardwoods (Northeast) Replacement 39% >1,000     Mixed 61% 650     Eastern white pine-northern hardwoods Replacement 72% 475     Surface or low 28% >1,000     Northern hardwoods-eastern hemlock Replacement 50% >1,000     Surface or low 50% >1,000     Northern hardwoods-spruce Replacement 100% >1,000 400 >1,000 Appalachian oak forest (dry-mesic) Replacement 2% 625 500 >1,000 Mixed 6% 250 200 500 Surface or low 92% 15 7 26 Beech-maple Replacement 100% >1,000     Northeast spruce-fir forest Replacement 100% 265 150 300 Southern Appalachians Vegetation Community (Potential Natural Vegetation Group) Fire severity* Fire regime characteristics Percent of fires Mean interval
(years) Minimum interval
(years) Maximum interval
(years) Mixed mesophytic hardwood Replacement 11% 665     Mixed 10% 715     Surface or low 79% 90     Eastern hemlock-eastern white pine-hardwood Replacement 17% >1,000 500 >1,000 Surface or low 83% 210 100 >1,000 *Fire Severities:
Replacement=Any fire that causes greater than 75% top removal of a vegetation-fuel type, resulting in general replacement of existing vegetation; may or may not cause a lethal effect on the plants.
Mixed=Any fire burning more than 5% of an area that does not qualify as a replacement, surface, or low-severity fire; includes mosaic and other fires that are intermediate in effects.
Surface or low=Any fire that causes less than 25% upper layer replacement and/or removal in a vegetation-fuel class but burns 5% or more of the area [38,56].
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cc-publicdomain
citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Fire Management Considerations ( anglais )

fourni par Fire Effects Information System Plants
More info for the terms: flame length, fuel, nonnative species, prescribed burn, prescribed fire

Potential for postfire establishment: Although only one study was found for this review that reports postfire establishment of Japanese barberry [77], managers should be alert to this possibility given the ability of Japanese barberry to establish in early successional environments (see Establishment and persistence in early succession).

Using prescribed fire to control Japanese barberry: A review by Johnson [45] suggests that prescribed fire has successfully reduced Japanese barberry populations in midwestern oak savannas. Similarly, a review by Huebner [41] suggests that Japanese barberry may be reduced in community importance after repeated (annually consecutive for at least 2 to 5 years) growing-season (spring to early summer) fires. Japanese barberry response to repeated prescribed fires or prescribed fires in oak savannas are not documented elsewhere in the available literature as of 2008.

Richburg and others [88] suggest that an ideal treatment scenario to control woody invasives would include cutting early in the growing season followed by burning later in the season but before sprouting plants have fully recovered their root TNC reserves. This would force the plants to sprout again and further deplete their reserves. If the fire treatment occurs in mid- to late summer, plants would enter the dormant season with substantially reduced potential for "vigorous" growth the next spring. Reserves can be further depleted by treating multiple times during the growing season, although several years of treatments would still be required. The limit to the number of treatments applied depends on how quickly the target species can resprout and the period of time over which it will continue to resprout before going dormant. Generally, the first treatment should be mechanical followed by a prescribed burn to remove slash. Removal treatments after fire would have to be mechanical, because the prescribed burn would leave insufficient fine fuels to allow a second burn within the same season. Japanese barberry leafs out much earlier than native species. Therefore, it may be possible to apply an early spring treatment after root carbohydrate depletion begins in Japanese barberry but prior to depletion of native species’ reserves (review by [88]).

The 2 sites in Massachusetts studied by Richburg and others [86,88] are managed for rare plant and animal habitat including an intensive program to eradicate nonnative species. Management plans include utilizing fire where practicable to control invasives and/or maintain habitat structure. The invaded sites are in areas where fine fuels decompose quickly and fires rarely burn, so a prescribed fire is not always possible. A "dormant-season" prescribed fire was accomplished in early April at the Bartholomew site, at which time Japanese barberry had already leafed out while the native species had not. Japanese barberry did not burn in the growing season even when cut in advance. Mechanical treatments such as cutting can increase the fuel load, after which prescribed fire may be used to reduce slash or to clear out thick brush to make additional control methods easier to apply. However, fuels were too sparse after cutting Japanese barberry in July 2001 to carry fire in August 2001. A second attempt at burning was successfully completed after leaf fall in November 2001 [88]. Fuel characteristics and fire behavior at this site are shown in the tables below.

Japanese barberry fuel loads for untreated (control) and treated (cut) plots calculated from 40 × 40 cm harvest plots [88] Treatment 1-hr woody
(tons/acre) 1-hr nonwoody
(tons/acre) 10-hr woody
(tons/acre) Control 0.5 2.8 0.9 Cut 1.6 1.5 1.5
Flame length and rate of spread for head fires in Japanese barberry fuels in untreated (control) and cut plots [88] Treatment Burn date Flame Length (ft) Rate of Spread (ft/min) Control November 1 NA* Cut November 1 3 Cut August 0 0 *NA = data not available.

Fuel models: Custom fuel models were constructed for Japanese barberry under 3 conditions: untreated control, growing-season cut, and dormant-season cut. The custom fuel model predicted fire behavior well in the dormant season, but predicted greater flame length and rate of spread than was observed in the growing season. Generally, these custom fuel models did not perform any better than standard fuel models for predicting fire behavior in Japanese barberry. See Richburg and others [88] for further details.

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Growth Form (according to Raunkiær Life-form classification) ( anglais )

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More info for the terms: chamaephyte, geophyte, phanerophyte

RAUNKIAER [85] LIFE FORM:
Phanerophyte
Chamaephyte
Geophyte
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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Habitat characteristics ( anglais )

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More info for the terms: basal area, cover, density, forest, frequency, hardwood, herb, herbaceous, invasive species, litter, mesic, organic soils, presence, reclamation, seed, shrub, shrubs, soil moisture regimes, stratification, tree, xeric

In parts of North America where invasive populations of Japanese barberry occur, characteristics that influence its distribution at landscape and site scales include climate and microclimate, current and past land use, and soil characteristics. In general, Japanese barberry seems to prefer mesic conditions, and invasive populations often occur near homesites, roads, and trails [11,26,36,65,101,118]. Japanese barberry can occur in relatively undisturbed forest [11,26], and invasive populations are often described in second-growth forests that were formerly cleared for agriculture or timber harvest [101,118], especially former pastures [101]. While Japanese barberry often occurs on soils with higher pH and available nitrate than uninvaded sites [20,52,54], these soil characteristics likely resulted from Japanese barberry invasion, rather than the reverse (see Soil characteristics and feedback loops).

Japanese barberry is included among those shrubs that can "tolerate adverse site conditions" such as high acidity, low fertility, and shallow soil [42]; and it is included in a list of shrubs recommended for strip-mine reclamation [43]. Japanese barberry is not salt tolerant [74,75].

Silander and Klepis [92] suggest that the northern limits of Japanese barberry distribution are probably set by low temperature tolerances, the southern limits by cold stratification requirements (see Germination), and the western limits by drought tolerance.

Japanese barberry is less common and probably less invasive in some parts of its North American range than others. Its site affinities in some of these outlying areas are described as follows: Japanese barberry occurs occasionally in woods, swamps, fields, and dunes in Michigan [111]; is an infrequent escape to woodlands in the Blue Ridge Mountain counties of Virginia, North Carolina, and South Carolina [117]; occurs rarely on wooded slopes in scattered localities in North Carolina [84]; and occurs in streambank thickets in Wyoming [24]. On 14 forested sites in central and southern Indiana, Japanese barberry did not occur more than 33 feet (10 m) from the road [35]. In a survey of edge vegetation in 7 old-growth forests in central Indiana, Japanese barberry occurred on only 1 out of 14 edges surveyed, an edge that had a southwestern aspect [9].

Flora of North America [34] reports an elevational range of 0 to 4,270 feet (0-1,300 m) for Japanese barberry.

General climate and microclimate: Japanese barberry has a wide distribution in the eastern United States. However, it appears to be most invasive from Maryland and Pennsylvania to the north and east, as several sources (for example, [14,20,120]) describe dense thickets occurring in parts of this region. The table below provides general climatic characteristics given in this literature:

Climatic characteristics of some locations where Japanese barberry occurs in dense stands and is considered invasive Location Average maximum temperature (°C) Average minimum temperature (°C) Average annual precipitation (mm) Monhegan Island, Maine 22.1 in August -7.8 in January 1,129 Wells Research Reserve, Maine 24.6 in July -11.1 in January 1,219 [14] Quabbin Reservoir Reservation, Massachusetts 21 in July -3 in January 1,140 [20] Black Rock Forest, New York 24.4 in July -2.7 in January 1,200 [120]

Within these areas, Japanese barberry occurs on a variety of microsites, ranging from wetlands with saturated, organic soils to xeric ridgetops [27,52,92], but it seems to prefer mesic conditions is not as common on extremely wet or dry sites [92]. Dense populations of Japanese barberry often occur on soils derived from glacial till [11,14,20,69] with loamy textures [20,52,54,114] that are well drained to excessively well drained [14,20,114]. In Platt Park near Southbury, Connecticut, Japanese barberry thickets persisted on the lower portion of southeastern slopes in a "rich and moist hardwood forest", with "mesic conditions" due to an abundance of seepage water, protection from desiccating winds, and "cool" air temperatures throughout the year [69]. In a forest on the southeastern slope of the tallest hill on Monhegan Island in southern Maine, transects through Japanese barberry infestations ran through a wetland, but no Japanese barberry occurred in the wetland itself [14]. In the University of Connecticut Forest near Storrs, Connecticut, dense, continuous populations of Japanese barberry occurred on soils varying from moderately well-drained Dystrochrepts to poorly drained Humaquepts. Soil moisture content on these sites varied from 19% to 39%. Transplant experiments in the greenhouse suggest that Japanese barberry tolerates a full range of soil moisture regimes from very poorly drained soils with soil moisture content greater than 40%; to dry ridgetops with thin soil; to coarse-textured, extremely well-drained soils with soil moisture less than 10%. However, established adults were not found on these extreme sites in the field, probably because seedlings could not establish under those conditions [92].

Current and past land use: Japanese barberry was introduced to North America as an ornamental and landscape plant, and some of the densest populations in forested New England landscapes occur around homesites where it was planted [11,26,65,101] and along roads [26,65]. In a study of farms in northeastern Connecticut, researchers observed very high barberry densities around orchards and house sites, although too few of these site types were sampled to allow statistical comparison to other site types [101]. Observations in Quabbin Watershed in central Massachusetts indicate that while scattered populations of Japanese barberry occurred throughout the watershed, the propagule sources for those populations were probably the large populations found along cellar holes of old homesteads in the area [11]. In an informal survey of forest preserves in the New York Metropolitan region, some of the populations described by respondents and observed by the author clearly originated from old hedgerows, former homesteads, or inhabited areas adjacent to the forests [26]. In the Quinebaug Highlands of northern Connecticut and southern Massachusetts, current land development was strongly correlated with invasive plant cover and richness (P<0.001). Several nonnative invasive species were included in this study and, based on mean cover and frequency in invaded plots, the 3 most common invasives were Japanese barberry, Oriental bittersweet (Celastrus orbiculatus), and multiflora rose [65].

Mean frequency and cover of Japanese barberry on plots varying in level of land development [65]

Development

n Frequency (%) Cover (SE) (%) 0 houses 118 26.3 0.74 (0.30) 1-2 houses 21 42.9 3.33 (1.44) 3-5 houses 29 48.3 0.66 (0.52) 6-8 houses 12 66.7 0.50 (0.42) >8 houses 8 62.5 0.00 (±0.00)

Japanese barberry also commonly occurs along roads, with populations often extending into the forest away from the road edge [26]. In the Quinebaug Highlands, richness, cover, and frequency of all invasives studied increased with increasing road size. Richness and cover of invasive plants were significantly greater along paved roads than along trails or in unfragmented forest (P<0.0001) [65].

Mean frequency and cover of Japanese barberry on plots associated with different road types, listed in order of increasing size and associated disturbance [65]

Road type

n Frequency (%) Cover (SE) (%) Forest 42 16.7 0.60 (0.49) Trail 20 30.0 0.00 (0.00) Dirt 56 39.3 1.46 (0.58) Paved 70 45.7 1.07 (0.46)

Studies in Massachusetts [20] and northern Connecticut [65,101] found that past land use was a strong predictor of Japanese barberry abundance. While modern edaphic characteristics explain a substantial portion of the variation associated with Japanese barberry distribution in the Quabbin Watershed, knowledge of land-use history considerably improved understanding of Japanese barberry population densities and potential invasion mechanisms. A survey of 159 forested polygons found that distance to potential seed sources and postintroduction land use were significantly (P<0.001) better predictors of Japanese barberry abundance than preintroduction or modern land uses or soil characteristics. Recent harvesting did not influence Japanese barberry occurrence or abundance [20]. Similarly, Townesmith [101] found that on old farms in northeastern Connecticut, sites that had historically been used as pastures had the highest levels of Japanese barberry, followed by formerly mowed fields and woodlots. Formerly plowed fields had the lowest barberry densities [101]. Prevalence of contemporary and former agricultural fields in southeastern New Hampshire was the most influential feature affecting both establishment and spread of nonnatives including Japanese barberry. Japanese barberry presence was negatively correlated with road area within 0.6 mile (1 km) of occurrence and positively correlated with agricultural land within 0.6 mile of occurrence (P<0.05) [46].

In the Quinebaug Highlands, Japanese barberry had the highest frequency in former fields, former residential areas, and current fields (land use not specified). However, abundance of all invasive species studied was influenced more strongly by past land use than current land use. These relationships varied among individual species [65].

Frequency and cover of Japanese barberry in plots adjacent to former (1934) and current (1990) forest, field, or residential land [65]

Plot type

n

Frequency (%)

Cover (SE) (%)

Former forest 110 29.1 0.54 (2.66) field 47 61.7 2.62 (0.83) residential 3 66.7 0.00 (0.00) Current       forest 137 27.0 0.68 (0.26) field 23 65.2 3.00 (1.32) residential 28 53.6 0.71 (0.56)

See Successional Status for more information on the effects of land use and disturbance on Japanese barberry establishment, persistence, and dominance.

Soil characteristics and feedback loops: Japanese barberry occurrence is often associated with less acidic soils than uninvaded sites [20,52], and occurrence [54] and productivity [12,39] are associated with greater nitrate availability. Investigators have provided evidence that, rather than these soil characteristics contributing to site invasibility, these differences in soil characteristics between invaded and uninvaded sites likely resulted from Japanese barberry invasion and contribute to its persistence [29,51,53,54,55]. The relationship between abundance of Japanese barberry and soil characteristics has been examined by several investigators on 3 deciduous hardwood forest sites in northern New Jersey, and in the Quabbin Watershed in central Massachusetts.

Field studies on 3 deciduous hardwood forest sites in northern New Jersey [52,54] followed by greenhouse studies [29,51,53,55] found pronounced differences in soil characteristics between invaded versus uninvaded sites that seemed attributable to the presence of Japanese barberry. Invaded sites had understories dominated by Japanese barberry in the shrub layer and most invaded sites were dominated by Japanese stiltgrass in the herb layer. Understories on uninvaded sites were dominated by deerberry and hillside blueberry in the shrub layer, and native herbaceous cover was low. See Habitat Types and Plant Communities for a description of the vegetation on these sites [52]. Soil pH was significantly higher, although more variable (ranging from 3.92 to 7.66), and litter and organic horizons were significantly thinner in invaded versus uninvaded areas (P<0.05). Japanese barberry density was negatively correlated with organic horizon thickness and oak basal area at all 3 sites; negatively correlated with litter layer thickness and native blueberry basal area at 2 sites; and positively correlated with pH at all 3 sites (P<0.05) [52]. Total soil carbon, total soil nitrogen, and net ammonification rates were higher under native vegetation; and soil pH, available nitrate, and net potential nitrification were significantly higher (P<0.001) in soils under Japanese barberry. Nitrate reductase activities were much higher in the leaves of Japanese barberry than in leaves of most native species tested, suggesting that Japanese barberry is better able to utilize the higher nitrate supplies. Earthworm densities were also higher in the soil under Japanese barberry as compared with soils under native blueberry and huckleberry (Vaccinium spp.). Because earthworms are associated with surface litter incorporation, increased pH, and increased nitrification, the authors suggest that the worms may have helped create a soil environment that promotes the growth of Japanese barberry more than native shrubs [54].

Because the land use history is not different between invaded and uninvaded sites, the researchers hypothesized that differences in soil characteristics may be caused by the Japanese barberry invasion itself, rather than having occurred prior to invasion [52]. Further research demonstrated that differences in soil pH, nitrification rates, and net nitrogen mineralization rates could be replicated in the greenhouse by growing Japanese barberry in previously uninvaded soil, indicating that these differences result from the presence of Japanese barberry plants [29]. Additional studies provided evidence that these changes in soil characteristics occurred via changes in the composition and activity of the soil microbiota [51,53,55]. These results demonstrate that Japanese barberry presence can rapidly alter the soil microbiota and associated soil characteristics (nitrogen availability and pH) and processes (nitrogen mineralization) on invaded sites [51].

Changes in soils that alter growth of invasives may be an important component of site invasibility [29]. Japanese barberry produces a large amount of leaf, stem, and fine-root biomass, all of which have higher nitrogen concentrations than the native tree and shrub species in the northern New Jersey studies. Consequently, Japanese barberry litter is higher in nitrogen and decomposes more rapidly than litter of the native species, with little or no net immobilization of nitrogen. High concentrations of nitrate reductase in Japanese barberry leaves imply high rates of nitrate uptake, which is supported by both pot and field studies [54]. Studies in the Quabbin Watershed suggest that nitrogen availability was the primary limitation to Japanese barberry dominance on study sites. Nitrogen availability limited barberry growth and productivity but soil acidity or rock-derived nutrients (calcium, phosphorus, potassium, and manganese) did not. Relative growth rate and foliar nitrogen concentration of barberry were correlated with rates of nitrogen mineralization and nitrification (P<0.05), but not correlated with soil pH [12]. Harrington and others [39] found that higher nitrogen availability led to higher foliar nitrogen content, increased photosynthesis at light saturation, and greater specific leaf area in Japanese barberry, suggesting that increased allocation to leaves and increased foliar nitrogen both contributed to increased production.

Japanese barberry may thus promote a positive feedback loop in which the species increases the rate of net nitrification and and available nitrate, which it preferentially takes up to support its large biomass. Increases in the size and density of shrubs [27] then augment the input of rapidly degradable leaf litter to the forest floor and large amounts of nitrogen-rich fine root litter to the soil. This promotes increased nitrification, resulting in greater nitrate availability, which favors Japanese barberry over native shrubs [29].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Immediate Effect of Fire ( anglais )

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As of this writing (2008), no accounts in available literature describe immediate effects of fire on Japanese barberry. Fire likely only top-kills Japanese barberry and does little damage to belowground organs, based on a single field study describing its postfire response [86,88]. It is possible that severe fire may kill entire plants, although this is not documented. No information was available on fire effects on or heat tolerance of Japanese barberry seed.
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citation bibliographique
Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Impacts and Control ( anglais )

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More info for the terms: fire management, forest, fruit, invasive species, natural, presence, restoration, seed, shrub, shrubs

Impacts: Information regarding Japanese barberry impacts in invaded communities includes evidence that Japanese barberry invasion displaces native shrubs [52] and causes changes in soil properties (see Soil characteristics and feedback loops). On a study site in northern New Jersey dominated by Japanese barberry, the native understory shrubs deerberry and hillside blueberry were significantly (P<0.05) less abundant than on uninvaded sites [52]. Japanese barberry persistence in invaded stands may also alter successional patterns (see Successional Status).

