dcsimg

Associations

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Foodplant / pathogen
Aphelenchoides ritzemabosi infects and damages distorted leaf (young) of Ribes nigrum
Remarks: season: winter - early spring

Foodplant / false gall
Aphis grossulariae causes swelling of curled leaf of Ribes nigrum

Foodplant / sap sucker
Aphis schneideri sucks sap of live, stunted, distorted leaf (terminal) of Ribes nigrum

In Great Britain and/or Ireland:
Foodplant / pathogen
Armillaria mellea s.l. infects and damages Ribes nigrum

Foodplant / pathogen
greatly reduced numbers flower of Blackcurrant Reversion disease infects and damages Ribes nigrum
Remarks: season: flowering period

Foodplant / parasite
hypophyllous telium of Cronartium ribicola parasitises leaf of Ribes nigrum
Remarks: season: 7-10
Other: major host/prey

Foodplant / sap sucker
hypophyllous Cryptomyzus galeopsidis sucks sap of live leaf of Ribes nigrum
Remarks: season: spring-summer, early autumn-

Foodplant / gall
hypophyllous Cryptomyzus ribis causes gall of yellow blister-galled leaf of Ribes nigrum
Remarks: season: spring-summer, early autumn-

Foodplant / feeds on
larva of Dasineura tetensi feeds on live, distorted, remaining folded and twisted leaf (young, terminal) of Ribes nigrum
Remarks: season: 4-8

Foodplant / saprobe
Phomopsis coelomycetous anamorph of Diaporthe strumella is saprobic on attached, dead branch of Ribes nigrum

Foodplant / saprobe
stromatic, immersed pseudothecium of Dothiora ribesia is saprobic on dead twig of Ribes nigrum
Other: minor host/prey

Foodplant / spot causer
acervulus of Gloeosporidiella coelomycetous anamorph of Drepanopeziza ribis causes spots on live, often yellowing fruit (unripe) of Ribes nigrum
Remarks: season: (5-)7-9
Other: unusual host/prey

Foodplant / gall
Eriophyes ribis causes gall of live, enlarged bud of Ribes nigrum
Other: major host/prey

Foodplant / saprobe
round to ovate, plurilocular with many erect, almost cylindrical loculi stroma of Fusicoccum coelomycetous anamorph of Fusicoccum viridulum is saprobic on dead branch of Ribes nigrum
Remarks: season: 3
Other: uncertain

Foodplant / saprobe
erumpent, stalked, solid, brown stroma (pycnidial) of Fuckelia coelomycetous anamorph of Godronia ribis is saprobic on dead branch of Ribes nigrum

Foodplant / saprobe
erumpent pycnidium of Topospora coelomycetous anamorph of Godronia uberiformis is saprobic on dead twig of Ribes nigrum

Foodplant / sap sucker
Hyperomyzus lactucae sucks sap of live, distorted, yellowed leaf (young) of Ribes nigrum
Remarks: season: early sporing
Other: major host/prey

Fungus / parasite
mainly epiphyllous conidial anamorph of Microsphaera grossulariae parasitises live leaf of Ribes nigrum

Foodplant / spot causer
mainly hypophyllous, immersed, very small, blackish brown pycnidium of Septoria coelomycetous anamorph of Mycosphaerella ribis causes spots on fading leaf of Ribes nigrum
Remarks: season: 7-10

Foodplant / open feeder
larva of Nematus olfaciens grazes on leaf of Ribes nigrum

Foodplant / parasite
effuse colony of Plasmopara ribicola parasitises yellowed leaf of Ribes nigrum

Fungus / parasite
conidial anamorph of Podosphaera mors-uvae parasitises live leaf of Ribes nigrum
Other: minor host/prey

Foodplant / parasite
pycnium of Puccinia caricina parasitises leaf of Ribes nigrum

Foodplant / parasite
aecium of Puccinia caricina var. pringsheimiana parasitises live, often swollen shoot of Ribes nigrum
Remarks: season: spring-early summer
Other: minor host/prey

Foodplant / parasite
aecium of Puccinia caricina var. ribis-nigri-lasiocarpae parasitises live Ribes nigrum

Foodplant / sap sucker
Schizoneura ulmi sucks sap of live, softly woolly root of Ribes nigrum
Remarks: season: summer