Japanese barberry invasion can alter soil microbial composition and increase nitrate concentrations [51,53,55]. High nitrate concentrations may result in higher nitrogen losses due to leaching or might make these sites more susceptible to invasion by other weedy plants. The researchers suggest that even if Japanese barberry is removed, "it is very likely that differences in the soils will persist for a prolonged period after that, which might significantly impede the restoration of native flora in the cleared sites" [54].

One study also provides evidence that invaded sites support more biomass in the shrub layer than uninvaded sites [29]. There is concern that additional biomass in invaded stands may increase the likelihood of fire in those stands [21] (see Fuels), although this did not seem to be the case during the growing season on sites studied in Massachusetts [86,88] (see Fire Management Considerations).

Control: Information presented in the following sections comes primarily from literature reviews and may not be comprehensive. It is intended to contribute to understanding disturbance adaptations of Japanese barberry and to present considerations for the context of fire management. For more detailed information on control of Japanese barberry, go to individual references cited here or to local extension services.

Japanese barberry may be best controlled by preventing its establishment and by eliminating small, newly expanding populations [92]. Individual Japanese barberry plants may be controlled by handpulling or digging, as it has a shallow root system [45,100]. However, this method is difficult and time consuming [92] and it is important to remove as much of the underground material as possible because Japanese barberry is likely to sprout from rhizomes left in the soil. Sprouts may be controlled by pulling or herbicide applications [45]. Pulling common barberry in the early 1900s effectively eradicated it from many sites [92].

Japanese barberry is especially easy to see in the winter and early spring before deciduous plants leaf out. If plants have fruit present, they should be bagged and disposed of to prevent seed dispersal [95].

Prevention: Prohibiting the commercial sale and planting of Japanese barberry may help limit the establishment and spread of new populations [92]. Native alternatives include coastal sweet pepperbush (Clethra alnifolia) and northern spicebush (Lindera benzoin) [100].

Observations by Ehrenfeld [26] suggest that Japanese barberry spreads into relatively undisturbed forests from forest edges. Forest reserves less than 2,400 to 4,900 acres (1,000-2,000 ha) in size would be especially vulnerable to invasion because of their large perimeter to area ratios [26]. Maintaining large forest and natural areas uninterrupted by roads and development may help prevent the establishment and spread of Japanese barberry and other invasive species.

Integrated management: Information on integrating mechanical control (cutting) with prescribed burning is presented in the Fire Management Considerations section. Some combinations of mechanical and chemical control are described in the following sections.

Physical/mechanical: Handpulling is an effective method of reducing Japanese barberry populations and seed production, and it can be done during most of the year. It is most effective for small Japanese barberry plants and small populations [95]. Older shrubs can be dug when soil is moist [100]. When pulling Japanese barberry by hand or removing by other mechanical methods, it is important to remove as much of the root system as possible and to minimize soil disturbance [45,95]. Shrubs can be cut at the base in winter or spring instead of digging, and herbicide can then be used on resprouts. Once removed from old field habitats, regular mowing may prevent reestablishment [45,100]. Repeated mowing or cutting controls the spread of Japanese barberry but does not eradicate it. Stems need to be cut at least once per growing season, as close to ground level as possible. Hand-cutting of established clumps is difficult and time consuming due to the long, arching stems and prolific thorns [95].

Fire: See Fire Management Considerations.

Biological: A review by Silander and Klepis [92] suggests that there may be some potential for biological control of Japanese barberry using nonnative tephritid flies, though the potential for biocontrol has not been studied for this species in North America.

Chemical: Treatment with systemic herbicides like glyphosate and triclopyr has been effective for controlling Japanese barberry (review by [100]). The Southeast Exotic Pest Plant Council [95] suggests that large thickets of Japanese barberry may be foliar sprayed with herbicides such as glyphosate or triclopyr in areas where risk to nontarget species is minimal. They recommend using the cut-stump method (cutting stems at or near ground level and applying herbicide to the stump) when the ground is not frozen. The cut-stump method is especially useful where the presence of desirable species precludes foliar application. Glyphosate is most effective for controlling Japanese barberry when applied in early spring at leaf out, when little else is in leaf [92].

Cultural: No information is available on this topic.

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Importance to Livestock and Wildlife ( anglais )

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More info for the terms: association, cover, forest, fruit, nonnative species, presence, seed, shrub, shrubs

Information on use of Japanese barberry by livestock and wildlife is limited and comes primarily from reviews. One account suggests that it is "little browsed by livestock" [101]. The Exotic Plants Committee of the New York Chapter of The Wildlife Society includes Japanese barberry in the group of nonnative plant species that provide "some value as wildlife food and cover" [19]. Austin and Hash [1] classify Japanese barberry as "highly preferred by mule deer". However, other reviews suggest that white-tailed deer dislike Japanese barberry and selectively browse on associated native species [95,115]. According to Ehrenfeld [26], Japanese barberry has become a favored landscaping plant because of the unpalatability of its foliage to deer. However, she also suggests that dense populations of white-tailed deer in the Northeast may be agents of long-distance dispersal of Japanese barberry fruits [26], because hoofed browsers, especially white-tailed deer, eat barberries (Berberis spp.) "freely" [67] and are known to disperse fruits of other Berberis species in western North America [26].

The bright-colored fruits of Japanese barberry are available to birds throughout winter in the eastern United States, although some birds may eat them only when other foods are scarce or absent [67]. However, wild turkey and grouse utilize Japanese barberry fruit heavily (Wolgast, personal communication cited in [26]), and recent increases in wild turkey populations may contribute to Japanese barberry spread [26]. A study in central New Jersey documented Japanese barberry seed in the feces and stomachs of several native frugivorous birds. Particular species that ate Japanese barberry were not distinguished. Relative use of all nonnative species in fall was 0.4% to 14% and increased to about 50% in winter. Thus, the predominant use of nonnative fruits occurred after peak bird migration and may therefore be less well-matched to local dispersal than fruits of native plants [116].

Forest sites invaded by Japanese barberry may provide more favorable tick habitat than uninvaded forest sites. Abundance of Ixodes scapularis, which is a vector for lyme disease, was greater in the presence of Japanese barberry, winterberry holly (Ilex verticillata), and honeysuckle (Lonicera spp.) than in the presence of eastern hemlock (Tsuga canadensis) saplings in second-growth mixed and deciduous forests in Maine. This association held true despite variation in abundance of white-tailed deer, the host for the reproductive stage of I. scapularis [63].

Cover value: Veeries build nests in Japanese barberry more often than in any other substrate in forests of southeastern New York. Ground nests are second most common. Predation rates did not differ between nests in Japanese barberry and those in native shrubs, but predation rates were higher in nests on the ground than in nests in either shrub type [90]. In a study examining 4,085 gray catbird nests over a 27-year period (1934-1960) in Michigan, Ohio, Kentucky, and Ontario, 138 nests (3.4% of the nests observed) were located in Japanese barberry shrubs [78].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Key Plant Community Associations ( anglais )

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More info for the terms: basal area, cover, cover type, density, fern, ferns, forbs, forest, frequency, hardwood, herbaceous, marsh, nonnative species, relative density, relative frequency, shrub, shrubs, succession, swamp, tree, vines

Japanese barberry is most problematic in mature forest communities in the
eastern United States, where it often forms dense thickets. It occurs in
upland and riparian settings, wetlands, pastures, and meadows [71]. It occurs more
frequently and is more abundant in postagricultural forests than in less disturbed,
continuously wooded sites (see Current and past land use).
The following are descriptions from the literature of some areas where Japanese
barberry is common or dominant. The descriptions are organized by area from
Maine in the north generally south and west to Maryland and Wisconsin.


In southern Maine, dense populations of Japanese barberry occurred at 2 coastal
forest sites. On Monhegan Island, Japanese barberry occurred where the upper stratum
of the overstory was dominated by American mountain-ash (Sorbus americana), white
spruce (Picea glauca), and balsam fir (Abies balsamea), and the lower stratum
was dominated by chokecherry (Prunus virginiana). At the Wells National Estuarine
Research Reserve, Japanese barberry occurred on a site dominated by gray birch
(Betula populifolia) in the upper strata and chokecherry in the lower stratum.
Native species regenerated poorly and were sparse under the Japanese barberry canopy [14].
Japanese barberry also occurred in eastern white pine (Pinus strobus) forests on
old fields, and in mixed hardwoods on the Rachel Carson National Wildlife Refuge
in Maine [21].


The Bartlett Experimental Forest in eastern New Hampshire was surveyed in
the late 1960s, and Japanese barberry was present but confined mostly to a red maple
(Acer rubrum) swamp [33]. In a chronosequence study of old field successional
communities in southeastern New Hampshire that included at all stages of succession
ranging from 14 to over 200 years since abandonment of agricultural use, Japanese barberry
occurred in all community types except the gray dogwood (Cornus racemosa) type.
It occurred in the early successional common juniper-Allegheny blackberry-sweetfern
(Juniperus communis-Rubus allegheniensis-Comptonia peregrina)
community type (estimated at 17±5 years after abandonment); the eastern white pine
community type (estimated at 81±46 years after abandonment); the northern red
oak-mapleleaf viburnum (Quercus rubra-Viburnum acerifolium) community
type (estimated at 97±59 years after abandonment); and the eastern hemlock
(Tsuga canadensis) community type (estimated at 134±61 years after abandonment),
with American beech (Fagus grandifolia), eastern white pine, northern red oak,
and sweet birch (Betula lenta) as common components [40].


In the Berkshire region of western Massachusetts, Japanese barberry
dominated and in some cases had more than 80% cover in the understory of a mature,
closed-canopy, deciduous forest dominated by sugar maple (Acer saccharum),
sweet birch, and white ash (Fraxinus americana). Japanese barberry, multiflora rose
(Rosa multiflora), gray dogwood, silky dogwood (Cornus amomum), and
winterberry (Ilex verticillata) were common components of a closed-canopy,
forested swamp dominated by white ash and red maple with a dense shrub understory
dominated by nonnative Morrow’s honeysuckle (Lonicera morrowii) [86,88]. At
Quabbin Reservoir Reservation in central Massachusetts, Japanese barberry occurred in
widely scattered populations; extensive and fairly uniform populations occurred under a
canopy dominated by white ash. Associated overstory species included eastern white
pine, red pine (P. resinosa), black cherry (Prunus serotina), and sugar
maple [11,12]. A survey of 159 forested sites at the Reservation found that Japanese
barberry rarely occurred in eastern hemlock and spruce (Picea spp.) stands [20].
Inventory and vegetation classification of floodplain forest communities in Massachusetts
found that nonnative Japanese barberry, multiflora rose, and Oriental bittersweet
(Celastrus orbiculatus) occurred and had high indicator values in highly disturbed
floodplain forests along major rivers. Dominant vegetation in these communities included
silver maple (Acer saccharinum), eastern cottonwood (Populus deltoides),
boxelder (Acer negundo), and ostrich fern (Matteuccia struthiopteris) [48].
Japanese barberry was one of the most frequent invasives observed in the Quinnebaug
Highlands forest of southern Massachusetts and northern Connecticut. This study site was
located in the transition zone between the central hardwood forest dominated by various oaks
(Quercus spp.), hickories (Carya spp.), red maple, and sweet birch, and the
northern hardwood forest dominated by sugar maple, American beech, eastern hemlock, and
eastern white pine [65].


Japanese barberry was planted in Platt Park near Southbury, Connecticut,
around 1960 to 1965. A floristic inventory and vegetation classification conducted in
1995 describes a sugar maple-Japanese barberry-northern spicebush (Lindera benzoin)
cover type where sweet birch and northern red oak were common associates. Japanese
barberry had 9% cover and 75% frequency, and northern spicebush had 8% cover and 100%
frequency in the shrub stratum. The dominant herbaceous species in this cover type was
the evergreen Christmas fern (Polystichum acrostichoides). On the lower southeastern
slope of the cover type, pure thickets of Japanese barberry persisted. The cultivated
shrubland-woodland cover type consisted of a strip of vegetation running parallel to an
abandoned farm road. The majority of vegetation in this cover type consisted of planted
and nonnative species and was characterized by dense shrubs and many weedy forbs, sedges,
and grasses. Common tree species included small individuals of eastern hemlock, eastern
redcedar (Juniperus virginiana), eastern white pine, and European crab apple
(Malus sylvestris). Japanese barberry occurred in the shrub stratum
in dense thickets along with common barberry, autumn-olive (Elaeagnus umbellata),
multiflora rose, smooth sumac (Rhus glabra), Bell's honeysuckle
(Lonicera × bella), and European privet (Ligustrum vulgare). Two
species of poison-ivy (Toxicodendron radicans and T. rydbergii) carpeted
the ground and climbed shrubs and trees. Japanese barberry also occurred in a few patches
in the understory of the eastern hemlock cover type in the park [69].


In the Black Rock Forest in southeastern New York, Japanese barberry
formed a large area of continuous canopy in the understory of a second-growth
forest dominated by northern red oak, chestnut oak (Q. prinus), and red maple.
Co-occurring native shrubs included black huckleberry (Gaylussacia baccata),
mountain-laurel (Kalmia latifolia), pink azalea (Rhododendron periclymenoides),
highbush blueberry (Vaccinium corymbosum), and other blueberries
(Vaccinium spp.) [118]. Ostfeld and others [82] described a habitat in rural
southeastern New York with 60- to 80-year-old stands of sugar maple that
developed following abandonment of cultivated fields; the sparse understory vegetation
was dominated by Japanese barberry. On forests dominated by sugar maple and
American beech that had been selectively logged but never cleared for cultivation,
Japanese barberry occurred at <1% relative cover on 23% of sites surveyed in 1999.
It did not occur in these forests in 1938 [44]. Japanese barberry occurred at 0.8%
relative cover in oak-hickory (Carya spp.) forests at the Cary Arboretum,
Hudson Valley, New York, but did not occur in chestnut oak or red maple forests when
surveyed in 1984 [37]. On Robins Island, Japanese barberry is most common in red maple
swamp and common reed (Phragmites australis) marsh plant communities. Associated
species in red maple swamp communities include black cherry, black tupelo
(Nyssa sylvatica), common greenbrier (Smilax rotundifolia), multiflora
rose, grape (Vitis spp.), grasses (Panicum and Agrostis spp.) and
rushes (Juncus spp.). Common reed marshes support a variety of herbaceous species [10].


Informal survey results suggest that Japanese barberry is common in the understory
of closed-canopy deciduous forests throughout central and northern New Jersey
and adjacent areas of Pennsylvania and New York [26]. Japanese barberry populations
in Morristown National Historic Park, New Jersey, occurred under a closed canopy of
mature hardwood trees including yellow-poplar (Liriodendron tulipifera), white
oak (Q. alba), black oak (Q. velutina), northern red oak, red maple,
sugar maple, sweet birch, and white ash [27]. The typical native understory in these
forests is characterized by blueberries (Vaccinium spp.) and huckleberries
(Gaylussaccia spp.) [29]. Kourtev and others [52] compared characteristics of
soils and vegetation in invaded and uninvaded sites in 3 parks in northern New Jersey.
The canopy in all sites was composed of a mixture of oaks, American beech, yellow-poplar,
sweet birch, white ash, red maple, sugar maple, and other species. Invaded areas had fewer
oaks and more yellow-poplar and white ash in the canopy, and the native understory shrubs
deerberry (Vaccinium stamineum) and hillside blueberry (V. pallidum) were
significantly less abundant (P<0.05). On one site, heavy deer browsing had
eliminated most shrubs other than Japanese barberry. Several other nonnative shrubs and
vines occurred in invaded areas. Japanese barberry often occurred with Japanese stiltgrass
(Microstegium vimineum), the latter carpeting the ground between Japanese barberry
shrubs. The authors noted that neither Japanese barberry nor Japanese stiltgrass was
widespread 10 years prior to their study, with surveys in Morristown National Historic Park
reporting no Japanese stiltgrass and only a few isolated individuals of Japanese barberry [52].
Japanese barberry was a relatively common component of some upland forest stands in northern
New Jersey that had been free of major disturbance for at least 60 years. For details of the
shrub and herbaceous components of the 55 forest stands studied, see Davidson and Buell [15].


Japanese barberry occurs on a floodplain site dominated by sliver maple, boxelder,
green ash (Fraxinus pennsylvanica), sycamore (Platanus occidentalis), and slippery
elm (Ulmus rubra) within an oak forest in Maryland [68].


Japanese barberry cover was "minor" in a northern red oak-mixed hardwood
forest in Pennsylvania surveyed in midsummer 2002. However, the authors suggested that
Japanese barberry, Japanese stiltgrass, and ferns (Polypodiophyta) "may inhibit forest
regeneration" [83].


In an old-growth oak-sugar maple-hickory forest in southwestern Ohio,
Japanese barberry had a relative frequency of 1.3% and relative density of 0.3%. It did
not appear on the hillsides in the surrounding area [99]. In a second-growth (>100-year-old),
mixed-deciduous forest dominated by sugar maple and white ash in southwestern
Ohio, Japanese barberry had 6.7% frequency, <0.01 m²/ha basal area, and density of 28
individuals/ha. Associated shrubs included blackhaw (Viburnum prunifolium), northern
spicebush, and the nonnative Amur honeysuckle (Lonicera maackii) [70].


Japanese barberry occurred at low density (<20 stems/ha) in lowland forest
stands in southeastern Wisconsin. Stands were dominated by silver maple,
with black ash (Fraxinus nigra) and green ash as subdominants. Yellow
birch (Betula alleghaniensis), red maple, American elm (Ulmus americana),
boxelder, and hawthorn (Crataegeus spp.) were the next most common tree species. The
shrub layer was dominated by currant (Ribes spp.), sumac (Rubus
spp.), and gray dogwood. Stands were variably affected by Dutch elm disease and
consequently had variable amounts of American elm mortality, ranging from 0 to
28 dead trees per hectare across 15 stands. Species composition of stands was
not significantly related to the number of dead canopy elms [25].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Life Form ( anglais )

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Shrub
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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Management considerations ( anglais )

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Climate change: Studies and related models from
oak-dominated, second-growth, Japanese barberry-invaded forests in the northeastern United
States suggest possible implications of global warming in these communities. The investigators
suggest that warming in southern New York would benefit the net carbon gain of mountain-laurel
relative to Japanese barberry and may therefore limit the displacement of native shrubs by
Japanese barberry. Conversely, increased regional nitrogen deposition along with pronounced
winter warming may enhance carbon gain in Japanese barberry relative to native shrubs and
contribute to Japanese barberry invasiveness. More information is needed to determine the role
that climate change may play in Japanese barberry invasion in northeastern deciduous forests.
Models based on these data predict that the annual foliar carbon loss has increased since the
early 20th century by 12.9%, 10.3%, and 8.9% for Japanese barberry, mountain-laurel, and highbush
blueberry, respectively [118,119,120]. See the Seasonal Development
section for more details of this research.
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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Other uses and values ( anglais )

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Japanese barberry is a popular ornamental due to its ease of culture and general attractiveness [95,96]. Many other species in the barberry family are also used as ornamentals, though some, such as the nonnative common barberry (Berberis vulgaris), are shunned because they are alternate hosts to black stem rust of wheat. Common barberry is no longer a common plant in North America, since control efforts in the early 1900s practically eradicated it [96].