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Comments

provided by eFloras
Black currant is edible and is used for making desserts, jams and cakes.
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
bibliographic citation
Flora of Pakistan Vol. 0 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of Pakistan @ eFloras.org
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S. I. Ali & M. Qaiser
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Description

provided by eFloras
Erect aromatic shrub, up to 2 m tall. Young branches pubescent and resinous glandular. Leaves 2.5-10.5 cm long, 2.5-12 cm broad, base deeply cordate, almost glabrous, 2-5-lobed, coarsely inciso-crenate, basal nerves 3-5, petioles l.5-7 cm long, pubescent and resinous glandular. Racemes few flowered, pubescent, with a tuft of leaves at the base. Bracts longer than the petals, 2-3 mm long. Flowers bisexual, greenish yellow, 10-11 mm long, calyx tube 2 mm long, lobes 2 mm long, oblong, obtuse. Petals spathulate, 1 mm long. Stamens 1.5 mm long. Style divided nearly to the middle. Berries black, strongly aromatic, 1 cm in diameter.
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
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Flora of Pakistan Vol. 0 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of Pakistan @ eFloras.org
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S. I. Ali & M. Qaiser
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Description

provided by eFloras
Shrubs 1-2 m tall. Branchlets pubescent when young, glabrescent. Buds brown or yellowish brown, oblong-ovoid to ellipsoid, (3-)4-7 mm, pubescent, apex acute. Petiole 1-4 cm, pubescent, rarely sparsely glandular, sometimes plumose hairy near base; leaf blade suborbicular, 4-9 × 4.5-11 cm, abaxially pubescent and yellow glandular, adaxially puberulent when young, glabrescent, base cordate; lobes 3-5, broadly triangular, margin irregularly coarsely sharply serrate, apex acute; terminal lobe somewhat longer than lateral ones. Racemes arching or nodding, 3-5(-8) cm, 4-12-flowered; rachis and pedicels pubescent, often sparsely yellow glandular; bracts lanceolate or ovate, 1-2 mm, pubescent. Fowers bisexual, 5-7 mm in diam.; pedicel 2-5 mm. Calyx yellowish green to pinkish, pubescent and yellow glandular; tube subcampanulate, 1.5-2.5 mm; lobes spreading or reflexed, ligulate, 3-4 mm. Petals ovate to ovate-elliptic, 2-3 mm. Stamens subequaling petals; anthers ovoid, apex with nectary. Ovary sparsely pubescent and glandular. Style not equaling stamens, 2-lobed, rarely subentire. Fruit black, subglobose, 0.8-1(-1.4) cm, sparsely glandular. Fl. May-Jun, fr. Jul-Aug.
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bibliographic citation
Flora of China Vol. 8: 438 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of China @ eFloras.org
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Wu Zhengyi, Peter H. Raven & Hong Deyuan
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Distribution

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Distribution: Himalayas from 2300-4300 m. alt. s.m. N. Europe and N. Asia Cultivated and widely naturalized.
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
bibliographic citation
Flora of Pakistan Vol. 0 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of Pakistan @ eFloras.org
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S. I. Ali & M. Qaiser
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Flower/Fruit

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Fl. Per.: June July.
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
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Flora of Pakistan Vol. 0 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of Pakistan @ eFloras.org
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S. I. Ali & M. Qaiser
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Habitat & Distribution

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Naturalized in coniferous or mixed forests on slopes, moist valleys, ditch banks. Heilongjiang, NE Nei Mongol, N Xinjiang [native to Europe].
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Missouri Botanical Garden, 4344 Shaw Boulevard, St. Louis, MO, 63110 USA
bibliographic citation
Flora of China Vol. 8: 438 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of China @ eFloras.org
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Wu Zhengyi, Peter H. Raven & Hong Deyuan
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Synonym

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Botrycarpum nigrum (Linnaeus) A. Richard; Grossularia nigra (Linnaeus) Ruprecht; Ribes cyathiforme Pojarkova; R. pauciflorum Turczaninow ex Ledebour.
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bibliographic citation
Flora of China Vol. 8: 438 in eFloras.org, Missouri Botanical Garden. Accessed Nov 12, 2008.
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Flora of China @ eFloras.org
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Wu Zhengyi, Peter H. Raven & Hong Deyuan
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Brief Summary

provided by EOL authors

Ribes nigrum, black currant or European black currant, is a deciduous low-growing shrub in the Grossulariaceae (currant and gooseberry genus, although in many classifications formerly included in Saxifragaceae), native to northern Europe and northern Asia, which is widely cultivated for its fruit both commercially and in home gardens. Cultivated varieties of black currant that have been developed over the past several centuries are hybrids of several Eurasian species that were later crossed with North American species including R. bracteosum (California or stink black currant, which is generally considered to have a disagreeable flavor) and R. petiolare (western black currant). R. americanum, also known as black currant, is a wild species native to North America. Blackcurrants should not be confused with “Zante currants,” a widely sold dried fruit, which are actually from a seedless cultivar of the grape species, Vitis vinifera. Ribes nigrum is a many-branched shrub that generally grows to 1 to 2 m (3 to 6.5 ft) in height, with pubescent (hairy) to smooth stems, lacking the spines or prickles that are common on many Ribes species. The leaves are alternate and simple, with 3 to 5 coarsely toothed lobes; the terminal lobe is longer than the side lobes. The small bisexual flowers, greenish yellow to pinkish, are borne in long arching racemes (clusters). The flowers are somewhat campanulate, with 5 petals at the end. The smooth-skinned, globe-shaped fruit, which ripens to dark purplish black, is a juicy berry (a soft fleshy fruit with several to many soft seeds embedded in the pulp), with the remains of the calyx (flowering parts) persisting at the end. The sweet, somewhat tart and acidic fruits, which are very high in vitamin C, are rarely sold fresh, but are generally prepared into jams, jellies, and juices, and used in a wide variety of baked goods and desserts, or served as an accompaniment to meat dishes. They are most typical in European cuisine. Blackcurrants are used to make the popular liqueurcrème de cassis. Blackcurrants are often included in natural supplements promoted for their immune-boosting properties during cold and flu season. The seeds contain alpha- and gamma-linoleic acids, which recent research has found can offer moderate immune system enhancements. The U.N. Food and Agriculture Organization (FAO) estimates that 2010 commercial production of all species of currants (both black and red) was 640,968 metric tons harvested from 119,529 hectares in the Northern Hemisphere. The Russian Federation was the leading producer, alone responsible for 51% of the crop, with Poland contributing another 30%. Other countries that produced more than 1.5% of the total were Ukraine, Austria, United Kingdom, Germany, and Denmark. Ribes nigrum has naturalized in parts of North America and China after cultivation, although it is not generally considered an aggressive invader. Planting of this and other Ribes species was restricted in many northern U.S. states during the 1930s through 1950s, after it was discovered that Ribes species were an alternate host for white pine blister rust, Cronartium ribicola, a fungal disease that affects the commercially important white pine, Pinus strobus. Regulations prohibit planting of currants within a specified distance from pine stands. Although studies conducted in national forests in the 1960s suggested that removing Ribes made no difference in the incidence of the blister rust in pine stands, Ribes remains listed as a noxious weed in Michigan and cultivation is restricted in Maine. (Bailey et al. 1976, Carlson 1978, Flora of China 2003, Michigan Flora Online 2011, USDA PLANTS 2012, van Wyk 2005, Wu et al. 1999.)

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Jacqueline Courteau
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Comprehensive Description

provided by North American Flora
Ribes nigrum L. Sp. PI. 201. 1753
Stems unarmed, 1 m. high or less ; young shoots puberulent. Leaves 3-5-lobed, thin,
sparingly pubescent and resinous-dotted, mostly somewhat broader than long, cordate or
nearly truncate at the base, the lobes broadly ovate, sharply and irregularly serrate, the
pubescent petioles as long as the blades or longer ; racemes pendulous, pubescent, few-
several -flowered, mostly shorter than the leaves; pedicels 4-10 mm. long, longer than the
ovate-oblong acute bracts ; ovary resinous-dotted ; hypanthium campanulate-urceolate ;
sepals oblong, obtuse, green, ascending at knthesisand recurved at about the middle, much
longer than the oblong reddish petals ; berries black, subglobose, 8-10 mm. in diameter.
Type locality : Sweden.
Distribution : Locally escaped from cultivation in the Middle States.
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bibliographic citation
Frederick Vernon Coville, Nathaniel Lord Britton, Henry Allan Gleason, John Kunkel Small, Charles Louis Pollard, Per Axel Rydberg. 1908. GROSSULARIACEAE, PLATANACEAE, CROSSOSOMATACEAE, CONNARACEAE, CALYCANTHACEAE, and ROSACEAE (pars). North American flora. vol 22(3). New York Botanical Garden, New York, NY
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Blackcurrant

provided by wikipedia EN

The blackcurrant (Ribes nigrum), also known as black currant or cassis,[a] is a deciduous shrub in the family Grossulariaceae grown for its edible berries. It is native to temperate parts of central and northern Europe and northern Asia, where it prefers damp fertile soils. It is widely cultivated both commercially and domestically.

It is winter hardy, but cold weather at flowering time during the spring may reduce the size of the crop. Bunches of small, glossy black fruit develop along the stems in the summer and can be harvested by hand or by machine.

The raw fruit is particularly rich in vitamin C and polyphenols. Blackcurrants can be eaten raw but are usually cooked in sweet or savoury dishes. They are used to make jams, preserves, and syrups and are grown commercially for the juice market. The fruit is also used to make alcoholic beverages and dyes.