A close relative of Japanese barberry, common barberry, was historically used as a substitute for the popular medicinal plant, goldenseal (Hydrastis canadensis). Roots of both plants are rich in several alkaloids, including berberine. A study comparing alkaloid content and antibacterial activity of Japanese barberry with those of common barberry and goldenseal revealed that alcohol extracts of all 3 plants exhibit activity against bacteria associated with sore throats (Streptococcus pyogenes) and opportunistic skin infections (Staphylococcus aureus). This supports the traditional uses of these plants for wound healing and for soothing minor mouth and throat irritations. The results suggest that with respect to its berberine content and in vitro antibacterial activity, Japanese barberry is a potential substitute for goldenseal, which is classified as threatened or endangered in many of its natural habitats due to overharvesting and loss of habitat [108]. Commercial applications of these findings, with regard to Japanese barberry, are being explored in Maine [64].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Phenology ( anglais )

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More info for the terms: forest, fruit, litter, phenology, shrubs, tree

Japanese barberry seeds germinate in May in New Jersey [27], presumably when temperature regimes are appropriate for germination (see Germination). Leaves on established plants emerge in late March in northern New Jersey [29] and on the Black Rock Forest in southeastern New York [118,120]. Japanese barberry is one of the first woody plants to leaf out in the spring, perhaps a month or more before the tree canopy is fully leafed out; it retains its leaves after most of the canopy leaves have dropped in the fall. This longer growing season likely gives Japanese barberry an advantage over native shrubs and herbs [92] (see Phenological niche separation). Japanese barberry flowers from late winter (March) through spring [34]. Beginning in October 1998, Japanese barberry fruits were dispersed rapidly from shrubs in low light conditions on study sites in Connecticut, with about 30% remaining by November. By January 1999, most fruit was dispersed from shrubs across all light levels [92].

Flowering and fruiting dates for Japanese barberry in different areas Area Flowering date Fruiting dates Carolinas March to April May to September [84] Illinois April to May [73] ...* West Virginia April to May [98] ... Blue Ridge counties in North Carolina, South Carolina, and Virginia March to April [117] ... New England May 15 to June 9 [91] ... Northeast mid-April to May [92,100] fruits mature from July to October and either persist [100] or are dispersed through fall and winter [92] Southeast March to April fruit matures May to September and is often present through winter [95] *No data.

Phenological niche separation: Phenology of Japanese barberry differs from that of native species in invaded communities in several ways. For example, the timing and magnitude of nutrient uptake and litter deposition differ between Japanese barberry and associated native plants, which alters carbon and nutrient fluxes and pools in and on the soil in invaded communities [28] (see Feedback loops). Japanese barberry leafs out earlier than associated species in closed-canopy deciduous forests, which may give it an advantage by providing a substantial spring carbon subsidy when high light is available (review by [120]). Leaf phenology, photosynthesis, and respiration of Japanese barberry and 2 co-occurring native shrubs, the evergreen mountain-laurel and the deciduous highbush blueberry, were compared at the Black Rock Forest in southeastern New York in 2004. Japanese barberry leafed-out about 1 month earlier than highbush blueberry and about 2 to 3 weeks prior to overstory trees. The overstory canopy closed by mid-May, and Japanese barberry leaf development was complete in June [118,120].

A temporal photosynthetic niche separation was observed among Japanese barberry, mountain-laurel, and highbush blueberry. The photosynthetic capacity of Japanese barberry was highest under the open canopy in spring and declined with canopy closure. Overwintering leaves of mountain-laurel had high photosynthetic capacity in the spring, while photosynthetic capacity of new spring leaves gradually increased to a peak in mid-September. Highbush blueberry had low photosynthetic capacity throughout the growing season [120]. Japanese barberry showed the lowest stomatal limitation to photosynthesis among the 3 shrubs [118,120]. Japanese barberry acclimated to varying irradiance through active nitrogen allocation and modification of leaf morphology, and showed dynamic adjustments in the amount of leaf nitrogen invested in the photosynthetic apparatus that was not seen in the native shrubs. Japanese barberry had high leaf nitrogen in early May that decreased 50% by mid-June and remained low throughout the rest of the growing season [118,120]. Japanese barberry also down-regulated respiration following canopy closure. Japanese barberry respiration rate was highest in early May, lowest in mid June, and then gradually increased during the growing season [120].

These phenological characteristics are likely to favor Japanese barberry by providing both a spring carbon subsidy and reducing maintenance cost following canopy closure [118]. Additionally, Japanese barberry has total annual leaf respiration similar to those of mountain-laurel and highbush blueberry, and seems to have a higher ratio of photosynthesis to respiration (i.e., carbon gain) than these native shrubs [119]. More information is needed to fully understand these relationships and their implications to site invasibility under current conditions and under conditions of climate change (see Other Management Considerations).

Underground phenology: Woody species utilize stored, belowground carbohydrate reserves to survive dormancy and disturbance. These reserves naturally fluctuate over the course of a year: declining in the spring during leaf flush and shoot elongation and increasing during the growing season when excess photosynthate is produced (review by [88]). Although it is difficult to interpret results and draw conclusions due to small sample sizes and lack of replication, some interesting trends were observed in total nonstructural carbohydrate (TNC) levels in Japanese barberry as compared with other nonnative shrubs studied by Richburg [86]. TNC levels in all species were depleted in early spring; however, whereas most species required most of the growing season (4 to 5.5 months) to replenish TNC reserves, Japanese barberry TNC levels recovered within 31 to 35 days. A second and unexpected decline in TNC reserves was observed in Japanese barberry during the growing season (July to September 2001), after which reserves were replenished in October. The author speculates that this pattern was related to precipitation, as depletion of TNC coincided with 35% to 52% below-average rainfall in July and August, and replenishment of TNC followed above-average rainfall in September. Depletion of TNC was not observed in Japanese barberry during a year with average precipitation throughout the growing season (2002). Japanese barberry TNC levels did not decrease during flowering and fruiting [86].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Plant Response to Fire ( anglais )

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More info for the terms: cover, frequency, prescribed fire, relative frequency, root crown, seed

Japanese barberry is likely to sprout from the root crown or rhizomes after fire or other top-killing event, as was observed after prescribed burning and cutting treatments in Massachusetts forests [86,88] and after cutting treatments without burning in Maine [14]. A review by Huebner [41] suggests that Japanese barberry is likely to survive low-severity fire and maintain its population size after a burn, but that it may be reduced in community importance after repeated (annually consecutive for at least 2 to 5 years), growing-season (spring to early summer) fires. Similarly, a review by Johnson [45] suggests that prescribed fire has successfully reduced Japanese barberry populations in midwestern oak savannas. Japanese barberry response to prescribed fires in oak savannas or repeated prescribed fires are not documented elsewhere in the available literature as of 2008.

Japanese barberry can probably establish after fire from off-site seed sources and possibly from the soil seed bank as suggested by Huebner [41], although seed banking information is limited and suggests that substantial seed banking is lacking for this species. One study reports establishment of Japanese barberry 4 years after a prescribed fire in a mature stand of red pine (Pinus resinosa) and eastern white pine (Pinus strobus) in Michigan. Japanese barberry seedlings were absent from all plots subject to biennial burning (1991, 1993, and 1995) when sampled in 1994 and 1995, and were absent from once-burned (in 1991) and unburned control plots in 1994. In 1995, Japanese barberry occurred at 0.9% relative frequency and 0.33% cover on once-burned plots and at 0.4% relative frequency and 0.03% cover on unburned control plots [77].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Post-fire Regeneration ( anglais )

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More info for the terms: adventitious, ground residual colonizer, initial off-site colonizer, rhizome, root crown, secondary colonizer, seed, shrub

POSTFIRE REGENERATION STRATEGY [97]:
Surface rhizome and/or a chamaephytic root crown in organic soil or on soil surface
Small shrub, adventitious buds and/or a sprouting root crown
Rhizomatous shrub, rhizome in soil
Ground residual colonizer (on site, initial community)
Initial off-site colonizer (off site, initial community)
Secondary colonizer (on-site or off-site seed sources)
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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Regeneration Processes ( anglais )

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More info for the terms: cover, density, forest, fruit, hardwood, layering, litter, root crown, seed, shrub, shrubs, stratification

Japanese barberry reproduces from seeds, aboveground and belowground spread of clonal shoots, and layering [27].

The invasive potential of the more than 40 cultivars of Japanese barberry is not well known. Results from nursery trials designed to test the reproductive characteristics of various Japanese barberry cultivars as indicators of invasive potential suggest that some cultivars may be less invasive than others [60,62]. In particular, Lehrer and others [60] suggest that the smaller, less "vigorous" Japanese barberry cultivars, 'Aurea' and 'Crimson Pygmy', may be considered "safe enough" to justify their continued commercial production and sale. However, these results alone cannot be used to assess the potential contribution of individual cultivars to invasive populations, because all cultivated genotypes studied produced at least some green-leaf seedlings that resembled the invasive wild type. More research is needed to determine whether these cultivated, ornamental plants can produce the wild type [61]. See Seed production, Germination, and Seedling establishment for details of these studies.

Pollination: Japanese barberry is pollinated by small and large bee species. Stamens respond to a tactile stimulus (e.g., a visiting bee) by snapping toward the stigma and thus depositing pollen. Small bees trip fewer stamens per visit than large bees, leaving more pollen to be subsequently removed. If visits are frequent, small bees could be more effective pollen dispersers, and if visits are rare, large bees may be more effective dispersers because they remove more pollen per visit and leave a smaller proportion of pollen undispensed [59].

Seed production: Seed production rates are not well studied for Japanese barberry under field conditions. Observations of Japanese barberry seedling densities shortly after germination suggest that seed production is a function of Japanese barberry stem density (see Seedling establishment) [27]. A study of dense, continuous stands of Japanese barberry in the University of Connecticut Forest found that Japanese barberry fruit production varied with light level, but some seeds were produced even under very low light levels (≤4% full sun) [92].

Average fruit production by Japanese barberry shrubs (n=15) under variable light conditions [92]

Light condition
(% transmittance)

Seeds per plant (SE)

Seeds/cm branch length (SE)

89 1,500 (550) 0.141 (0.072) 44 1,800 (600) 0.215 (0.027) 4 200 (20) 0.104 (0.022)

Cultivars: Trials of 18 cultivars or hybrids of Japanese barberry were conducted at Longwood Gardens in Pennsylvania to determine relative fruit production and germination potential. Three cultivars, 'Bogozam', 'Kobold', and 'Monlers', produced on average no more than 1 fruit per 2 inches (5 cm) of stem length. In contrast, the most prolific seed producers in the trial, 'Golden Ring', 'Rose Glow', 'Crimson Velvet', 'Sparkle', and B. 'Tara' (a hybrid of Japanese barberry and B. koreana) produced more than 3 fruits per stem inch [62]. In a separate study, 4 forms of Japanese barberry (B. t. var. atropurpurea, 'Aurea', 'Crimson Pygmy', and 'Rose Glow') were examined to compare fruit and seed production (see table below), seed viability (see Germination), and "vigor" of the resultant seedling progeny (see Seedling establishment/growth) with those of the Japanese barberry wild type [60,61].

Propagule production of 5 Japanese barberry forms [60,61] Form Fruits/plant Seeds/plant B. t. var. atropurpurea* 2,500 3,000 'Aurea' 90 75 'Crimson Pygmy' 75 90 'Rose Glow' 900 800 Wild type B. thunbergii ~1,140 1,135 B. t. var. atropurpurea is the form from which 'Crimson Pygmy' and 'Rose Glow' were developed [80]. It is no longer recognized as a variety [47].

Seed dispersal: Most Japanese barberry fruits are dispersed by gravity, but some long-distance dispersal occurs. In New Jersey, Ehrenfeld [27] observed a relationship between Japanese barberry seedling density and local stem density, indicating that most berries simply drop to the ground beneath the parent plant. Similarly, of the 525 first-year seedlings mapped on Connecticut study sites, 92% were found underneath or within 3 feet (1 m) of the canopy of a Japanese barberry shrub. However, "several" were 160 feet (50 m) or more from the nearest adult, with the furthest being 260 feet (80 m) distant [92]. An informal survey of forest preserves in the New York Metropolitan region indicated that in several instances Japanese barberry populations extend away from disturbed or open areas at least 330 feet (100 m) into undisturbed forest. Sparse populations or individual plants were noted in some areas that were not only undisturbed but separated from moderate or dense populations by several kilometers, indicating Japanese barberry spread in intact forest distant from abundant seed sources [26].

A review by Silander and Klepis [92] notes that birds are the most common animal dispersers of barberries (Berberis spp.). Birds that disperse barberries either feed directly on the fruit pulp and discard the seeds locally or ingest the entire fruit and defecate the seeds elsewhere (review by [92]). Several ground-dwelling birds including ruffed grouse, northern bobwhite, ring-necked pheasant, and wild turkey are listed as dispersal agents for Japanese barberry seed [95,100], and observations suggest that these and other ground-dwelling fauna may be as or more important than passerine birds for regional dispersal [27]. Wild turkey and grouse are known to use Japanese barberry fruits heavily (Wolgast, personal communication cited in [26]), and recent increases in wild turkey and other frugivorous game bird populations in the northeastern United States may contribute to Japanese barberry spread [26,92].

The brightly colored fruits of Japanese barberry are available to birds throughout the winter, but they do not seem to be preferred [67] and are generally a low-priority food item for many birds. These birds eat them primarily late in the season (Kern 1921, as cited by [92]) and in critical periods when other foods are scarce or absent [67]. Japanese barberry seed was recorded from traps, feces, and stomachs of various frugivorous birds in central New Jersey [116]. See Importance to Wildlife for further implications of this relationship.

Seed banking: Studies in the greenhouse and on invaded sites in southern Maine [14] suggest that Japanese barberry does not form a large or persistent soil seed bank. Japanese barberry plants were completely removed from study plots in southwestern Maine by cutting aboveground stems in fall of 2004, and seedling densities were recorded in spring and fall of 2005. Lack of significant increase in Japanese barberry seedling density from fall 2004 to fall 2005, when shading from Japanese barberry canopy was removed, suggests that Japanese barberry did not have a substantial seed bank at these locations. A greenhouse study using litter and soil samples taken from these plots yielded the following results [14]:

Average density (stems/m²) of Japanese barberry seedlings emerging from litter and soil samples taken from field sites and incubated in the greenhouse [14] Site Sample Date Fall 2004 Spring 2005 Fall 2005 Monhegan - litter 0 10.0 6.9 Monhegan - soil 4.5 16.1 9.2 Wells - litter 2.6 0 0 Wells - soil 2.6 6.3 4.7

These results suggest that either viable Japanese barberry seed was depleted in the first year or that seed viability decreases in the second growing season after seed drop. Additional evidence of a short-lived seed bank comes from commercial Japanese barberry seed stored in the greenhouse, which had an emergence rate of 9.4% the first year and 1.8% the following year [14].

More research is needed to better understand seed bank dynamics in Japanese barberry.

Germination: Japanese barberry seed has a morphophysiological dormancy. Two things must happen before seeds with morphophysiological dormancy can germinate: 1) the embryo must grow to a species-specific critical size and 2) physiological dormancy of the embryo must be broken [5,6]. A period of cold stratification at about 32 to 41 °F (0-5 °C) and/or alternating temperatures from lows of about 41 to 50 °F (5-10 °C) to highs of about 68 to 90 °F (20-32 °C) seems to break dormancy of and provide optimum germination conditions for Japanese barberry seed [17,76]. Freezing does not favor afterripening and kills large numbers of imbibed seeds. Germination rates of Japanese barberry seeds reach from 60% to 70% when planted outdoors in the fall, protected from freezing, and exposed to the fluctuating temperatures of early spring [17].

Results of germination experiments vary somewhat with regard to the period of cold stratification and temperature regimes required for optimum germination. For example, Barton [4] observed no beneficial effects on germination of Japanese barberry seed from either stratification at 41 °F (5 °C) or of presoaking seeds in water. See these sources for more details: [4,17,58,76].

Cultivars: Trials of 18 cultivars or hybrids of Japanese barberry indicated that seeds from all selections were viable, with germination rates ranging from 70% to 100% [62]. In other studies [60,61], germination rates of 4 Japanese barberry forms rarely exceed 80%.

Average germination rates of seed from 4 ornamental Japanese barberry forms [60,61] Form

Germination rate (%)

B. t. var. atropurpurea ~72 'Aurea' 46 'Crimson Pygmy' 75 'Rose Glow' ~70

Lehrer [61] indicated that seeds collected from the wild type of Japanese barberry located in "naturalized" conditions showed high rates of predation by an unknown seed weevil and had malformations that may account for reduced viability under field conditions (data not given).

Seedling establishment/growth: Ehrenfeld [27] conducted a 2-year study in Japanese barberry populations in a northern New Jersey hardwood forest and found that seedling densities were highly variable among populations and years but were significantly correlated with stem densities (P< 0.0001). In 1994 Japanese barberry seedling stem densities ranged from an average (SE) of 0.17 (0.07) seedlings/m² in a sparse population to 12.90 (5.51) seedlings/m² in a dense population. In 1995, Japanese barberry seedling densities were an order of magnitude lower than the previous year and ranged from an average (SE) of 0.025 (0.025) seedlings/m² in one moderately dense population to 0.40 (0.19) seedlings/m² in another moderately dense population. Seedlings established rapidly, with relatively low rates of mortality during the first year, especially in sparse populations [27].

Mortality rates (fraction of initial May 1994 cohort) for Japanese barberry seedlings in 6 populations of varying density at in Morristown National Historic Park, New Jersey [27] Population density/site number May-August
1994 August-October
1994 May 1994-August
1995 Sparse 1 0.0 0.11 0.71 Moderate 1 0.45 0.52 0.97 Moderate 2 0.36 0.44 0.90 Moderate 3 0.41 0.69 0.86 Dense 1 0.46 0.80 0.98 Dense 2 0.78 0.78 0.95

Although seedling mortality rates can exceed 90%, the large seed set, especially in areas with high stem density, results in substantial recruitment to the population. When seedling mortality rates measured over both seasons are combined with average initial seedling densities in 1994, the recruitment rate of new individuals from seed ranges from 0.08 individual/m² in the sparse population to 0.97 individual/m² in a dense population [27]. Studies of 2 populations in southern Maine found that most Japanese barberry seedling mortality occurred during the summer months [14].