Description

Ribes nigrum is a medium-sized shrub, growing to 1.5 by 1.5 metres (5 by 5 feet). The leaves are alternate, simple, 3 to 5 centimetres (1+14 to 2 inches) broad and long with five palmate lobes and a serrated margin. All parts of the plant are strongly aromatic. The flowers are produced in racemes known as "strigs" up to 8 cm (3 in) long containing 10–20 flowers, each about 8 millimetres (38 in) in diameter. Each flower has a hairy calyx with yellow glands, the five lobes of which are longer than the inconspicuous petals. There are five stamens surrounding the stigma and style and two fused carpels.[2] The flowers open in succession from the base of the strig and are mostly insect pollinated, but some pollen is distributed by the wind. A pollen grain landing on a stigma will germinate and send a slender pollen tube down the style to the ovule. In warm weather this takes about 48 hours but in cold weather it may take a week, and by that time, the ovule may have passed the stage where it is receptive. If fewer than about 35 ovules are fertilised, the fruit may not be able to develop and will fall prematurely. Frost can damage both unopened and open flowers when the temperature falls below −1.9 °C (28.6 °F). The flowers at the base of the strig are more protected by the foliage and are less likely to be damaged.[3]

In midsummer the strigs of green fruit ripen to edible berries, very dark purple in colour, almost black, with glossy skins and calyxes at the apex (the calyxes being persistent), each containing many seeds. An established bush can produce about 4.5 kilograms (10 pounds) of fruit each year.[4]

Plants from Northern Asia are sometimes distinguished as a separate variety, Ribes nigrum var. sibiricum, of which R. cyathiforme is considered a synonym.[5]

Phytochemicals

Polyphenol phytochemicals present in the fruit, seeds and leaves, are being investigated for their potential biological activities.[6] Major anthocyanins in blackcurrant pomacedelphinidin-3-O-glucoside, delphinidin-3-O-rutinoside, cyanidin-3-O-glucoside, and cyanidin-3-O-rutinoside,[7] which are retained in the juice concentrate – are among other polyphenols.[8][9]

Distribution and habitat

The blackcurrant is native to northern Europe and Asia.[10]

Cultivation

Cultivated specimen

Cultivation in Europe is thought to have started around the last decades of the 17th century.[10]

Site selection and planting

Blackcurrants can grow well on sandy or heavy loams, or forest soils, as long as their nutrient requirements are met. They prefer damp, fertile but not waterlogged ground and are intolerant of drought. Although the bushes are winter hardy, frosts during the flowering period may adversely affect the yield[10] and cold winds may restrict the number of flying insects visiting and pollinating the flowers. A soil pH of about 6 is ideal for blackcurrants and the ground can be limed if the soil is too acidic. Planting is usually done in the autumn or winter to allow the plants to become established before growth starts in the spring,[11] but container-grown stock can be planted at any time of year.[4]

Two-year-old bushes are usually planted but strong one-year-old stock can also be used. Planting certified stock avoids the risk of introducing viruses. On a garden scale the plants can be set at intervals of 1.5 to 1.8 m (5 to 6 ft) or they can be set in rows with planting intervals of 1.2 m (4 ft) and row separations of 2.5 m (8 ft) or more. In the UK, young bushes are generally planted deeper than their initial growing level to encourage new stems to grow from the base.[11]

Manures and fertilizers

The blackcurrant requires a number of essential nutrients to be present to enable it to thrive; nitrogen provides strong plant growth and stimulates the production of flower sprigs; phosphorus aids growth, the setting of fruit and crop yield; potassium promotes growth of individual shoots and increases the weight of individual fruits; magnesium is a constituent of chlorophyll and helps increase yields through interaction with potassium; calcium is required for cell division and enlargement and is particularly important for young plants and buds.[12]

An annual spring mulch of well rotted manure is ideal and poultry manure can also be used but needs prior composting with straw or other waste vegetable material. Spent mushroom compost can be used but care should be taken as it often contains lime and blackcurrants prefer slightly acidic soils. The blackcurrant is a gross feeder and benefits from additional nitrogen, and phosphatic and potash fertilisers should also be applied annually.[11] A balanced artificial fertilizer can be used and a 10-10-10 granular product can be spread around the bushes at the rate of 100 to 240 grams (3+12 to 8+12 ounces) per plant.[13] Weed growth can be suppressed with an organic mulch such as sawdust, bark, mushroom compost or straw, heavy plastic topped with an organic mulch cover or landscape fabric.[11]

Pruning

Blackcurrant fruit is borne primarily on one-year-old shoots. Newly planted bushes should be pruned severely, cutting all shoots back to two buds above ground level. This gives the plant a chance to get properly established before needing to put its energy into producing fruit. The general rule when pruning is to remove all weak shoots and those growing out sideways which may get weighed down when fruiting. The remaining branches should be thinned to remove old unproductive wood and to encourage new shoots. An established bush should not be allowed to become overcrowded and should have about one third of its main branches or stems removed each year.[11] When harvesting by machine, plants with an upright growth habit are encouraged.[14]

Harvesting

On a garden scale, the berries should be picked when dry and ripe.[11] Commercially, most harvesting is done mechanically by straddle harvesters. These move continually down the rows, straddling a row of bushes, shaking the branches and stripping off the fruit. The blackcurrants are placed into half tonne bins and to minimise stoppage time, some machines have cross conveyors which direct the fruit into continuously moving trailers in the adjoining row. A modern machine can pick up to fifty tonnes of blackcurrants in a day using only one operator and two tractor drivers.[14] The bins should be stored in a cool place. Some fruit is still picked by hand for use in the fresh fruit market.[14]

Diseases and pests

Ribes plants are susceptible to several diseases and a number of insect pests. However, new varieties have been or are being developed to overcome some of these problems.[15]

Reversion is a serious disease transmitted by the blackcurrant gall mite (Cecidophyopsis ribis). It causes a decline in yield and is quite widespread in Europe but is rarely encountered on other continents. Symptoms include a modification of leaf shape in summer and swollen buds ("big bud") in winter, each housing thousands of microscopic mites.[16] As pest control has limited effectiveness, severely infected bushes should be destroyed. All new plants purchased should be certified as virus-free.[17]

White pine blister rust (Cronartium ribicola) needs two alternate hosts to complete its life cycle. One host is plants in the genus Ribes. On the blackcurrant, it causes the leaves to become pale and later develop tiny orange pustules and sometimes a yellow filamentous coating on some leaves. The fruit crop is little affected but the leaves fall early and growth is slowed the following year. The other host is any of the white pines, in which it causes serious disease and mortality for the North American species that have not co-evolved with the rust.[14] As a result, the blackcurrant was banned in the United States as a disease vector for much of the 20th century, and even after the federal ban was lifted in 1966, several U.S. states continued their own bans, some of which remain in force as of August 2021. The effectiveness of these restrictions is questionable, since other Ribes species also host the disease, some are native to North America, and others such as red currants and Ribes uva-crispa were never banned.

American gooseberry mildew and powdery mildew can infect the leaves and shoot tips, and botrytis may cause the fruit to rot in a wet season. Currant and gooseberry leaf spot (Drepanopeziza ribis) is another disease of blackcurrants, but it is not usually a serious problem as most cultivars now have some resistance.[11]

The blackcurrant leaf midge can cause browning, crimping and distortion of leaves at the tips of shoots but it is seldom a serious problem. The blackcurrant sawfly (Nematus ribesii) lays its eggs on the underside of the leaves and the voracious larvae work their way along the shoots, stripping off leaf after leaf. In a serious attack, the bush can be denuded of leaves. Larvae of the currant borer drill their way along the centres of shoots, which wilt and die back. Other insect pests include scale insects, aphids and earwigs.[14]

Research and cultivars

Green currant is a variant of blackcurrant cultivated in Finland; its berries lack the dark color and strong aroma typical of blackcurrant. This particular cultivar is 'Vertti'.

There are many cultivars of blackcurrant. 'Baldwin' was the mainstay of the industry for many years but it has now largely been superseded by more productive and disease-resistant varieties.[18][19] During the 20th century in Europe, much hybridisation work has been carried out in order to reduce the plant's susceptibility to disease and frost and also to increase yields. This effort centered mainly in Scotland, Poland, and New Zealand.[20]

In Britain the Scottish Crop Research Institute was tasked with developing new varieties suitable for growing in the north of the country. They produced new cultivars that had greater cold tolerance, especially in the spring, ripened earlier and more evenly and had greater fungal disease resistance. Frost tolerance was improved by selecting for late flowering and genetic research identified genes involved in resistance to gall mite and the blackcurrant reversion virus. 'Ben Lomond' was the first of the 'Ben' varieties and was released in 1975. This was followed by several other cultivars for the juicing industry such as 'Ben Alder' and 'Ben Tirran'. The cultivar 'Ben Hope' was released in 1998 with increased tolerance to gall mite, and in the same year, 'Ben Gairn' became available. It shows resistance to the reversion virus.[21] For gardeners and the pick-your-own market, 'Ben Sarek', 'Ben Connan' and 'Big Ben' were introduced and have large, sweet berries.[19] The cultivars 'Ben Connan'[22] and 'Big Ben'[23] have gained the Royal Horticultural Society's Award of Garden Merit.[4] and new varieties are being developed continually to improve frost tolerance, disease resistance, machine harvesting, fruit quality, nutritional content and fruit flavour.[19]

Varieties producing green fruit, less strongly flavoured and sweeter than typical blackcurrants, are cultivated in Finland, where they are called "greencurrants" (viherherukka).[24] In Poland, the Research Institute of Horticulture has done work on improving the blackcurrant with regard to disease and pest resistance, fruit quality, adaptations to local conditions and mechanical harvesting. Researchers have crossed various varieties and introduced inter-specific genetic material from the gooseberry (Ribes grossularia), the redcurrant (Ribes rubrum) and the flowering currant (Ribes sanguineum). The resulting offspring were further back-crossed to R. nigrum. Cultivars produced include 'Tisel' and 'Tiben' in 2000 and 'Ores', 'Ruben' and 'Tines' in 2005. Further cultivars 'Polares' and 'Tihope' are being tested.[25] Since 1991, New Zealand has become an important centre for research and development, as its temperate climate is particularly suitable for cultivation of the crop. Breeding programmes are concentrating on yield, large fruit size, consistency of cropping and upright habit.[26]