Surviving Japanese barberry seedlings may persist for several years as single-stemmed plants, or additional shoots may arise from the root crown or rhizomes to form a multistemmed plant. Stems may die and arise each year, resulting in a net decrease, increase, or no net change in individual plant size each year [27]. Ehrenfeld [27] observed that more plants increase in size annually than decrease. Results from field studies in Connecticut suggest a high and continuous stem turnover in Japanese barberry, with old stems dying after a few years and being replaced by new stems sprouting from the root crown. Of 43 stems assessed for radial growth, 81% were 2 or 3 years old, fewer than 7% were 4 to 6 years old, and only 1 stem was 7 years old. Thus, there is no easy way to estimate the age of individual shrubs, some of which may have persisted in the forest for several decades [92]. Mortality of individuals is greatest for small plants with fewer than 3 stems per plant and/or stems less than 20 inches (50 cm) tall [27].

Japanese barberry seedling survival and and plant growth are related to light availability. Studies of 2 populations in southern Maine found a significant (P=0.003) negative relationship between forest canopy cover and density of Japanese barberry seedlings [14]. Field studies in Connecticut indicate that radial stem growth is positively correlated with light availability (P<0.002). However, this relationship was driven by samples from intermediate and high light conditions, and considerable variation of radial stem growth was observed at light levels below 4% full sun. Japanese barberry biomass per unit area was also positively correlated with both available light and soil moisture (P=0.009). In the greenhouse, total new stem growth (length and biomass) was positively correlated with light level (P<0.001) [92].

A review [95] suggests that Japanese barberry seedlings may grow 2 to 4 feet (0.6-1.2 m) in one season, although the source of this information is not given.

Cultivars: Comparison of growth among progeny of barberry forms revealed that seedlings of the 2 larger forms, B. t. var. atropurpurea and 'Rose Glow', attained greater height and width, produced more branches, and produced heavier canopy growth than the smaller forms, 'Aurea' and 'Crimson Pygmy' [60,61]:

Growth characteristics of seedlings derived from 4 ornamental Japanese barberry forms [60,61] Form n Height (cm) Width (cm) No. branches Dry weight (g) Shoots Roots B. t. var. atropurpurea 230 200.1a* 111.2b 5.2b 1.2b 2.5a 'Rose Glow' 187 197.2a 145.6a 5.6a 1.3a 2.5a 'Aurea' 124 178.0b 64.3d 3.2d 0.7d 1.5c 'Crimson Pygmy' 255 161.4c 93.4c 4.5c 0.9c 2.0b *Mean values followed by different letters within columns are significantly different, P≤0.05.

Wild type Japanese barberry seedlings generally attained similar or somewhat smaller dimensions compared to B. t. var. atropurpurea and 'Rose Glow' progeny, though they had fewer branches and were "often ungainly in appearance." The strong growth of seedlings derived from some landscape cultivars may reflect inbreeding depression in the wild type, or a degree of hybrid vigor due to outcrossing of cultivars. More work is needed to understand the nature of these trends [61].

Vegetative regeneration: Japanese barberry spreads locally by sprouting from the root crown and rhizomes, and by layering. Recruitment from sprouting and layering is roughly an order of magnitude less than recruitment by seedling establishment [27]. Ehrenfeld [27] also refers to shoots arising from stolons, but this is the only mention of stolons found in the available literature so the importance of this mode of vegetative regeneration for Japanese barberry is unclear.

Following damage or removal of aboveground stems, Japanese barberry can regenerate by sprouting from stumps [87], root crowns, and underground organs. At 2 study sites with dense Japanese barberry infestations in southwestern Maine, aboveground stems of Japanese barberry were completely removed by cutting at ground level in fall of 2004 and spring of 2005. Season of clipping did not have a significant effect (P>0.05) on the subsequent density of Japanese barberry or any associated vegetation [14].

Density (stems/m²) of Japanese barberry sprouts on 2 sites in southern Maine treated with complete top removal of Japanese barberry [14]  

Clipped fall 2004

Clipped spring 2005

Site Observed
fall 2004 Observed
spring 2005 Observed
fall 2005 Observed
spring 2005 Observed
fall 2005 Monhegan 1.3 7.5 4.8 1.7 7.1 Wells 0.03 2.0 2.0 0.1 0.8

Japanese barberry vegetative sprouts showed a tendency to decrease with increasing forest canopy cover, but the relationship had only marginal significance (P=0.058) [14].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Successional Status ( anglais )

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More info on this topic.

More info for the terms: cover, density, forest, frequency, fruit, hardwood, heath, herb, herbaceous, invasive species, natural, presence, seed, shrub, shrubland, shrubs, succession, tree

Japanese barberry is shade tolerant and may establish and persist in any successional stage. Examples from the available literature suggest that it probably establishes best on open, disturbed forest sites in early succession and usually persists as forest succession proceeds. However, some accounts indicate that Japanese barberry does not always persist or persists only in open areas in some communities as succession proceeds. Substantial evidence indicates that Japanese barberry establishment is not restricted to open sites, and that establishment and persistence in late-successional environments is common.

Japanese barberry is a widely planted ornamental that has spread not only into open fields and forest edges adjacent to human development, but also into closed-canopy forest. On a variety of old fields in southeastern New Hampshire, Japanese barberry occurred at all stages of forest succession ranging from 14 to over 200 years (see Habitat Types and Plant Communities) [40]. In a study of Massachusetts hardwood forests dominated by sugar maple, Japanese barberry occurred at 11% frequency on "primary" forests, 19% frequency on "19th-century secondary" forests, and 45% frequency on "20th-century secondary" forests. Forests classified as primary were those forested in both 1830 and 1942, and secondary forests were those cleared for agricultural use in the past. Nineteenth-century secondary forests were open in 1830 and forested in 1942; and 20th-century secondary forests were either open or in early successional vegetation in 1942 [7]. Informal surveys suggest that Japanese barberry is a common component in the understory of closed-canopy forests in the New York metropolitan area and possibly throughout the northeastern United States [26].

Dense Japanese barberry stands may have few understory plants growing under the crown area [55]. On study plots at 2 sites in southern Maine, a large number of plots had 100% Japanese barberry canopy cover and low frequency of other plants. Native species regenerated poorly under Japanese barberry, although native stem densities were not correlated with percent cover of Japanese barberry. Frequency of native herb, shrub, and tree seedlings was too low to be analyzed at one site, where an average of 50% of plots lacked seedlings. Seedlings of Japanese barberry were more abundant than any other plant life form at this study site, with more than twice the maximum density (162.4 Japanese barberry stems/m²) of understory herbs (80.9 herb stems/m²). When Japanese barberry plants were removed by clipping, plots clipped in spring had higher density of herbs than those clipped in fall. This is probably because herbs were released in early spring and could respond to the increased light. Species found in fall 2004 typically had increased density in fall 2005. Tree seedling densities were consistently low, with little short-term recovery after Japanese barberry removal [14].

Shade tolerance: Japanese barberry tolerates full sun, part sun, and shade, and may occur under almost any shade level. In the University of Connecticut Forest, dense populations of Japanese barberry occur under light conditions from 4% to 89% of full sunlight [92]. On a variety of old field sites in southeastern New Hampshire, Japanese barberry occurred at all successional stages studied, where photosynthetically active radiation at 16 inches (40 cm) above ground averaged 5.0%, with a minimum of 0.8% and a maximum of 17.0% [40]. Japanese barberry populations in an "advanced stage of invasion" at 2 sites in southern Maine occurred where forest canopy cover ranged from 60% to 90%. Many plots had 100% Japanese barberry canopy cover and low frequency of other plants. Low densities of Japanese barberry seedlings and understory herbs were associated with high forest canopy cover [14].

A landscape-level survey in the Quabbin Watershed, where Japanese barberry occurs in the understory of forests dominated by white ash, revealed that Japanese barberry LAI (used as an indicator of vigor) was inversely correlated with overstory LAI but was not correlated with any other site variable. This suggests that Japanese barberry can persist in shaded understory conditions and increase in vigor as overstory canopy LAI decreases [11]. Japanese barberry fruit production varies with light level, but can occur even under very low light levels (≤4% full sun) (see Seed production). Biomass per unit area (P=0.009) and radial stem growth (P<0.002) were positively correlated with light availability at the University of Connecticut Forest. Transplant experiments showed Japanese barberry survival at light levels of <1% to 90% transmittance; however, in greenhouse experiments about 60% mortality occurred at light levels <1% transmittance, with "very few" deaths at intermediate or high light levels. Under full sun, Japanese barberry occurs with other fast-growing woody species such as multiflora rose, eastern poison-oak (Toxicodendron toxicarium), blackberry (Rubus spp.), Oriental bittersweet, and various tree seedlings and saplings. However, it does not dominate these sites [92].

Establishment and persistence in early succession: Successional patterns on the New England landscape in the last century influence present-day Japanese barberry occurrence, distribution, and local abundance. Modern forests and natural areas have a complex disturbance history influenced by human settlement and development. Japanese barberry was introduced at a time when much of the landscape had been cleared of forest and was under cultivation or used as pasture for domestic livestock. Shortly after this time, in the early 20th century, much of this agricultural land was abandoned. The period of historical agricultural abandonment in New England represents a major pulse in resource availability (sensu [16]) that resulted in dramatic, persistent changes in the distribution and abundance of native and nonnnative species. The densest populations of Japanese barberry apparently resulted from a combination of open site conditions in the early 20th century, propagule availability, and site fertility [20].

The strong relationship between modern abundance of Japanese barberry and historical agriculture suggests that Japanese barberry established in open fields and persisted as sites succeeded to forest. In the Quabbin Watershed, Japanese barberry was most likely to occur on sites that remained as arable or pasture land after its introduction and less likely to occur on sites that were continuously wooded or reforested prior to Japanese barberry introduction [20]. On farms in northeastern Connecticut, stone walls form boundaries between old fields, probably indicating differences in past use; some of these walls divide areas of high Japanese barberry d ensity from areas where it is scattered. Other than house and orchard sites (which were too few to be included in the analysis), historically pastured fields had the highest levels of Japanese barberry, followed by fields that were historically mowed or used as woodlots. Historically plowed fields had the lowest barberry densities. Higher densities in former pastures may be due to the type of physical disturbance (compared with mowing and plowing) or to changes in soil properties from disturbance and fertilization from livestock. None of the sites included in this study were described as "undisturbed" [101].

The presence of Japanese barberry in second-growth forests may be evidence of prior grazing. Japanese barberry is apparently rarely browsed by livestock and, according to anecdotal accounts, is common in actively grazed pasture land, although generally at lower densities than in forests. Therefore, if it establishes on active pasture land it will likely persist, and once grazing ceases it may be an important component of the early-successional flora [101]. Similarly, Japanese barberry persistence and spread in forests may be facilitated by its unpalatability to wildlife. While one review [1] classifies Japanese barberry as a plant "highly preferred by mule deer", several other reviews and accounts suggest that it is not palatable to white-tailed deer [11,26,95,115] (see IMPORTANCE TO LIVESTOCK AND WILDLIFE). It is further suggested that high densities of deer may contribute to the spread of Japanese barberry because deer dislike it and browse on natives, giving Japanese barberry an advantage [95,115]. On one site in northern New Jersey, researchers observed that heavy white-tailed deer browsing eliminated most other shrubs [52]. A study in deciduous forest in Rondeau Provincial Park, Ontario, found that Japanese barberry occurrence was characteristic of plots grazed by white-tailed deer [50].

Several examples from the literature indicate that Japanese barberry does not always persist after establishment in early succession, or that it persists only on sites that remain open in these communities. An old field in southeastern Connecticut was cultivated until about 1945, grazed until 1951, burned in spring 1954, and surveyed later in 1954 for frequency and cover of plant species. Japanese barberry was present (at <1% cover and <3 feet (1 m) tall) only in the first survey year and was not detected on subsequent sampling dates (1960, 1973, 1983, and 1992), as vegetation changed from an open, herbaceous, perennial meadow to a thicket of woody vegetation [32]. A permanent plot study indicates that Japanese barberry was absent prior to a hurricane in Massachusetts in 1938 that resulted in complete loss of the canopy in a mixed hardwood-eastern white pine-eastern hemlock forest. Japanese barberry established sometime during the 2 years following salvage logging and slash pile burning after the hurricane and stayed at 8% frequency from 1940 through 1991, showing an affinity for open, herbaceous habitats [66]. In coastal southern New England and adjacent New York, Japanese barberry occurred in open habitats (and not in forest, shrubland, or heath habitats) and averaged 3.1% frequency and 0.5% cover [110]. Observations in Black Rock Forest in Cornwall, New York, suggest that Japanese barberry is common on disturbed sites including roadsides and recently cut areas. It also "still grows on sites cut thirty years ago, but is being gradually replaced...in open sites" by highbush blueberry (Vaccinium corymbosum) [2]. Stem density of Japanese barberry was higher in young and midsuccessional forests than in mature forests on 14 forested sites in the transitional zone between western mesophytic forest and beech-maple (Fagus-Acer spp.) forest in central and southern Indiana [35].

Establishment following modern (late 20th century) disturbances: At a landscape scale, Japanese barberry occurrence or abundance does not appear to be influenced by disturbances such as harvesting activity occurring since 1984 in the Quabbin Watershed, Massachusetts [20]. However, several smaller-scale studies indicate a potential for early-successional establishment of Japanese barberry following disturbance of the forest canopy. In a 9-year study to assess forest response to hemlock woolly adelgid infestation on 2 eastern hemlock stands, there was no evidence of either hemlock woolly adelgid infestation or nonnative plants in 1994. In 2003, 25% of monitored eastern hemlock trees were either dead or in severe decline, and nonnative plants including Japanese barberry, tree-of-heaven (Ailanthus altissima), garlic mustard (Alliaria petiolata), Japanese stiltgrass, and multiflora rose occurred in 35% of established permanent vegetation plots. Nonnative plant occurrence was not significantly related to light availability, and suggests that propagule pressure may be more limiting than light in early stages of nonnative plant invasion [30]. Similarly, nonnative invasive species such as Japanese barberry, Oriental bittersweet, tree-of-heaven, and Japanese stiltgrass occurred in "several" eastern hemlock stands damaged by hemlock woolly adelgid infestation in south-central Connecticut [81]. Japanese barberry was among the most frequently encountered nonnative invasive species on 44 early-successional sites surveyed in southeastern New Hampshire in 2004 [46]. Japanese barberry and several other nonnative plants established either from the seed bank or from outside sources after researchers removed Norway maple (Acer platanoides) by cutting trees and removing seedlings [112,113].

Establishment or persistence in late-successional environments: Japanese barberry infestations have been reported in areas distant from marked trails and distant from areas of obvious current or former disturbance [26]. The current distribution of Japanese barberry reflects, to some degree, its ability to establish and persist in forests, which is largely influenced by proximity to seed sources. In the Quabbin Watershed, Japanese barberry occurs in nearly 36% of sites that were wooded in the early 20th century, suggesting that Japanese barberry can establish in a forested landscape even in the absence of agricultural disturbances [20]. The historical distribution of Japanese barberry as reflected in herbarium records suggest that there has been a slow increase in the frequency with which it has been observed in closed-canopy forest [26]:

Habitats in which Japanese barberry has been observed during the last century as reflected in herbarium records [26] Date of collection Total number of observations Percentage of observations Disturbed forest or cultivated field Undisturbed forest Before 1900 3 100 0 1901-1920 2 100 0 1921-1940 18 55.5 44.5 1941-1960 22 59.0 41 1961-1980 20 45.0 55 1981-1995 25 40.0 60

Japanese barberry was present but not common in stands that were 90 years old or >200 years old in a chronosequence study of succession from old field to deciduous forest in southwestern Ohio. Japanese barberry did not occur in 2-, 10-, or 50-year-old stands [106]. In a mature mixed-oak forest in New Jersey that had never been cut, Japanese barberry occurred with trace cover in the herb layer on 1 plot (1% frequency) in 1950 but did not occur in any plots in the herb layer in 1969 or 1979. It did not occur in the shrub layer in any plots in 1950 or 1969, but occurred with trace cover on 1 plot in 1979 [18]. Japanese barberry was a relatively common component of some upland forest stands in northern New Jersey that had been free of major disturbance for at least 60 years [15].

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Synonyms ( anglais )

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Berberis thunbergii DC. var. atropurpurea Chenault [34]
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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Taxonomy ( anglais )

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The scientific name of Japanese barberry is Berberis thunbergii DC. (Berberidaceae)
[8,24,34,36,47,73,84,89,98,111,117].

Berberis × ottawensis is a hybrid of Japanese barberry and common barberry
(Berberis vulgaris) [47]. Japanese barberry is also used to breed hybrids for
horticultural purposes [96].



As a popular ornamental, there are numerous cultivars of Japanese barberry [96].
In this review, the wild type will be referred to as "Japanese
barberry", and cultivars, when identified as such in the literature, will be
referred to by cultivar name in single quotations marks (e.g., 'Sparkle').

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Zouhar, Kris. 2008. Berberis thunbergii. In: Fire Effects Information System, [Online]. U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, Fire Sciences Laboratory (Producer). Available: https://www.fs.fed.us/database/feis/plants/shrub/berthu/all.html

Distribution ( espagnol ; castillan )

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Tunberq zirinci ( azéri )

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Tunberq zirinci (lat. Berberis thunbergii) — zirinckimilər fəsiləsinin zirinc cinsinə aid bitki növü.

Təbii yayılması

Yaponiyada yayılmışdır.

Botaniki təsviri

Hündürlüyü 1 m olan alçaqboylu koldur. Sıx enli çətirə malikdir. Qabığı tünd-qəhvəyi rənglidir, budaqları uzun, nazik və kiçik tikanlarla örtülü olur. Zoğları horizontal, sıx budaqlanan, cavanlıqda qövsvari əyilmiş, sarımtıl, al-qırmızı, sonradan qonur rəngli olurlar. Tikanlarının uzunluğu 1 sm, nazik və elastikdir. Yarpaqlarının uzunluğu 1-3 sm, gözəl, yumurtaşəkilli və ya uzunsov, bünövrəsində daralan və qısa saplağa keçən, üstdən parıltılı yaşıl və alt tərəfdən göyümtüldür. Payızda yarpaqları al-qırmızı çalarlı olur, oktyabrda tökülür. Salxımlarda toplanmış çiçəklərinin içərisi sarı, bayır tərəfi isə al-qırmızı rəngdə olur. Çiçəkləri tək və ya dəstələrdə toplanmış 2-5 ədəddir, 8-12 gün ərzində çiçəkləyirlər. Meyvələri parlaq qırmızı giləmeyvədir, ellipsvari formalı, uzunluğu 1 sm-ə qədərdir, payızın əvvəlində yetişir və uzun müddət tökülmür. Hər il bol meyvə verir.

Ekologiyası

Torpağa az tələbkar, quraqlığa, qaza, hisə, toza davamlı bitki növüdür.

Azərbaycanda yayılması

Böyük Qafqazda aşağı dağ ətəklərində yaruslarda rast gəlinir.

İstifadəsi

Bu növün meyvələrində alkaloid çox olduğuna görə acıdır və qidaya yararsızdır, ancaq qışlayan quşlar üçün yaxşı yemdir. Qrup və tək əkinlərdə, alp təpəciklərində istifadə edilir.

Məlumat mənbəsi

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Tunberq zirinci: Brief Summary ( azéri )

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Tunberq zirinci (lat. Berberis thunbergii) — zirinckimilər fəsiləsinin zirinc cinsinə aid bitki növü.