In North America, there is a need for this fruit to have resistance to white pine blister rust. New cultivars such as 'Crusader', 'Coronet' and 'Consort' have been developed there by crossing R. nigrum with R. ussuriense and these show resistance to the disease. However the quality and yield of these varieties are poor as compared to non-resistant strains and only Consort is reliably self-fertile. Back-crossing these varieties to a parent have produced new strains such as 'Titania' that have a higher yield, better disease resistance, are more tolerant of adverse weather conditions and are suitable for machine harvesting.[27] Two new releases from a black currant breeding program in British Columbia, Canada, 'Blackcomb' and 'Tahsis', were selected for their immunity to white pine blister rust and their frost tolerance.[28]

Uses

Nutrition

Raw blackcurrants are 82% water, 15% carbohydrates, 1% protein and 0.4% fat (table). Per 100 g serving providing 63 kilocalories, the raw fruit has high vitamin C content (218% of the Daily Value, DV) and moderate levels of iron and manganese (12% DV each). Other nutrients are present in negligible amounts (less than 10% DV, table).

Blackcurrant seed oil is rich in vitamin E and unsaturated fatty acids, including alpha-linolenic acid and gamma-linolenic acid.[29]

History

Decoction of the leaves, bark or roots was used as a traditional remedy.[30]

During World War II, most fruits rich in vitamin C, such as oranges, became difficult to obtain in the United Kingdom. Since blackcurrant berries are a rich source of the vitamin, and blackcurrant plants are suitable for growing in the UK climate, the British Government encouraged their cultivation and soon the yield of the nation's crop increased significantly. From 1942 onwards, blackcurrant syrup was distributed free of charge to children under the age of two. This may have given rise to the lasting popularity of blackcurrant as a flavouring in Britain.[31] In Britain the commercial crop is completely mechanised and about 1,400 hectares of the fruit are grown, mostly under contract to the juicing industry.[21] Commercially, most large-scale cultivation of blackcurrants is done in eastern Europe for the juice and juice concentrate market.[25] As of 2017, major cultivation efforts to improve fruit characteristics occurred in Scotland, New Zealand, and Poland.[20]

Blackcurrants were once popular in the United States as well, but became less common in the 20th century after currant farming was banned in the early 1900s, when blackcurrants, as a vector of white pine blister rust, were considered a threat to the U.S. logging industry.[32] The federal ban on growing currants was shifted to the jurisdictions of individual states in 1966, and was lifted in New York State in 2003 through the efforts of horticulturist Greg Quinn. As a result, currant growing is making a comeback in New York, Vermont, Connecticut, and Oregon.[33][34] However, several statewide bans still exist as of August 2021. Since the American federal ban curtailed currant production nationally for nearly a century, the fruit remains largely unknown in the United States and has yet to regain its previous popularity to levels enjoyed in Europe or New Zealand. Owing to its unique flavour and richness in polyphenols, dietary fibre and essential nutrients, awareness and popularity of blackcurrant is once again growing, with a number of consumer products entering the U.S. market.[35]

Culinary

The fruit of blackcurrants when eaten raw has a strong, tart flavour. It can be made into jams and jellies which set readily because of the fruit's high content of pectin and acid.[36] For culinary use, the fruit is usually cooked with sugar to produce a purée, which can then be passed through muslin to separate the juice. The purée can be used to make blackcurrant preserves and be included in cheesecakes, yogurt, ice cream, desserts, sorbets, and many other sweet dishes. The exceptionally strong flavour can be moderated by combining it with other fruits, such as raspberries and strawberries in summer pudding, or apples in crumbles and pies.[37] The juice can be used in syrups and cordials. Blackcurrants are a common ingredient of rødgrød, a popular kissel-like dessert in North German and Danish cuisines.[38]

Blackcurrants are also used in savoury cooking. Their astringency creates added flavour in sauces, meats and other dishes. Blackcurrants are included in some unusual combinations of foods. They can be added to tomato and mint to make a salad. Blackcurrants may accompany roast beef, grilled lamb, duck, seafood and shellfish. Canvasback duck with blackcurrants was a delicacy in nineteenth century New York. They can provide a dipping sauce at barbecues. They can be blended with mayonnaise, and used to invigorate bananas and other tropical fruits. Blackcurrants can be combined with dark chocolate or added to mincemeat in traditional mince pies at Christmas.[39]

Japan imports US$3.6 million of New Zealand blackcurrants for uses as dietary supplements, snacks, functional food products and as quick-frozen (IQF) produce for culinary production as jams, jellies or preserves.[40]

Beverages

Ribena blackcurrant juice drink

The juice forms the basis for various squashes, juice drinks, and smoothies. In Britain, 95% of the blackcurrants grown are used to manufacture Ribena (a brand of fruit juice whose name is derived from Ribes nigrum) and similar fruit syrups and juices.[41] Macerated blackcurrants are also the primary ingredient in the apéritif, crème de cassis,[42] which in turn is added to white wine to produce a Kir or to champagne to make a Kir Royal.

In the UK, a blackcurrant squash may be mixed with beer or alcoholic cider to make drinks including "cider and black",[43] "lager and black", or "snakebite and black".[44]

In Russia, blackcurrant leaves may be used for flavoring tea or preserves, such as salted cucumbers, and berries for home winemaking. Sweetened vodka may also be infused with blackcurrant leaves making a deep greenish-yellow beverage with a tart flavor and astringent taste. The berries may be infused in a similar manner.[45]

Blackcurrant seed oil is an ingredient in cosmetics preparations, often in combination with vitamin E. The leaves can be extracted to yield a yellow dye, and the fruit is a source for a blue or violet dye resulting from its rich content of anthocyanins.[46]

See also

Notes

  1. ^ Same in many Romance languages: Spanish, Portuguese, French

References

  1. ^ "Ribes nigrum". World Checklist of Selected Plant Families. Royal Botanic Gardens, Kew – via The Plant List. Note that this website has been superseded by World Flora Online
  2. ^ "Black currant: Ribes nigrum". NatureGate. Retrieved 2013-09-08.
  3. ^ "Flowering". The blackcurrant. The Blackcurrant Foundation. Archived from the original on 2013-09-17. Retrieved 2013-09-08.
  4. ^ a b c "Grow your own blackcurrants". Royal Horticultural Society. Retrieved 2016-07-14.
  5. ^ "Ribes nigrum var. sibiricum". Germplasm Resources Information Network (GRIN). Agricultural Research Service (ARS), United States Department of Agriculture (USDA). Retrieved 2013-06-04.
  6. ^ Gopalan, A.; Reuben, S. C.; Ahmed, S.; Darvesh, A. S.; Hohmann, J.; Bishayee, A. (2012). "The health benefits of blackcurrants" (PDF). Food & Function. 3 (8): 795–809. doi:10.1039/c2fo30058c. PMID 22673662.
  7. ^ Kapasakalidis, P. G.; Rastall, R. A.; Gordon, M. H. (2006). "Extraction of polyphenols from processed black currant (Ribes nigrum L.) residues". Journal of Agricultural and Food Chemistry. 54 (11): 4016–21. doi:10.1021/jf052999l. PMID 16719528.
  8. ^ Mcdougall, G. J.; Gordon, S.; Brennan, R.; Stewart, D. (2005). "Anthocyanin-flavanol condensation products from black currant (Ribes nigrum L.)". Journal of Agricultural and Food Chemistry. 53 (20): 7878–85. doi:10.1021/jf0512095. PMID 16190645.
  9. ^ Nielsen, I. L.; Haren, G. R.; Magnussen, E. L.; Dragsted, L. O.; Rasmussen, S. E. (2003). "Quantification of anthocyanins in commercial black currant juices by simple high-performance liquid chromatography. Investigation of their pH stability and antioxidative potency". Journal of Agricultural and Food Chemistry. 51 (20): 5861–6. doi:10.1021/jf034004+. PMID 13129285.
  10. ^ a b c Doronina, A. Ju.; Terekhina, N. V. "Crops: European Black Currant". Economic plants and their diseases, pests and weeds. AgroAtlas. Retrieved 2013-06-02.
  11. ^ a b c d e f g Gilbert, E. G. (1970). Soft Fruit Growing. Penguin. pp. 101–118. ISBN 1445512254.
  12. ^ "Plant Nutrients". The blackcurrant. The Blackcurrant Foundation. Archived from the original on 2013-09-17. Retrieved 2013-09-08.
  13. ^ "Minor fruits: gooseberries and currants". Department of Horticulture, Cornell University. Retrieved 2013-09-08.
  14. ^ a b c d e "Organic Black Currant Production Manual" (PDF). PEI Horticultural Association. Retrieved 2013-06-02.
  15. ^ "Pest and Disease". The blackcurrant. The Blackcurrant Foundation. Archived from the original on 2013-09-17. Retrieved 2013-09-08.
  16. ^ Hummer, Kim; Postman, Joseph (1 March 2000). "Black Currant Gall Mite". Currant and Gooseberry Pests. USDA/ARS National Clonal Germplasm Repository. Archived from the original on 2012-09-26. Retrieved 2013-03-09.