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Pren melyn Thunberg ( gallois )

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Planhigyn blodeuol sy'n perthyn yn agor i'r rhywogaeth Berberis ydy Pren melyn Thunberg sy'n enw gwrywaidd. Mae'n perthyn i'r teulu Berberidaceae. Yr enw gwyddonol (Lladin) yw Berberis thunbergii a'r enw Saesneg yw Thunberg`s barberry.[1]

Mae'r dail yn fytholwyrdd ac wedi eu gosod 'ar yn ail', ac yn teimlo fel lledr.

Gweler hefyd

Cyfeiriadau

  1. Gerddi Kew; adalwyd 21 Ionawr 2015
Comin Wikimedia
Mae gan Gomin Wikimedia
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Pren melyn Thunberg: Brief Summary ( gallois )

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Planhigyn blodeuol sy'n perthyn yn agor i'r rhywogaeth Berberis ydy Pren melyn Thunberg sy'n enw gwrywaidd. Mae'n perthyn i'r teulu Berberidaceae. Yr enw gwyddonol (Lladin) yw Berberis thunbergii a'r enw Saesneg yw Thunberg`s barberry.

Mae'r dail yn fytholwyrdd ac wedi eu gosod 'ar yn ail', ac yn teimlo fel lledr.

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Dřišťál Thunbergův ( tchèque )

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Dřišťál Thunbergův (Berberis thunbergii) je okrasný opadavý keř z čeledi dřišťálovitých. Je původní v Japonsku, pěstuje se ale na celém světě.

Popis

Vegetativní orgány

Dřištál se velmi hustě větví a dorůstá výšky až 1,5 m. Na větvích jsou trny. Listy jsou jednoduché, vejčité až kopisťovité. Čepel je celokrajná. Listy rostou ve svazečcích po 2–6, v úžlabí (paždí) trnů. Listy na podzim dostávají červený až fialový odstín.

Generativní orgány

Květy jsou bleděžluté (či mírně do červena), mají 5–8 mm v průměru, rostou ve svazečcích po 2–5. Doba kvetení je od jara do časného léta (květen, červen). Plod je červená, elipsoidní, až 1 cm dlouhá bobule, obsahující jediné semeno. Bobule dozrávají v pozdním létě.

Existuje mnoho kultivarů, které se navzájem liší zejména barvou listů (žluté až fialové).

Pěstování

Dřišťálům se daří v propustné humózní půdě, které však není podmáčená. Preferuje světlo či polostín, jinak je spíše nenáročný.

Dá se množit vegetativně (řízky) nebo pohlavně (semena). Semena se sází přímo do půdy na podzim, vyklíčí na jaře.

Dřišťál je vhodný jako půdní kryt, do živých plotů a v protihlukových stěnách.

Galerie

Reference

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Dřišťál Thunbergův: Brief Summary ( tchèque )

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Dřišťál Thunbergův (Berberis thunbergii) je okrasný opadavý keř z čeledi dřišťálovitých. Je původní v Japonsku, pěstuje se ale na celém světě.

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Hækberberis ( danois )

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Hæk-Berberis (Berberis thunbergii) er en lille, løvfældende busk med en meget tæt og opret til overhængende, kuplet vækstform. Den ses undertiden forvildet i naturen fra dyrkning.

Beskrivelse

Alle grene og skud er tæt besat med torne. Barken er først rødbrun og rillet. Senere bliver den grå og furet. Gamle grene kan få bark, der skaller af i flager. Knopperne er spredte og gråbrune. Bladene sidder tæt sammen på kortskud, så det virker, som om de er knippestillede. De er ægformede til spatelformede med lang stilk og hel rand. Oversiden er friskt grøn, mens undersiden er er blåligt grøn. Høstfarven er kraftigt gul/orange/rød.

Blomsterne er skålformede og gule, af og til med en rødlig yderside. De er sidder 2-5 sammen i kvaste fra bladhjørnerne. Frugterne er lakrøde bær. Frøene modner godt og spirer villigt.

Rodnettet er kraftigt. Det når vidt omkring og er tæt forgrenet. Veddet er gult.

Højde x bredde og årlig tilvækst: 2 x 2 m (15 x 15 cm/år). Disse mål kan fx anvendes, når arten udplantes.

Voksested

Hæk-Berberis vokser på tørre bjergskråninger i det nordlige Japan, hvor den forekommer langs flodbredder og i skovbryn.

På den sydlige del af Tsukuba-bjergkæden i Ibaraki præfekturet (på østkysten af Honshu), Japan, vokser arten sammen med bl.a. Skæbnetræ, Butbladet Liguster, Castanea crenata (en art af Kastanje), Djævletræ, Dværg-Azalea, Eriobotrya japonica ("Japanmispel"), Fliget Kranstop, Guldbånds-Lilje, Have-Aucuba, Have-Hortensia, Hosta sieboldiana, Hvid Fredløs, Hvid Jodplante, Hvid Morbær, Japan-Pileurt, Japansk Akshale, Japansk Asters, Japansk Avnbøg, Japansk Blommetaks, Japansk Blåregn, Japansk Bøg, Japansk El, Japansk Fyr, Japansk Konvalbusk, Japansk Kryptomeria, Japansk Løn, Japansk Prydæble, Japansk skimmia, Japansk Spiræa, Japansk Stjerneanis, Japansk Styrax, Japansk Sølvlys, Japansk Zelkova, Kalopanax, Kantet Konval, Kuriler-Magnolia, Manchurisk Aralie, Mangeblomstret Sølvblad, Ranunkelbusk, Quercus glauca (en art af Eg), Rødnervet Løn, Smalbladet Perikon, Sol-Cypres, Sorbus japonica (en art af Røn, Stikkelbær-Kiwi, Stuearalie, Tofarvet Kløverbusk, Vinge-Benved, Vitis thunbergii (en art af Vin) og Ægte Kamelia[1]

Løv og bær

Løvet er næringsrigt og virker mulddannende. Bærrene er spiselige, men sure. Alle andre dele af busken er giftige.

 src=
Berberis thunbergii var. aurea




Note

Kilde

  • Signe Frederiksen et al., Dansk flora, 2. udgave, Gyldendal 2012. ISBN 8702112191.
  • Sten Porse: Plantebeskrivelser, DCJ 2003 (CD-Rom).

Eksterne henvisninger

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Hækberberis: Brief Summary ( danois )

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Hæk-Berberis (Berberis thunbergii) er en lille, løvfældende busk med en meget tæt og opret til overhængende, kuplet vækstform. Den ses undertiden forvildet i naturen fra dyrkning.

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Thunberg-Berberitze ( allemand )

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Die Thunberg-Berberitze (Berberis thunbergii), auch Grüne Hecken-Berberitze genannt, ist eine Pflanzenart aus der Familie der Berberitzengewächse (Berberidaceae). Berberis thunbergii ist in Japan beheimatet und wurde im 18. Jahrhundert von dem Schweden Carl Peter Thunberg nach Europa gebracht. Nach der Flora of China kommt die Art ursprünglich nicht in China vor.[1]

Beschreibung

Der anspruchslose sommergrüne (laubabwerfende) Strauch kann eine Wuchshöhe von bis zu 2 Metern erreichen. Er wächst straff aufrecht und ist dicht verzweigt und bedornt.

Die oberseits hellgrünen, unterseits bläulich grünen Laubblätter sind verkehrt eiförmig, ganzrandig und etwa 1 bis 3 cm lang. Ihre Herbstfärbung reicht von leuchtend orange bis hin zu karminrot. Die Blattdornen sind meist einfach und 5 bis 15 mm lang.

Die kleinen, muschelähnlichen Blüten (blassgelb, außen rötlich) sind meist einzeln oder zu zweit gebüschelt. Die Thunberg-Berberitze blüht von April bis Mai.

Im Herbst erscheinen die länglichen hellroten Beeren.

Die Chromosomenzahl beträgt 2n = 28.[2]

Vermehrung

Berberis thunbergii kann sowohl generativ als auch vegetativ vermehrt werden.

Die Samen werden sofort nach der Ernte ausgesät oder stratifiziert und im Frühjahr ausgebracht.

Die vegetative Vermehrung erfolgt im Dezember bis März durch verholzte oder halbverholzte Stecklinge von etwa 12 cm Länge. Die kürzeren Dornen werden entfernt und das Holz in ein leichtes Substrat gesteckt, das nie austrocknen darf.

Krankheiten und Schädlinge

Berberis thunbergii kann gelegentlich von Blattläusen oder Echtem Mehltau befallen werden. Im Gegensatz zu Berberis vulgaris ist sie kein Zwischenwirt des Getreiderostpilzes.

Giftstoffe, Wirkung, Symptome

Wie alle Berberitzenarten enthalten auch die Thunberg-Berberitzen vorwiegend in Blättern, Rinde und Wurzeln das Alkaloid Berberin. Die Aufnahme kann von Magenbeschwerden, Erbrechen, Durchfall, Benommenheit, Atemnot, Krampfanfällen bis hin zur Nierenentzündung führen.

Verwendung

 src=
Berberis thunbergii 'Atropurpurea'
Blüten der dunkellaubigen Sorte
 src=
Berberis thunbergii 'Aurea'
Sorte mit gelben Blättern
 src=
Berberis thunbergii
Beeren und Laub in Herbstfärbung

Ihre Blüten, die unterschiedlichen Blattfärbungen und die im Herbst erscheinenden Beeren führen zur Verwendung der vielen Sorten der Thunberg-Berberitze als Ziersträucher in Garten und Parks. Sie dienen auch als Bienenweide.

Sorten und Hybriden

  • Berberis thunbergii 'Atropurpurea' (Blut-Berberitze), seit 1913 in Kultur. Mittelhoher, dicht verzweigter, straff aufrechter Strauch. Höhe 2 - 3 m, Breite 2 – 3 m. Blattfarbe, rot bis purpurrot, während des Austriebs intensivste Färbung. Herbstfärbung rotkarmin.
  • Berberis thunbergii 'Atropurpurea Nana' (Kleine Blut-Berberitze), 1942 in den Niederlanden entstanden
  • Berberis thunbergii 'Aurea', seit 1950 kultiviert
  • Berberis thunbergii 'Bagatelle' (Kreuzung aus Berberis thunbergii 'Kobold' und Berberis thunbergii 'Atropurpurea Nana'), seit 1971
  • Berberis thunbergii 'Crimson Pygmy' Synonym für Berberis thunbergii 'Atropurpurea Nana'
  • Berberis thunbergii 'Dart's Red Lady'
  • Berberis thunbergii 'Erecta'
  • Berberis thunbergii 'Little Favorite' Synonym für Berberis thunbergii 'Atropurpurea Nana'
  • Berberis thunbergii 'Golden Ring', seit 1950
  • Berberis thunbergii 'Green Carpet'
  • Berberis thunbergii 'Harlequin', seit 1969
  • Berberis thunbergii 'Helmond Pillar'
  • Berberis thunbergii 'Keller's Surprise'
  • Berberis thunbergii 'Kelleriis', aus Dänemark
  • Berberis thunbergii 'Kobold', 1950 in den Niederlanden gezüchtet
  • Berberis thunbergii 'Pink Queen', vor 1958 in den Niederlanden gezüchtet
  • Berberis thunbergii 'Red Chief', 1942, Niederlande
  • Berberis thunbergii 'Red Pillar'
  • Berberis thunbergii 'Rose Glow', 1957 in den Niederlanden gezüchtet
  • Berberis thunbergii 'Silver Beauty'
  • Berberis thunbergii var. maximowiczii

Die Hybride zwischen Berberis thunbergii und Berberis vulgaris wird als Berberis ×ottawensis, die Hybride zwischen Berberis thunbergii und Berberis julianae als Berberis ×mentorensis bezeichnet.

Ähnlichkeit mit Berberis vulgaris

Die beiden Pflanzenarten unterscheiden sich im Wesentlichen darin, dass Berberis thunbergii kleinere rundere Blätter besitzt und Berberis vulgaris größere gesägte Blätter hat.

Literatur

Einzelnachweise

  1. Junsheng Ying: Berberis Linnaeus. In: Flora of China, vol. 19, Berberidaceae. Berberis
  2. Berberis thunbergii bei Tropicos.org. In: IPCN Chromosome Reports. Missouri Botanical Garden, St. Louis.
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Thunberg-Berberitze: Brief Summary ( allemand )

fourni par wikipedia DE

Die Thunberg-Berberitze (Berberis thunbergii), auch Grüne Hecken-Berberitze genannt, ist eine Pflanzenart aus der Familie der Berberitzengewächse (Berberidaceae). Berberis thunbergii ist in Japan beheimatet und wurde im 18. Jahrhundert von dem Schweden Carl Peter Thunberg nach Europa gebracht. Nach der Flora of China kommt die Art ursprünglich nicht in China vor.

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Berberis thunbergii ( anglais )

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Berberis thunbergii, the Japanese barberry, Thunberg's barberry, or red barberry,[1] is a species of flowering plant in the barberry family Berberidaceae, native to Japan and eastern Asia, though widely naturalized in China and North America, where it has become a problematic invasive in many places, leading to declines in species diversity, increased tick habitat, and soil changes.[2][3][4] Growing to 1 m (3 ft 3 in) tall by 2.5 m (8 ft 2 in) broad, it is a small deciduous shrub with green leaves turning red in the autumn, brilliant red fruits in autumn and pale yellow flowers in spring.[5]

Description

B. thunbergii has deeply grooved, brown, spiny branches with a single (occasionally tridentine) spine (actually a highly modified leaf) at each shoot node. The leaves are green to blue-green (reddish or purple in some horticultural variants), very small, spatula to oval shaped, 12–24 millimetres (121516 in) long and 3–15 millimetres (18916 in) broad; they are produced in clusters of 2–6 on a dwarf shoot in the axil of each spine. The flowers are pale yellow, 5–8 millimetres (316516 in) diameter, produced in drooping 1–1.5 centimetres (3858 in) long umbrella-shaped clusters of 2–5; flowering is from mid spring to early summer. The edible fruit is a glossy bright red to orange-red, ovoid berry 7–10 millimetres (9321332 in) long and 4–7 millimetres (532932 in) broad, containing a single seed. They mature during late summer and fall and persist through the winter.[4]

Identification

This species is sometimes confused with Berberis canadensis (American barberry), Berberis vulgaris (common or European barberry), and other deciduous Berberis species; it is most readily distinguished by the flowers being produced in umbels, not racemes.[6]

Cultivation

Berries on an ornamental plant in winter

Berberis thunbergii is widely grown as an ornamental plant,[7] both in Japan and elsewhere in the temperate Northern Hemisphere. Numerous cultivars have been selected, including plants selected for yellow, dark red to violet, or variegated foliage, erect growth (for hedge use), and dwarf size.

In cultivation in the UK, the following have gained the Royal Horticultural Society's Award of Garden Merit:

  • B. thunbergii 'Fireball'[8]
  • B. thunbergii 'Maria'[9]
  • B. thunbergii f. atropurpurea 'Admiration'[10]
  • B. thunbergii f. atropurpurea 'Atropurpurea Nana'[11]
  • B. thunbergii f. atropurpurea 'Concorde'[12]
  • B. thunbergii f. atropurpurea 'Dart's Red Lady'[13]
  • B. thunbergii f. atropurpurea 'Golden Ring'[14]
  • B. thunbergii f. atropurpurea 'Harlequin'[15]
  • B. thunbergii f. atropurpurea 'Rose Glow'[16]

Invasive species

Flowers in an umbel on naturalized Berberis thunbergii in the eastern United States

Japanese barberry can be found in most northeastern and Great Lakes states of the United States. A current map of its distribution can be found at the Early Detection and Distribution Mapping System (EDDmapS).[17] In recent years, Berberis thunbergii has been recognized as an invasive species in many parts of the eastern United States.[4] The Plant Conservation Alliance's Alien Plant Working Group lists it among its "Least Wanted".[18] Japanese barberry is prohibited from being a seed contaminant in Michigan and banned from sale in Massachusetts and West Virginia.[19] This species is ranked "Very High" on the New York State Threat Assessment scale.[20]

This Berberis is avoided by deer, and has been replacing native species. Furthermore, the plant can raise the pH of the soil and affect soil nitrogen levels. Unlike B. canadensis and B. vulgaris, B. thunbergii does not act as a host for Puccinia graminis (black rust), a rust pathogen of wheat.[4] B. thunbergii, however, naturally hybridizes with B. vulgaris, and the offspring can be susceptible to P. graminis.[21]

Japanese barberry provides an exceptionally favorable environment for ticks due to the high humidity present in barberry's dense foliage. It is hypothesized that spread of barberry is correlated with the spread of Lyme disease.[22] Tick numbers are higher in areas with thick barberry understories, as opposed to areas with controlled barberry or no barberry.[23] In one study, 280 ± 51 adult black-legged ticks, Ixodes scapularis, were found per hectare (113 ± 21/acre) in a barberry infected area, while only 30 ± 10 adult black-legged ticks were found per hectare (12.1 ± 4.0/acre) in otherwise similar area with no barberry present.[24][25]

Detailed information on how to control Japanese barberry is available in a Michigan Department of Natural Resources document.[6]

Gallery

References

  1. ^ "Moonshine Designs Nursery". Archived from the original on 2 April 2008. Retrieved 29 March 2008.
  2. ^ "Berberis thunbergii in Flora of China @ efloras.org". efloras.org.
  3. ^ "Berberis thunbergii in Flora of North America @ efloras.org". efloras.org.
  4. ^ a b c d Swearingen, Jil M. (7 July 2009). "Least Wanted: Japanese Barberry". U.S. National Park Service. Archived from the original on 14 May 2011. Retrieved 20 March 2011.
  5. ^ Brickell, Christopher, ed. (2008). The Royal Horticultural Society A-Z Encyclopedia of Garden Plants. United Kingdom: Dorling Kindersley. ISBN 9781405332965.
  6. ^ a b Michigan Department of Natural Resources (February 2012). "Japanese barberry Berberis thunbergii Invasive Species—Best Control Practices" (PDF). Michigan Natural Features Inventory. Archived from the original (PDF) on 19 January 2022. Retrieved 18 May 2022.
  7. ^ "RHS Plant Selector – Berberis thunbergii". Retrieved 12 June 2013.
  8. ^ "RHS Plantfinder – Berberis thunbergii 'Fireball'". Royal Horticultural Society. Retrieved 21 January 2018.
  9. ^ "RHS Plantfinder – Berberis thunbergii 'Maria'". Royal Horticultural Society. Retrieved 21 January 2018.
  10. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Admiration'". Royal Horticultural Society. Retrieved 21 January 2018.
  11. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Atropurpurea Nana'". Royal Horticultural Society. Retrieved 21 January 2018.
  12. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Concorde'". Royal Horticultural Society. Retrieved 21 January 2018.
  13. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Dart's Red Lady'". Royal Horticultural Society. Retrieved 21 January 2018.
  14. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Golden Ring'". Royal Horticultural Society. Retrieved 21 January 2018.
  15. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Harlequin'". Royal Horticultural Society. Retrieved 21 January 2018.
  16. ^ "RHS Plantfinder – Berberis thunbergii f. atropurpurea 'Rose Glow'". Royal Horticultural Society. Retrieved 21 January 2018.
  17. ^ EDDMapS. 2019. Early Detection & Distribution Mapping System. The University of Georgia - Center for Invasive Species and Ecosystem Health. Available online at "http://www.eddmaps.org/"; last accessed 27 October 2019.
  18. ^ "PCA Alien Plant Working Group - Japanese Barberry (Berberis thunbergii)". Archived from the original on 23 October 2004.
  19. ^ "Berberis thunbergii". USDA plant database. Retrieved 8 November 2015.
  20. ^ "Japanese Barberry". Adirondack Park Invasive Plant Program. Retrieved 1 November 2019.
  21. ^ Bartaula, Radhika (26 February 2018). "An interspecific barberry hybrid enables genetic dissection of non-host resistance to the stem rust pathogen Puccinia graminis". Journal of Experimental Botany. 69 (10): 2483–2493. doi:10.1093/jxb/ery066. PMC 5920301. PMID 29529250.
  22. ^ Zimmer, Carl (30 April 2013). "The Rise of the Tick".
  23. ^ Williams, Scott C.; Ward, Jeffrey S.; Worthley, Thomas E.; Stafford, Kirby C. (1 August 2009). "Managing Japanese Barberry (Ranunculales: Berberidaceae) Infestations Reduces Blacklegged Tick (Acari: Ixodidae) Abundance and Infection Prevalence With Borrelia burgdorferi (Spirochaetales: Spirochaetaceae)". Environmental Entomology. Entomological Society of America (OUP). 38 (4): 977–984. doi:10.1603/022.038.0404. ISSN 0046-225X. PMID 19689875. S2CID 41634052.
  24. ^ Williams, Scott C.; Ward, Jeffrey S. (1 December 2010). "Effects of Japanese Barberry (Ranunculales: Berberidaceae) Removal and Resulting Microclimatic Changes on Ixodes scapularis (Acari: Ixodidae) Abundances in Connecticut, USA". Environmental Entomology. Entomological Society of America (OUP). 39 (6): 1911–1921. doi:10.1603/en10131. ISSN 0046-225X. PMID 22182557. S2CID 38393339.
  25. ^ Pfäffle, Miriam; Littwin, Nina; Muders, Senta V.; Petney, Trevor N. (2013). "The ecology of tick-borne diseases". International Journal for Parasitology. Australian Society for Parasitology (Elsevier). 43 (12–13): 1059–1077. doi:10.1016/j.ijpara.2013.06.009. ISSN 0020-7519. PMID 23911308. S2CID 43839489.

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Berberis thunbergii: Brief Summary ( anglais )

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Berberis thunbergii, the Japanese barberry, Thunberg's barberry, or red barberry, is a species of flowering plant in the barberry family Berberidaceae, native to Japan and eastern Asia, though widely naturalized in China and North America, where it has become a problematic invasive in many places, leading to declines in species diversity, increased tick habitat, and soil changes. Growing to 1 m (3 ft 3 in) tall by 2.5 m (8 ft 2 in) broad, it is a small deciduous shrub with green leaves turning red in the autumn, brilliant red fruits in autumn and pale yellow flowers in spring.

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Berberis thunbergii ( espéranto )

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La Berberiso de Thunberg (Berberis thunbergii), ankaŭ nomata verda heĝoberberiso, estas plantospecio el la familio de la Berberisacoj (Berberidaceae). Berberis thunbergii hejmiĝas en Japanujo kaj Ĉinujo. Ĝi estis portita en la 18a jarcento de la svedo Carl Peter Thunberg al Eŭropo.

Priskribo

La nepostulema somerverda (decidua) arbusto povas kreski ĝis alteco de 2 metroj. Ĝi kreskas vertikale kaj havas densan habiton. La branĉoj havas folidornojn.

La supra surfaco havas helverdan kaj la malsupran flankon blue verda surfaco. La folioj estas renverse ovoformaj kaj 1 ĝis 3 cm longaj. La kolorigado en aŭtuno estas oranĝa ĝis kamenruĝa.

La dornoj estas malbrile flavaj kaj longas 5 ĝis 15 mm longaj.

La malgrandoj konkoformaj floroj estas malbrile flavaj kaj je la ekstera flanko ruĝecaj. La Thunberg-a berberiso floras de aprilo ĝis majo. En aŭtuno aperas la oblongaj helruĝaj beroj. La kromosomonombro estas 2n = 28.

Plimultigado

Oni povas multobligi Berberis thunbergii kaj generative kaj vegetative.

La semojn oni dissemas tuj post la rikolto. Eblas ankaŭ stratifiki la semojn kaj dissemi ilin printempe.

La vegetativa multobligado okazas en decembro ĝis marto. Bezonatas lignaj kaj duonlignaj stikaĵoj kun longeco de ĉ. 12 cm.

Uzado

 src=
B. thunbergii 'Atropurpurea'
floroj de la malhelfoliaj kultivaroj
 src=
B. thunbergii 'Aurea'
kultivaroj kun flavaj folioj
 src=
B. thunbergii
beroj kaj folioj en aŭtuna koloro

Kultivaroj kaj hibridoj

  • Berberis thunbergii, 'Atropurpurea' (sangoberberiso), en kulturo ekde 1913 . mezalta, dense disbranĉita vertikala arbusto. Alteco 2 - 3 m, larĝeco 2 – 3 m. Koloro de la folio ruĝa ĝis purpurruĝa. Koloro en aŭtuno karminruĝa.
  • Berberis thunbergii 'Atropurpurea Nana' (malgranda sango berberiso), bredita en Nederlando en la jaro 1942
  • Berberis thunbergii 'Aurea', kultivita ekde 1950
  • Berberis thunbergii 'Bagatelle' (kruciĝo el Berberis thunbergii 'Kobold' kaj Berberis thunbergii 'Atropurpurea Nana'), ekde 1971
  • Berberis thunbergii 'Crimson Pygmy', sinonimo por Berberis thunbergii 'Atropurpurea Nana'
  • Berberis thunbergii 'Dart's Red Lady'
  • Berberis thunbergii 'Erecta'
  • Berberis thunbergii 'Little Favorite' sinonimo por Berberis thunbergii 'Atropurpurea Nana'
  • Berberis thunbergii 'Golden Ring', ekde 1950
  • Berberis thunbergii 'Green Carpet'
  • Berberis thunbergii 'Harlequin', seit 1969
  • Berberis thunbergii 'Helmond Pillar'
  • Berberis thunbergii 'Keller's Surprise'
  • Berberis thunbergii 'Kelleriis', el Danujo
  • Berberis thunbergii 'Kobold', bredita 1950 en Nederlando
  • Berberis thunbergii 'Pink Queen', bredita 1958 en Nederlandop
  • Berberis thunbergii 'Red Chief', 1942, Nederlando
  • Berberis thunbergii 'Red Pillar'
  • Berberis thunbergii 'Rose Glow', bredita 1957 en Nederlado
  • Berberis thunbergii 'Silver Beauty'

La hibridoj inter Berberis thunbergii kaj Berberis vulgaris havas la nomon Berberis ×ottawensis, la hibridoj inter Berberis thunbergii kaj Berberis julianae estas Berberis ×mentorensis..

Simileco kun Berberis vulgaris

Ambaŭ berberisaj specioj distingiĝas ĉefe en tio, ke Berberis thunbergii havas pli malgrandajn foliojn kaj Berberis vulgaris pli grandajn kaj segilformajn foliojn.

Literaturo

  • John Kelly, John Hillier (Hrsg.): The Hillier Bäume & Sträucher. 1. Aufl. Thalacker-Medien, Braunschweig 1997, ISBN 3-87815-086-5.
  • Jost Fitschen (Begr.), Franz H. Meyer (Bearb.): Gehölzflora. 11. erw. und korrigierte Aufl. Quelle & Meyer, Wiebelsheim, 2002, ISBN 3-494-01268-7.
  • Robert Zander: Zander. Handwörterbuch der Pflanzennamen. Eld. de Walter Erhardt, Erich Götz, Nils Bödeker, Siegmund Seybold. 16. Auflage. Eugen Ulmer, Stuttgart 2000, ISBN 3-8001-5080-8
  • Gordon Cheers (Eld.): Botanica: Das ABC der Pflanzen. 10.000 Arten in Text und Bild. Könemann Verlags, Köln 2002, ISBN 3-8290-0868-6.

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Berberis thunbergii: Brief Summary ( espéranto )

fourni par wikipedia EO

La Berberiso de Thunberg (Berberis thunbergii), ankaŭ nomata verda heĝoberberiso, estas plantospecio el la familio de la Berberisacoj (Berberidaceae). Berberis thunbergii hejmiĝas en Japanujo kaj Ĉinujo. Ĝi estis portita en la 18a jarcento de la svedo Carl Peter Thunberg al Eŭropo.

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Berberis thunbergii ( espagnol ; castillan )

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Berberis thunbergii es una planta del género Berberis propia de Japón y Asia occidental.

Descripción

Posee un porte arbustivo denso, espinoso, de uno a dos metros de altura. Las espinas, frecuentes, son simples, a veces tridentadas; su origen es foliar, aunque ha sufrido muchas modificaciones. Las hojas, verdes o verde-azuladas, son pequeñas, ovaladas, de 12-24 mm de longitud y 3-15 mm de anchura. Las flores, amarillas, poseen un diámetro de 5 a 6 mm y se disponen en una inflorescencia en umbela; la floración se produce en primavera o a principios del verano. Los frutos, son bayas comestibles, son de un color rojo o anaranjado brillante, de 7-10 mm de longitud y 4-7 mm de anchura, contienen una semilla. Estas bayas maduran a finales del verano y, tras caer al suelo, persisten durante el invierno.

 src=
Ejemplar con abundantes bayas maduras.
 src=
Vista de la planta

Usos

Esta especie se emplea como planta ornamental en Japón y lugares templados del Hemisferio Norte. Existen cultivares seleccionados para: el color foliar, pues los hay con las hojas amarillas, rojo oscuras, violetas y variegadas; el crecimiento en altura o en forma compacta, exagerando su carácter arbustivo. Debido a los escapes producidos, se considera una planta invasora en el este de Estados Unidos; tanto es así que en Canadá se ha prohibido su cultivo debido a que opera como un hospedador intermedio para Puccinia graminis, hongo que ocasiona la roya del trigo.

Lista de cultivares

  • Berberis thunbergii 'Atropurpurea Nana' (también denominada 'Little Favourite' o 'Crimson Pygmy')
  • Berberis thunbergii 'Aurea'
  • Berberis thunbergii 'Bagatelle'
  • Berberis thunbergii 'Bonanza Gold'
  • Berberis thunbergii 'Golden Ring'
  • Berberis thunbergii 'Helmond Pillar'
  • Berberis thunbergii 'Red Chief'
  • Berberis thunbergii 'Red Pillar'
  • Berberis thunbergii 'Rose Glow'

Taxonomía

Berberis congestiflora fue descrita por Augustin Pyrame de Candolle y publicado en Regni Vegetabilis Systema Naturale 2: 9–10. 1821.[1][2]

Etimología

Berberis: nombre genérico que es la forma latinizada del nombre árabe de la fruta.[3]

thunbergii: epíteto otorgado en honor del botánico sueco Carl Peter Thunberg.

Nombres comunes

Agracejo rojo, agracejo púrpura.

Referencias

Bibliografía

  1. Anonymous. 1986. List-Based Rec., Soil Conserv. Serv., U.S.D.A. Database of the U.S.D.A., Beltsville.
  2. Bailey, L. H. & E. Z. Bailey. 1976. Hortus Third i–xiv, 1–1290. MacMillan, New York.
  3. Fernald, M. 1950. Manual (ed. 8) i–lxiv, 1–1632. American Book Co., New York.
  4. Flora of China Editorial Committee. 2011. Fl. China 19: 1–884. Science Press & Missouri Botanical Garden Press, Beijing & St. Louis.
  5. Flora of North America Editorial Committee, e. 1997. Magnoliidae and Hamamelidae. 3: i–xxiii, 1–590. In Fl. N. Amer.. Oxford University Press, New York.
  6. Gleason, H. A. 1968. The Choripetalous Dicotyledoneae. vol. 2. 655 pp. In H. A. Gleason Ill. Fl. N. U.S. (ed. 3). New York Botanical Garden, New York.
  7. Gleason, H. A. & A. J. Cronquist. 1991. Man. Vasc. Pl. N.E. U.S. (ed. 2) i–910. New York Botanical Garden, Bronx.
  8. Radford, A. E., H. E. Ahles & C. R. Bell. 1968. Man. Vasc. Fl. Carolinas i–lxi, 1–1183. University of North Carolina Press, Chapel Hill.
  9. Scoggan, H. J. 1978. Dicotyledoneae (Saururaceae to Violaceae). 3: 547–1115. In Fl. Canada. National Museums of Canada, Ottawa.
  10. Voss, E. G. 1985. Michigan Flora. Part II Dicots (Saururaceae-Cornaceae). Bull. Cranbrook Inst. Sci. 59. xix + 724.
  11. Whittemore, A. T. 1993. Berberis (Berberidaceae). 20 pp.

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Berberis thunbergii: Brief Summary ( espagnol ; castillan )

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Berberis thunbergii es una planta del género Berberis propia de Japón y Asia occidental.

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Japaninhappomarja ( finnois )

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Japaninhappomarja (Berberis thunbergii) on happomarjakasveihin kuuluva, Japanista kotoisin oleva pensas. Lajia käytetään puutarhoissa aitakasvina tai vapaasti kasvaviin istutuksiin.

Ulkonäkö ja koko

 src=
Japaninhappomarjan kukkia.
 src=
Japaninhappomarjan marjaisia oksia.

Japaninhappomarja on piikikäs, pysty ja kasvaa 0,5–1 metriä korkeaksi. Edellisen kesän kasvaimen kuori on punaruskea, kuluvan kesän kasvainranka on kalju. Lehdet ovat oksissa kierteisesti. Lehtilapa on 1–3 cm pitkä, vastapuikea, suippotyvinen ja ehytlaitainen. Haaroissa sijaitsevat oralehdet ovat yksipiikkisiä. Kukinto on 2–4-kukkainen sarjamainen terttu, tai kukat ovat yksittäin. Keltaiset kukat ovat kaksineuvoisia. Kehälehtiä on yhdeksän kappaletta, joista sisimmät kuusi ovat terälehtimäisiä. Mesilehtiä ja heteitä on tavallisesti kuusi kappaletta, emejä yksi. Japaninhappomarja kukkii Suomessa kesä-heinäkuussa. Kukinnan jälkeen kypsyvät punaiset ja pitkulaiset, kaksisiemeniset marjat.[1][2] Kasvin raa’at marjat ovat myrkyllisiä, mutta kypsinä ne ovat syötäviä.[3]

Levinneisyys

Japaninhappomarja kasvaa alkuperäisenä luonnonkasvina Japanin etelä- ja keskiosissa.[4] Suomessa japaninhappomarjaa kasvaa paikoitellen luonnonvaraisena Ahvenanmaalla, Varsinais-Suomessa, Uudellamaalla, Hämeessä ja Etelä-Karjalassa.[5]

Elinympäristö

Alkuperäisellä levinneisyyssalueella Japanissa japaninhappomarja kasvaa laidunniityillä ja erilaisissa pensaikoissa. Suomen luonnossa sitä esiintyy viljelykarkulaisena.[4]

Käyttö

Japaninhappomarjaa käytetään puistoissa ja puutarhoissa vapaasti kasvavana koristepensaana tai aitakasvina. Suomessa se menestyy Ilmatieteen laitoksen määrittämillä kasvuvyöhykkeillä I-V, mutta vaurioituu helposti pahoin poikkeuksellisen kylminä pakkastalvina.[4]

Kasvista on jalostettu useita viljelylajikkeita, joista Suomessa tavataan muun muassa lajikkeita 'Atropurpurea' eli purppurahappomarja, 'Atropurpurea Nana', 'Aurea', 'Erecta' ja 'Red Chief'. Lajikkeet eroavat toisistaan koon ja lehtilavan värin puolesta, joka vaihtelee punertavasta kellertävään.[4]

Lähteet

  • Mansimarjasta punapuolaan. Marjakasvien kulttuurihistoriaa. Toim. Klemettilä, Hannele & Jaakola, Laura. Maahenki Oy, Helsinki 2011. ISBN 978-952-5870-50-3.
  • Nyblom-Holmberg, Gunnel & Vainio, Hannele: Otavan Puutarhakirja. Kustannusosakeyhtiö Otava, Helsinki, 1983/1992. ISBN 951-1-11595-2.
  • Retkeilykasvio. Toim. Hämet-Ahti, Leena & Suominen, Juha & Ulvinen, Tauno & Uotila, Pertti. Luonnontieteellinen keskusmuseo, Kasvimuseo, Helsinki 1998.
  • Suomen puu- ja pensaskasvio. Toim. Hämet-Ahti, Leena & Alanko, Pentti & Palmén, Annikki & Tigerstedt, Peter M. A.. 2. uudistettu painos. Dendrologian seura – Denrologiska Sällskapet r.y., Helsinki 1992.

Viitteet

  1. Retkeilykasvio 1998, s. 66.
  2. Suomen puu- ja pensaskasvio 1992, s. 100–101.
  3. Mansimarjasta punapuolaan 2011, s. 200.
  4. a b c d Suomen puu- ja pensaskasvio 1992, s. 101.
  5. Lampinen, R. & Lahti, T. 2011: Kasviatlas 2010: Japaninhappomarjan levinneisyys Suomessa. Helsingin Yliopisto, Luonnontieteellinen keskusmuseo, Kasvimuseo, Helsinki. Viitattu 27.10.2011.

Aiheesta muualla

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Japaninhappomarja: Brief Summary ( finnois )

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Japaninhappomarja (Berberis thunbergii) on happomarjakasveihin kuuluva, Japanista kotoisin oleva pensas. Lajia käytetään puutarhoissa aitakasvina tai vapaasti kasvaviin istutuksiin.

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Berberis thunbergii

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L’Épine-vinette de Thunberg (Berberis thunbergii) est une espèce d'arbustes originaire du Japon, cultivée en Europe depuis 1864 à des fins ornementales.

Description

Il mesure généralement entre 60 cm et 2 m de haut. Ses feuilles caduques, parfois semi-persistantes, sont vertes ou pourpres selon la variété, et virent au rouge-orangé à l'automne. Ses fleurs jaunes apparaissent en juin, et ses petites baies, rouges, persistent en hiver.

Galerie

Notes et références

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Berberis thunbergii: Brief Summary

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L’Épine-vinette de Thunberg (Berberis thunbergii) est une espèce d'arbustes originaire du Japon, cultivée en Europe depuis 1864 à des fins ornementales.

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Thunbergova žutika ( Croate )

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Thunbergova žutika (lat. Berberis thunbergii) je listopadni grm, podrijetlom iz Kine i Japana. Dobro podnosi niske temperature, kao i zagađenja zraka, prašinu i dim pa je zbog tih osobina izuzetno pogodna za velike gradove. Bolesti i štetnici je baš i ne napadaju.

Opis

Naraste u visinu od 50 cm do 1 m. Grm je gusto razgranat, grane su crvenosmeđe s tankim trnovima. Na njima se nalaze sitni eliptični svjetlozeleni listovi cjelovita ruba. Dugi su 12-24 mm, a široki 3-15 mm. U jesen zelena boja prijeđe u narančastocrvenu. Cvijeta tijekom travnja i svibnja žutim cvjetovima koji dolaze u skupinama od dva do pet cvjetova veličine 5-8 mm. U jesen narastu crveni elipsasti glatki plodovi koji jako lijepo izgledaju. Dugi su 7-10 mm, a široki 4-7 mm i sadrže samo jednu sjemenku. Plodovi ostaju na stablu i nakon opadanja listova i stoje tijekom zime.

Izvori

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Thunbergova žutika: Brief Summary ( Croate )

fourni par wikipedia hr Croatian

Thunbergova žutika (lat. Berberis thunbergii) je listopadni grm, podrijetlom iz Kine i Japana. Dobro podnosi niske temperature, kao i zagađenja zraka, prašinu i dim pa je zbog tih osobina izuzetno pogodna za velike gradove. Bolesti i štetnici je baš i ne napadaju.

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Thunbergowa kisyca ( haut-sorabe )

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Thunbergowa kisyca (Berberis thunbergii) je kerk ze swójby kisycowych rostlinow (Berberidaceae).

 src=
Kćenja thunbergoweje kisycy

Wopis

Thunbergowa kisyca je kerk, kotryž docpěwa wysokosć wot 1,5 hač do 3 m.

Łopjena

Łopjena su mjenje bóle cyłokromne a docpěwaja dołhosć wot 1-2 cm. Wone so w nazymje oranžowožołće hač čerwjenje zbarbja.

Kćenja

Kćěje wot meje hač do junija. Kćenja a płody steja po dwěmaj hač po štyrjoch jedyn při druhim.

Płody

Płody su jědojte. Zrałe płody su koralowočerwjene a wot septembra hač do zymy na kerku wisaja.

Stejnišćo

Ma radšo přesakliwe, w prawym měrje suche hač čerstwe pódy ze srjedźnym podźělom na wutkach.

Rozšěrjenje

Wužiwanje

Nóžki

  1. Pawoł Völkel: Prawopisny słownik hornjoserbskeje rěče. Hornjoserbsko-němski słownik. Ludowe nakładnistwo Domowina, Budyšin 2005, ISBN 3-7420-1920-1, str. 193.
  2. W internetowym słowniku: Berberitze

Žórła

  • Spohn, Aichele, Golte-Bechtle, Spohn: Was blüht denn da? Kosmos Naturführer (2008), ISBN 978-3-440-11379-0, strona 394, jako podobna družina Thunbergs Berberitze (Berberis thunbergii) pod hesłom Gewöhnliche Berberitze, Sauerdorn (Berberis vulgaris) (němsce)
  • Throll: Was blüht im Garten? 1000 Pflanzen Pflege Merkmale Sorten, ISBN 978-3-440-11331-8, strona 16 (němsce)
  • Brankačk, Jurij: Wobrazowy słownik hornjoserbskich rostlinskich mjenow na CD ROM. Rěčny centrum WITAJ, wudaće za serbske šule. Budyšin 2005.
  • Kubát, K. (Hlavní editor): Klíč ke květeně České republiky. Academia, Praha (2002)
  • Lajnert, Jan: Rostlinske mjena. Serbske. Němske. Łaćanske. Rjadowane po přirodnym systemje. Volk und Wissen Volkseigener Verlag Berlin (1954)
  • Rězak, Filip: Němsko-serbski wšowědny słownik hornjołužiskeje rěče. Donnerhak, Budyšin (1920)

Eksterne wotkazy

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Thunbergowa kisyca: Brief Summary ( haut-sorabe )

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Thunbergowa kisyca (Berberis thunbergii) je kerk ze swójby kisycowych rostlinow (Berberidaceae).

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Sólbroddur ( islandais )

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Sólbroddur (fræðiheiti: Berberis thunbergii) er þyrnóttur lauffellandi runni af míturætt. Hann verður um 150 sm að hæð. Runninn er ættaður frá Japan og fær mjög fallega haustliti. Hann ber ber að hausti og þolir vel klippingu.

Yrkið blóðbroddur eða rauður sólbroddur (Atropurpurea) er með blá-rauðfjólublá blöð og hefur verið lengi í ræktun á Íslandi.

Heimild

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Sólbroddur: Brief Summary ( islandais )

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Sólbroddur (fræðiheiti: Berberis thunbergii) er þyrnóttur lauffellandi runni af míturætt. Hann verður um 150 sm að hæð. Runninn er ættaður frá Japan og fær mjög fallega haustliti. Hann ber ber að hausti og þolir vel klippingu.

Yrkið blóðbroddur eða rauður sólbroddur (Atropurpurea) er með blá-rauðfjólublá blöð og hefur verið lengi í ræktun á Íslandi.

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Japanse berberis ( néerlandais ; flamand )

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De Japanse berberis (Berberis thunbergii ) is een bladverliezende, giftige struik die behoort tot de berberisfamilie (Berberidaceae). De struik komt van nature voor in Japan en China en werd in de 18e eeuw door de Zweed Carl Peter Thunberg naar Europa gebracht. De Japanse berberis is in Nederland ingeburgerd, maar wordt ook veel aangeplant.

Beschrijving

De struik wordt 1-2 m hoog. Het is een recht opgaande, dicht vertakte en doornige struik. De 5-15 mm lange doorns zijn onvertakt. De bovenzijde van de omgekeerd eironde, 1-3 cm lange bladeren is lichtgroen en de onderzijde blauwachtig groen. De herfstkleur van de bladeren varieert van helderoranje tot karmijnrood.

De Japanse berberis bloeit in mei en juni. De bloemen zijn aan de buitenkant roodachtig en aan de binnenkant bleekgeel.

De vrucht is een helderrode, langwerpige bes.

Standplaatsen

De plant komt voor op droge grond en in de duinen.

Vermeerdering

De Japanse berberis kan zowel generatief als vegetatief vermeerderd worden. De zaden moeten direct na het plukken van de bessen uitgezaaid worden of bij latere uitzaaiin het voorjaar eerst gestratificeerd. Voor de vegetatieve vermeerdering in december tot maart kunnen verhoute of halfverhoute stekken van 12 cm lengte gebruikt worden.

Ziekten en plagen

De Japanse berberis kan aangetast worden door bladluizen en meeldauw. In tegenstelling tot zuurbes is de struik geen tussenwaardplant voor graanroesten.

Cultivars

Enkele cultivars zijn:

  • Berberis thunbergii B. th. 'Atropurpurea', sinds 1913 in cultuur
  • Berberis thunbergii 'Atropurpurea Nana', dwergstruik tot 50 cm hoog, in 1942 in Nederland gekweekt
  • Berberis thunbergii 'Aurea', sinds 1950 in cultuur
  • Berberis thunbergii 'Bagatelle' (kruising van B. th. 'Kobold' met B. th. 'Atropurpurea Nana'), sinds 1971 in cultuur
  • Berberis thunbergii 'Carpetbagger' dwergstruik tot 30 cm hoog
  • Berberis thunbergii 'Crimson Pygmy' synoniem voor B. th. 'Atropurpurea Nana'
  • Berberis thunbergii 'Dart's Red Lady'
  • Berberis thunbergii 'Erecta'
  • Berberis thunbergii 'Little Favorite' synoniem voor B. th. 'Atropurpurea Nana'
  • Berberis thunbergii 'Golden Ring', sinds 1950 in cultuur
  • Berberis thunbergii 'Green Carpet' dwergstruik tot 25 cm hoog
  • Berberis thunbergii 'Green Ornament' wordt tot 150 cm hoog met donkergroen blad en met een gele tot bruingele herfstkleur
  • Berberis thunbergii 'Harlequin', sinds 1969 in cultuur
  • Berberis thunbergii 'Helmond Pillar'
  • Berberis thunbergii 'Keller's Surprise'
  • Berberis thunbergii 'Kelleriis', uit Denemarken afkomstig
  • Berberis thunbergii 'Kobold' , sinds 1950 in Nederland gekweekt
  • Berberis thunbergii 'Pink Queen', vóór 1958 in Nederland gekweekt
  • Berberis thunbergii 'Red Chief', in 1942 in Nederland gekweekt
  • Berberis thunbergii 'Red Pillar'
  • Berberis thunbergii 'Rose Glow', in 1957 in Nederland gekweekt
  • Berberis thunbergii 'Silver Beauty'
  • Berberis thunbergii var. maximowiczii

De hybride van Berberis thunbergii met Berberis vulgaris wordt als Berberis ×ottawensis en de hybride van Berberis thunbergii met Berberis julianae als Berberis ×mentorensis aangeduid.

Namen in andere talen

  • Duits: Thunberg-Berberitze
  • Engels: Japanese Barberry, Thunberg's Barberry
  • Frans: Épine-vinette de Thunberg, Épine-vinette du Japon
 src=
Cultivar 'Aurea'
 src=
Cultivar 'Atropurpurea'

Externe link

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Japanse berberis: Brief Summary ( néerlandais ; flamand )

fourni par wikipedia NL

De Japanse berberis (Berberis thunbergii ) is een bladverliezende, giftige struik die behoort tot de berberisfamilie (Berberidaceae). De struik komt van nature voor in Japan en China en werd in de 18e eeuw door de Zweed Carl Peter Thunberg naar Europa gebracht. De Japanse berberis is in Nederland ingeburgerd, maar wordt ook veel aangeplant.

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Haustberberis ( norvégien )

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Haustberberis (Berberis thunbergii) er ei plante i berberisslekta som inngår i berberisfamilien. Blada er raud-grøne, eventuelt skiftevis raude med grønfarge nedst mot bladfestet ved kvisten. Det latinske namnet er laga etter den svenske botanikaren Carl Peter Thunberg som var lærling av Carl von Linné.

Ho er 70-100 cm høg, og er ei vanleg hekkeplante i norske hagar. Varianten blodberberis (Berberis thunbergii 'Atropurpurea' ) er den mørkeraude varianten av haustberberis.

Haustberberis har avlangt runde eller omvendt eggeforma blad som smalnar ned i kileform mot den korte bladstengelen. Planta har skarpe, 4-8 mm cm lange piggar som stikk ut i hjørnet ved bladfestet.

Blomstrane er gule eller gul-raude med blomstring ca. 25. mai i Oslo-området (fire veker etter lauvsprett), medan bæra er heilt raude og 5-8 mm lange. Planta er nøysam og hardfør, ho er opphavleg ei fjellplante frå Japan og toler godt skjerast or.

Haustberberis vart innført frå Japan til Russland av botanikaren Carl Johan Maksimovitsj frå 1864 og vart straks populær i hagar og parkar i Europa.

Kultivarar

Nokre kultivarar:

  • Berberis thunbergii B. th. 'Atropurpurea' (Blodberberis), sidan 1913 i kultur
  • Berberis thunbergii 'Atropurpurea Nana', dvergbusk ca. 50 cm høg, utvikla i 1942 i Nederland
  • Berberis thunbergii 'Aurea', sidan 1950 i kultur
  • Berberis thunbergii 'Bagatelle' (kryssing mellom B. th. 'Kobold' og B. th. 'Atropurpurea Nana'), sidan 1971 i kultur
  • Berberis thunbergii 'Carpetbagger' dvergbusk ca. 30 cm høg
  • Berberis thunbergii 'Crimson Pygmy' synonym til B. th. 'Atropurpurea Nana'
  • Berberis thunbergii 'Dart's Red Lady'
  • Berberis thunbergii 'Erecta'
  • Berberis thunbergii 'Little Favorite' synonym til B. th. 'Atropurpurea Nana'
  • Berberis thunbergii 'Golden Ring', sidan 1950 i kultur
  • Berberis thunbergii 'Green Carpet' dvergbusk ca. 25 cm høg
  • Berberis thunbergii 'Green Ornament' blir ca. 150 cm høg med mørkegrøne blad som blir gule eller brungule om hausten
  • Berberis thunbergii 'Harlequin', sidan 1969 i kultur
  • Berberis thunbergii 'Helmond Pillar'
  • Berberis thunbergii 'Keller's Surprise'
  • Berberis thunbergii 'Kelleriis', utvikla i Danmark
  • Berberis thunbergii 'Kobold' , sidan 1950 dyrka i Nederland
  • Berberis thunbergii 'Pink Queen', dyrka før 1958 i Nederland
  • Berberis thunbergii 'Red Chief', utvikla i 1942 i Nederland
  • Berberis thunbergii 'Red Pillar'
  • Berberis thunbergii 'Rose Glow', utvikla i 1957 i Nederland
  • Berberis thunbergii 'Silver Beauty'

Variantar

  • Berberis thunbergii var. maximowiczii

Hybridar

  • Hybriden mellom Berberis thunbergii og Berberis vulgaris blir kalla Berberis ×ottawensis
  • Hybriden mellom Berberis thunbergii og Berberis julianae blir kalla Berberis ×mentorensis.

Kjelder

Bakgrunnsstoff

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Haustberberis: Brief Summary ( norvégien )

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Haustberberis (Berberis thunbergii) er ei plante i berberisslekta som inngår i berberisfamilien. Blada er raud-grøne, eventuelt skiftevis raude med grønfarge nedst mot bladfestet ved kvisten. Det latinske namnet er laga etter den svenske botanikaren Carl Peter Thunberg som var lærling av Carl von Linné.

Ho er 70-100 cm høg, og er ei vanleg hekkeplante i norske hagar. Varianten blodberberis (Berberis thunbergii 'Atropurpurea' ) er den mørkeraude varianten av haustberberis.

Haustberberis har avlangt runde eller omvendt eggeforma blad som smalnar ned i kileform mot den korte bladstengelen. Planta har skarpe, 4-8 mm cm lange piggar som stikk ut i hjørnet ved bladfestet.

Blomstrane er gule eller gul-raude med blomstring ca. 25. mai i Oslo-området (fire veker etter lauvsprett), medan bæra er heilt raude og 5-8 mm lange. Planta er nøysam og hardfør, ho er opphavleg ei fjellplante frå Japan og toler godt skjerast or.

Haustberberis vart innført frå Japan til Russland av botanikaren Carl Johan Maksimovitsj frå 1864 og vart straks populær i hagar og parkar i Europa.

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Høstberberis ( norvégien )

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Høstberberis (Berberis thunbergii) er en plante i slekten berberis, som inngår i berberisfamilien. Bladene er rød-grønne, eventuelt skiftevis røde med grønn farge nederst mot bladfestet ved kvisten.

Den er 70-100 cm høy og en vanlig hekkplante i norske hager. Kultivaren blodberberis, 'Atropurpurea', har mørkerøde blad.

Høstberberis har avlangt runde eller omvendt eggformede blader som smalner ned i kileform mot den korte bladstilken. Planten har skarpe, 4-8 mm cm lange pigger som stikker ut i hjørnet ved bladfestet.

Blomstene er gule eller gul-røde med blomstring ca. 25. mai i osloområdet (fire uker etter løvsprett), mens bærene er helt røde og 5-8 mm lange. Planten er nøysom og hardfør, den er opprinnelig en fjellplante fra Japan og tåler beskjæring godt.

Høstberberis og blodberberis ble innført fra Japan til Russland av botanikeren Carl Johan Maksimovitsj fra 1864, og ble straks meget populær i hager og parker i Europa.

Høstberberis står på Artsdatabankens svarteliste over fremmede arter i Norge, under kategorien svært høy risiko. Arten har de siste 40 årene hatt en gjennomsnittlig økning i antall dokumenterte forekomster på ca. 500 prosent for hvert tiår. Den er registrert nord til Trøndelag og er svært vanlig i skog nær boligområder. Høstberberis spres fra hager og grøntanlegg der den brukes i stort omfang. Arten er skyggetålende og kan danne tette kratt.[1]

Referanser

  1. ^ «Berberis thunbergii høstberberis». FremmedArt2012. Artsdatabanken. Besøkt 7. august 2017.

Litteratur

Eksterne lenker

 src=
Høstberberis i blomst
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Høstberberis: Brief Summary ( norvégien )

fourni par wikipedia NO

Høstberberis (Berberis thunbergii) er en plante i slekten berberis, som inngår i berberisfamilien. Bladene er rød-grønne, eventuelt skiftevis røde med grønn farge nederst mot bladfestet ved kvisten.

Den er 70-100 cm høy og en vanlig hekkplante i norske hager. Kultivaren blodberberis, 'Atropurpurea', har mørkerøde blad.

Høstberberis har avlangt runde eller omvendt eggformede blader som smalner ned i kileform mot den korte bladstilken. Planten har skarpe, 4-8 mm cm lange pigger som stikker ut i hjørnet ved bladfestet.

Blomstene er gule eller gul-røde med blomstring ca. 25. mai i osloområdet (fire uker etter løvsprett), mens bærene er helt røde og 5-8 mm lange. Planten er nøysom og hardfør, den er opprinnelig en fjellplante fra Japan og tåler beskjæring godt.

Høstberberis og blodberberis ble innført fra Japan til Russland av botanikeren Carl Johan Maksimovitsj fra 1864, og ble straks meget populær i hager og parker i Europa.

Høstberberis står på Artsdatabankens svarteliste over fremmede arter i Norge, under kategorien svært høy risiko. Arten har de siste 40 årene hatt en gjennomsnittlig økning i antall dokumenterte forekomster på ca. 500 prosent for hvert tiår. Den er registrert nord til Trøndelag og er svært vanlig i skog nær boligområder. Høstberberis spres fra hager og grøntanlegg der den brukes i stort omfang. Arten er skyggetålende og kan danne tette kratt.

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Berberys Thunberga ( polonais )

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 src=
Odmiana 'Atropurpurea'
 src=
Berberys Thunberga 'Aurea'
 src=
Odmiana 'Atropurpurea'
 src=
Owoce

Berberys Thunberga (Berberis thunbergii DC.) – gatunek krzewu z rodziny berberysowatych (Berberidacea Juss.). Pochodzi z Japonii. W Polsce nie występuje w środowisku naturalnym, jest uprawiany jako roślina ozdobna w wielu odmianach.

Morfologia

Pokrój
Silnie rozgałęziający się, ciernisty i gęsty krzew, osiągający wysokość do 1,5 m. Ma pokrój różny u różnych odmian.
Liście
Liście całobrzegie, owalne, opadające na zimę. Zależnie od odmiany mogą mieć kolor zielony, żółty, czerwony (istnieje wiele odmian o całej gamie pośrednich kolorów). Jesienią przed opadnięciem liście przebarwiają się na różne odcienie koloru żółtego, pomarańczowego, czerwonego.
Kwiaty
Drobne, żółte kwiaty w gronach, przyjemnie pachnące. Pręciki i słupki dojrzewają równocześnie. Kwiaty nie są głównym elementem ozdobnym berberysu, jednak w okresie kwitnienia roślina jest jeszcze ładniejsza. Jest owadopylny, ale może być też samopylny. Okres kwitnienia V – VI.
Owoc
Podłużna, jagoda o różnych odcieniach czerwonego koloru (zależnie od odmiany). Owoce mają duże walory dekoracyjne, tym bardziej, ze utrzymują się na roślinie przez całą zimę. W zimie są chętnie zjadane przez ptaki.

Zastosowanie

Roślina ozdobna
Walorami ozdobnymi berberysu Thunberga są barwne liście i owoce oraz gęsty pokrój krzewu. Bardzo dobrze wygląda w zestawieniu z drzewami i drzewami iglastymi oraz pojedynczo w ogródkach skalnych. Sadzony jest jako roślina ozdobna w ogródkach i parkach. Nadaje się także na żywopłoty, które są nie tylko gęste i efektowne, ale i bardzo trudne do sforsowania z powodu cierni.

Uprawa

Berberys Thunberga jest bardzo odporny na mróz i nie ma specjalnych wymagań co do gleby – rośnie prawie w każdych warunkach. Jest mało wrażliwy na zasolenie gleby, dobrze znosi zanieczyszczenia powietrza. Bardzo dobrze znosi cięcie. W celu zagęszczenia krzewu konieczne jest coroczne przycinanie, co kilka lat krzew należy odmłodzić całkowicie usuwając stare pędy. W celu uzyskania obfitego owocowania, konieczne jest sadzenie koło siebie co najmniej kilku krzewów. Gatunek jest mało podatny na choroby i szkodniki.

Zmienność

Wybrane kultywary:

  • 'Atropurpurea' – jedna z najczęściej sadzonych odmian. Pokrój kopulasty, liście purpuroczerwone. W miejscach cienistych liście są mniej ozdobne – bardziej zielone, w miejscach nasłonecznionych są intensywniej wybarwione. Rośnie wolniej od innych odmian[2].
  • 'Atropurpurea Nana' – odmiana o liściach purpurowo-brązowych, jesienią przebarwiających się na kolor szkarłatny. Rośnie wolno i dorasta do ok. 60 cm, przy szerokości ok. 1 m.
  • 'Aurea' – jedna z najładniejszych odmian berberysu. Ma intensywnie żółte liście, świetnie się prezentuje niemal na każdym tle. Niestety ma duże wymagania co do światła – musi rosnąć w miejscu nasłonecznionym, jednak nieco przesłoniętym, gdyż w pełnym słońcu jej liście ulegają oparzeniu. Osiąga wysokość do 1 m, jednak po długim czasie, gdyż rośnie bardzo wolno.
  • 'Bagatelle' – mały krzew (do 40 cm wysokości i 60 cm szerokości), o brązowoczerwonych liściach, które jesienią przebarwiają się na kolor szkarłatny. Roślina o zwartym płaskokulistym pokroju, złożonym z ułożonych gęsto purpurobrązowych pędów. Młode, rozwijające się wiosną liście i przyrosty są koloru różowoczerwonego, jesienią liście przebarwiają się na czerwono i pomarańczowoczerwono.
  • 'Bonanza Gold' – odmiana o złotożółtych liściach, podobna do „Aurea”, ale bardziej odporna na oparzenia słoneczne liści.
  • 'Coronita' – ma wzniesiony pokrój i liście czerwone z kontrastującym zielonożółtym obrzeżeniem.
  • 'Erecta' – odmiana o jasnozielonych liściach, przebarwiających się jesienią na purpurowo. Osiąga wysokość 1,5 m.
  • 'Golden Ring' – ma ciekawe, purpurowoczerwone liście z żółtym obrzeżem.
  • 'Green Carpet' – pędy długie i zwisające, korona wyrasta do wysokości 1 m, przy szerokości 1,5 m. Liście jasnozielone, przebarwiające się jesienią na kolor szkarłatny.
  • 'Harlequin' – liście czerwone, nakrapiane różnokolorowymi plamkami. Wysokość krzewu do 2 m.
  • 'Hellmond Pillar' – ma wzniesione pędy. Młodsze liście są ciemnoczerwone, starsze zielone.
  • 'Kelleriis' – liście zielone z intensywnie białymi plamami. Wysokość krzewu do 2 m.
  • 'Kobold' – liście ciemnozielone, lśniące, jesienią przebarwiają się na kolor szkarłatny. Niski krzew (do 0,5 m).
  • 'Red Chief' – pędy przewieszające się, osiąga 2 m wysokości i 2 m szerokości. Liście purpurowobrązowe, jesienią stają się jaskrawoczerwone.
  • 'Red Pillar' – krzew o wąskim pokroju i wyprostowanych pędach, wysokości do 1,5 m. Liście czerwone górą, na dolnej stronie zielone.
  • 'Rose Glow' – rozłożysty krzew o wysokości do 2 m. Liście czerwone, nakrapiane licznymi białymi i szarymi plamkami.

Przypisy

  1. Stevens P.F.: Angiosperm Phylogeny Website (ang.). 2001–. [dostęp 2009-09-11].
  2. Berberys Thunberga 'Atropurpurea' (pol.). 2013. [dostęp 2013-22-05].

Bibliografia

  1. Maciej Mynett, Magdalena Tomżyńska: Krzewy i drzewa ozdobne. Warszawa: MULTICO Oficyna Wyd., 1999. ISBN 83-7073-188-0.
  2. Lucjan Rutkowski: Klucz do oznaczania roślin naczyniowych Polski niżowej. Warszawa: Wyd. Naukowe PWN, 2006. ISBN 83-01-14342-8.
  3. Katalog roślin II. Warszawa: Agencja Promocji Zieleni, Związek Szkółkarzy Polskich, 2003. ISBN 83-912272-3-5.
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Berberys Thunberga: Brief Summary ( polonais )

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 src= Odmiana 'Atropurpurea'  src= Berberys Thunberga 'Aurea'  src= Odmiana 'Atropurpurea'  src= Owoce

Berberys Thunberga (Berberis thunbergii DC.) – gatunek krzewu z rodziny berberysowatych (Berberidacea Juss.). Pochodzi z Japonii. W Polsce nie występuje w środowisku naturalnym, jest uprawiany jako roślina ozdobna w wielu odmianach.

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Häckberberis ( suédois )

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Häckberberis (Berberis thunbergii) är en växtart i familjen berberisväxter.

Externa länkar

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Häckberberis: Brief Summary ( suédois )

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Häckberberis (Berberis thunbergii) är en växtart i familjen berberisväxter.

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Berberis thunbergii ( vietnamien )

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Berberis thunbergii là một loài thực vật có hoa trong họ Hoàng mộc. Loài này được DC. mô tả khoa học đầu tiên năm 1821.[1]

Hình ảnh

Chú thích

  1. ^ The Plant List (2010). Berberis thunbergii. Truy cập ngày 22 tháng 8 năm 2013.

Liên kết ngoài


Hình tượng sơ khai Bài viết liên quan đến Họ Hoàng mộc này vẫn còn sơ khai. Bạn có thể giúp Wikipedia bằng cách mở rộng nội dung để bài được hoàn chỉnh hơn.
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Berberis thunbergii: Brief Summary ( vietnamien )

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Berberis thunbergii là một loài thực vật có hoa trong họ Hoàng mộc. Loài này được DC. mô tả khoa học đầu tiên năm 1821.

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Барбарис Тунберга ( russe )

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Царство: Растения
Подцарство: Зелёные растения
Отдел: Цветковые
Надпорядок: Ranunculanae Takht. ex Reveal, 1993
Порядок: Лютикоцветные
Семейство: Барбарисовые
Подсемейство: Барбарисовые
Подтриба: Berberidinae
Вид: Барбарис Тунберга
Международное научное название

Berberis thunbergii DC., 1821

Синонимы Представители Wikispecies-logo.svg
Систематика
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ITIS 18835NCBI 121720EOL 596554GRIN t:6974IPNI 107136-1TPL kew-2674513

Барбарис Тунберга (лат. Berberis thunbergii) — кустарник, вид рода Барбарис (Berberis) семейства Барбарисовые (Berberidaceae).

В природе ареал вида охватывает Дальний Восток. Натурализовалось в Европе и Северной Америке. Культивируется повсеместно.

Ботаническое описание

Кустарник высотой до 2,5 м, с дугообразно отклоненными ребристыми ветвями. Побеги ярко-красные или красно-оранжевые, позднее бурые и тёмно-коричневые.

Почки яйцевидные, островатые, длиной 0,5 мм, красноватые. Листья ромбически-овальные, округлые или лопатчатые, на верхушке закруглённые или чуть заострённые, с клиновидным основанием, вместе с черешком длиной до 2 см, шириной 1 см, сверху ярко-зелёные, снизу сизые, осенью ярко-красные, цельнокрайние. Колючки простые, топкие и упругие, длиной около 1 см.

Цветки в немногоцветковых (2—5) пучках, коротких кистях или одиночные, жёлтые, красноватые снаружи, диаметром до 1 см.

Ягоды кораллово-красные, блестящие, эллипсоидальные, длиной до 1 см. В 1 кг 5,9 тыс. плодов, или 88,5 тыс. семян; вес 1 тыс. семян 9—17,6 г.

Цветёт в мае. Плодоносит в сентябре — октябре.

Berb 102319.JPG
Berberis thunbergii 1 beentree.jpg
2006-10-22Berberis03-02.jpg
Beth 001 php.jpg
Слева направо:
Листья. Цветок (увеличено). Ягоды. Семена.

Значение и применение

Интродуцирован в 1864 году. В России известен практически на всей территории.

Декоративное растение, широко применяемый в садах и парках, в живых изгородях, бордюрных, групповых и одиночных посадках; особенно ценен осенью благодаря яркой фиолетово-карминовой окраске листьев и долго держащимся кораллово-красным плодам.

Вполне пригоден для закрепления берегов оросительных систем.

Классификация

Таксономия

Вид Барбарис Тунберга входит в род Барбарис (Berberis) трибы Барбарисовые (Berberideae) подсемейства Барбарисовые (Berberidoideae) семейства Барбарисовые (Berberidaceae) порядка Лютикоцветные (Ranunculales).


ещё 1 подсемейство
(согласно Системе APG II) ещё 11—14 родов семейство Барбарисовые триба Барбарисовые вид
Барбарис Тунберга порядок Лютикоцветные подсемейство Барбарисовые род Барбарис ещё 9 семейств
(согласно Системе APG II) ещё 1 триба
(согласно Системе APG II) ещё от 450 до 600 видов

Представители

В рамках вида существует несколько разновидностей:[2]

  • Berberis thunbergii var. atropurpurea Chenault — в природе не встречается.
  • Berberis thunbergii var. maximowiczii (Regel) Regel — в природе не встречается.
  • Berberis thunbergii var. minor Rehder — в природе не встречается.

Некоторые сорта

  • 'Atropurpurea Nana' (Синонимы: 'Crimson Pygmy', 'Kleiner Favorit', 'Little Favourite'[3]). Невысокий кустарник высотой до 61 см, ширина до 91. На побегах трехраздельные шипы. Листья яйцевидные, 1 - 2 см длиной, пурпурно-красные, осенью красные. Цветёт в апреле-мае мелкими жёлтыми цветками. Зона зимостойкости (USDA-зона): 4—8. Используется для создания бордюров и в рокариях[4].
  • 'Dart's Red Lady' (syn. f. atropurpurea 'Dart's Red Lady'). Невысокий раскидистый кустарник высотой до 80 см, шаровидной формы. Годовой прирост около 10 см. Листья мелкие, тёмно-пурпурные, слегка блестящие, удерживающиеся на кустарнике до поздней осени. Предпочитает лёгкую рыхлую почву, богатую питательными элементами. Расположение: солнечные или полутенистые участки; стойкий к низким температурам. Используется для цветочных садовых композиций, низких живых изгородей, рокариев и высаживания на откосах, особенно рекомендуется для композиций в контейнерах[5][6].
  • 'Erecta'. Кустарник отличающийся в молодости узкой кроной и прямостоячими побегами. Достигает высоты 1,5 м. Годовой прирост около 15 см. Листья светло–зелёные, относительно крупные, кругловатые, на коротких черешках, осенью пурпурные. Цветки жёлтые. Используется для живых изгородей. Расположение: солнечные или полутенистые участки[5][7].

Примечания

  1. Об условности указания класса двудольных в качестве вышестоящего таксона для описываемой в данной статье группы растений см. раздел «Системы APG» статьи «Двудольные».
  2. По данным сайта GRIN (см. карточку растения).
  3. Виды барбарисов на сайте Энциклопедия декоративных садовых растений
  4. Berberis thunbergii f. atropurpurea 'Atropurpurea Nana' на сайте Missouri Botanical Garden
  5. 1 2 Барбарис на сайте Российский государственный аграрный университет - МСХА имени К. А. Тимирязева. Лаборатория плодоводства Мичуринский сад
  6. Berberis thunbergii 'Dart’s Red Lady'
  7. http://www.kurowski.pl/ru/katalog.php?action=13&roslina=372&nazwy=1 Berberis thunbergii 'Erecta'
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Барбарис Тунберга: Brief Summary ( russe )

fourni par wikipedia русскую Википедию

Барбарис Тунберга (лат. Berberis thunbergii) — кустарник, вид рода Барбарис (Berberis) семейства Барбарисовые (Berberidaceae).

В природе ареал вида охватывает Дальний Восток. Натурализовалось в Европе и Северной Америке. Культивируется повсеместно.

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日本小檗 ( chinois )

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二名法 Berberis thunbergii
DC.

日本小檗学名Berberis thunbergii),又名红叶小檗紫叶小檗,为小檗科小檗属的植物。分布于日本以及中国大陆大部分省区等地,目前广泛采用为园林植物。

参考文献

  • 昆明植物研究所. 日本小檗. 《中国高等植物数据库全库》. 中国科学院微生物研究所. [2009-02-22]. (原始内容存档于2016-03-05).
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日本小檗: Brief Summary ( chinois )

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日本小檗(学名:Berberis thunbergii),又名红叶小檗、紫叶小檗,为小檗科小檗属的植物。分布于日本以及中国大陆大部分省区等地,目前广泛采用为园林植物。

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メギ ( japonais )

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メギ 実を付けたメギ(鈴鹿山脈のイブネにて、2011年10月2日撮影)
実を付けたメギ Berberis thunbergii
分類 : 植物界 Plantae : 被子植物門 Magnoliophyta : 双子葉植物綱 Magnoliopsida : キンポウゲ目 Ranunculales : メギ科 Berberidaceae : メギ属 Berberis : メギ B. thunbergii 学名 Berberis thunbergii DC.[1] 和名 メギ

メギ(目木、学名Berberis thunbergii DC.[1])は、メギ科メギ属分類される落葉低木の1[2]。別名が、「コトリトマラズ」[2][3]と「ヨロイドオシ」[4]和名を煎じて洗眼に利用されていたことに由来する[2][3][4]

特徴[編集]

樹高2 mほどまで成長し、よく分かれする[2]。樹形は株立ち[3]樹皮は灰白色-白色で、縦に不規則な割れ目がある[3]。枝は褐色で[2]、顕著な縦の溝と稜がある[3]。枝の節や葉の付け根には長さ5-12 mmがあり[2]徒長枝の葉の付け根には3本に分かれた棘がある[5]。葉は単葉[3]、新しく伸びた長枝には互生し、2年枝の途中から出た短枝には束生する[2][5]。葉身は長さ1-5 cm、幅0.5-1.5 cmの卵倒形-狭卵倒形で、先端は鈍頭または円頭、基部は次第に細くなって短い葉柄になり[2][3]、最大幅は先寄り[5]。葉の縁は全縁で、表面は薄い紙質で無毛、裏面は色々を帯び無毛[3]、4-5月に若葉を出す[2]。4-5月に単枝から小形の総状花序または散形花序を出し、直径約6 mmの淡黄色-緑黄色の花を2-4個下向きに付ける[2]花弁の長さは約2 mmで6個[2]萼片は6個あり、長楕円形で花弁より大きく、淡緑色にわずかに紅色を帯びる[2]雄蕊は6個で花柱は太く[3]、触ると葯が急に内側に曲がる[2][4]雌蕊は1個[2]果実液果で、長さ7-10 mmの楕円形[2]、10-11月に鮮やかな赤色に熟す[3]アルカロイドの1種のベルベリンを含む[6][注釈 1]

  •  src=

  •  src=

    赤色に熟した果実

  •  src=

    枝に顕著な縦の溝と稜があり、節にがある

分布・生育環境[編集]

 src=
日当たりのよい藤原岳三重県)の山頂部の原野に生育するメギ

日本では、本州東北地方南部[注釈 2][7]から、四国九州にかけての温帯[5]地域に分布する[2][3]

山地から丘陵にかけての林縁[3]原野に生育し、蛇紋岩の地でもよく生育する[2]生垣としての庭木や公園樹として利用されている[3][5]

種の保全状況評価[編集]

秋田県では分布域が限定され、個体数が希少であることからレッドリストの絶滅危惧種IB類(EN)の指定を受けていて、森林伐採や道路工事による個体数の減少が危惧されている[7]新潟県[8]鹿児島県[9]では、絶滅危惧II類(VU)の指定を受けている。大阪府では準絶滅危惧の指定を受けている[10]。国レベルではレッドリストの指定を受けていない[7]

品種[編集]

葉が赤紫色の栽培品種(アカバメギ)があり、黄金葉や歩斑入りの栽培品種もある[5]

近縁種[編集]

オオバメギ
大葉目木、学名:Berberis tschonoskyana Regel、メギよりも葉が大きく、棘が少なく、枝に稜がない[5]
 src=
赤い実をつけたヘビノボラズ
ヘビノボラズ
蛇登らず、学名:Berberis sieboldii Miq.、葉に鋸葉があり、湿地周辺のやせ地に生育する[11]

脚注[編集]

[ヘルプ]

注釈[編集]

  1. ^ ベルベリンの物質名は、名(メギ属 Berberis)に由来する。
  2. ^ 秋田県にはメギの限定的な分布域がある。

出典[編集]

  1. ^ a b 米倉浩司・梶田忠 (2003-). “メギ”. BG Plants 和名−学名インデックス(YList). ^ a b c d e f g h i j k l m n o p q 林 (2011)、186頁
  2. ^ a b c d e f g h i j k l m 菱山 (2011)、107頁
  3. ^ a b c 牧野 (1982)、127頁
  4. ^ a b c d e f g 林 (2014)、138頁
  5. ^ 川島 (1969)、1386頁
  6. ^ a b c 「秋田県の絶滅のおそれのある野生生物 秋田県版レッドデータブック2014(維管束植物) (PDF)”. 秋田県. pp. 95. オリジナル[リンク切れ]よりアーカイブ。^ 新潟県第2次レッドリスト2014(維管束植物)カテゴリー順・分類群 (PDF)”. 新潟県. pp. 10. ^ 植物絶滅危惧Ⅱ類(436種)(平成27年度改訂)”. 鹿児島県 (2016年12月13日閲覧。
  7. ^ 大阪府における保護上重要な野生生物 レッドリスト2014(維管束植物) (PDF)”. 大阪府. pp. 6. ^ 林 (2014)、139頁

参考文献[編集]

関連項目[編集]

 src= ウィキメディア・コモンズには、メギに関連するメディアおよびカテゴリがあります。  src= ウィキスピーシーズにメギに関する情報があります。

外部リンク[編集]

執筆の途中です この項目は、植物に関連した書きかけの項目です。この項目を加筆・訂正などしてくださる協力者を求めていますプロジェクト:植物Portal:植物)。
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メギ: Brief Summary ( japonais )

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メギ(目木、学名:Berberis thunbergii DC.)は、メギ科メギ属分類される落葉低木の1。別名が、「コトリトマラズ」と「ヨロイドオシ」。和名を煎じて洗眼に利用されていたことに由来する。

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ウィキペディアの著者と編集者
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wikipedia 日本語