  17. ^ "Which magazine: Blackcurrant reversion" (PDF). Archived from the original (PDF) on 2019-08-17. Retrieved 2012-06-13.
  18. ^ Brickell, Christopher, ed. (1992). The Royal Horticultural Society Encyclopedia of Gardening. Dorling Kindersley. p. 415. ISBN 9780863189791.
  19. ^ a b c "The blackcurrant: Varieties". The Blackcurrant Foundation. 2009. Retrieved 2016-12-12.
  20. ^ a b "A History of Blackcurrants". Blackcurrant Foundation. 2017. Retrieved 2017-12-10.
  21. ^ a b Brennan, R. M.; Gordon, S. L.; Lanham, P. G. "Blackcurrant breeding and genetics" (PDF). Scottish Crop Research Institute. Retrieved 2013-09-10.
  22. ^ "Ribes nigrum 'Ben Connan'". RHS. Retrieved 2021-02-17.
  23. ^ "Blackcurrants". RHS. Retrieved 2021-02-17.
  24. ^ Junnila, S.; et al. (1987). "A green-fruited blackcurrant variety 'Vertti'". Annales Agriculturae Fenniae. 26: 278–283.
  25. ^ a b Pluta, Stan. "The blackcurrant breeding program in Poland, aims and recent improvements". Research Institute of Horticulture, Skierniewice, Poland. Archived from the original on 2013-09-17. Retrieved 2013-09-10.
  26. ^ Langford, Geoff (2010). "Blackcurrant breeding plots at Waipuna farm". Plant and food research. The New Zealand Institute for Plant & Food Research. Retrieved 2013-06-03.
  27. ^ Bratsch, Anthony; Williams, Jerry. "Specialty Crop Profile: Ribes (Currants and Gooseberries)". Virginia Cooperative Extension. Archived from the original on 2013-09-09. Retrieved 2013-09-08.
  28. ^ "McGinnis Berry Crops".
  29. ^ Traitler, H.; Winter, H.; Richli, U.; Ingenbleek, Y. (1984). "Characterization of gamma-linolenic acid in Ribes seed". Lipids. 19 (12): 923–8. doi:10.1007/BF02534727. PMID 6098796. S2CID 9631226.
  30. ^ Grieve, M. (1931). "Currant, black". Botanical.com: A modern herbal. Retrieved 2013-06-03.
  31. ^ Titmuss, Richard Morris (2001). Welfare and Well Being: Richard Titmuss's Contribution to Social Policy. The Policy Press. p. 85. ISBN 1861342993.
  32. ^ "US Agricultural Research Service Note". USDA. Retrieved 2009-12-06.
  33. ^ Foderaro, Lisa W. (16 October 2003). "New York Times". The New York Times. Retrieved 2009-12-06.
  34. ^ USDA, NRCS (n.d.). "Ribes nigrum". The PLANTS Database (plants.usda.gov). Greensboro, North Carolina: National Plant Data Team. Retrieved 2009-12-06.
  35. ^ Addy, Rod (9 September 2009). "Blackcurrants nutrients hailed as opportunity". Nutra. Retrieved 2013-06-04.
  36. ^ Ministry of Agriculture, Fisheries and Food (1968). Home Preservation of Fruit and Vegetables. HMSO. pp. 16–23.
  37. ^ Slater, Nigel (2010). Tender, vol.2: a cook's guide to the fruit garden. UK: Fourth Estate. p. 592. ISBN 978-0007325214.
  38. ^ "Danish food". Denmark-getaway.com. Retrieved 2013-06-06.
  39. ^ "Blackcurrants: Basics of cooking". New Zealand Blackcurrant Co-Operative. Archived from the original on 2013-06-05. Retrieved 2013-06-04.
  40. ^ "New Nutrition Business, Japan makes a superfruit out of the humble blackcurrant, 2006" (PDF). Archived from the original (PDF) on 2010-05-14. Retrieved 2009-12-06.
  41. ^ Cox, Kenneth; Curtis-Machin, Raoul (2008). Garden plants for Scotland. Frances Lincoln. p. 146. ISBN 978-0711226753. Scottish Crop Research Institute Ben blackcurrant.
  42. ^ Hamilton, Andy (11 July 2012). "Andy Hamilton's delicious homemade creme de cassis". The Guardian. Retrieved 2013-06-01.
  43. ^ Schultz, Alex. "Cider & Black Cocktail Recipe". Alex's cocktail recipes. Archived from the original on 2013-05-09. Retrieved 2013-06-01.
  44. ^ Schultz, Alex. "Snakebite Cocktail Recipe". Alex's cocktail recipes. Archived from the original on 2013-01-31. Retrieved 2013-06-01.
  45. ^ Boylan, Andrew (2007). "Currant, black". Incredible Edibles. Retrieved 2013-06-04.
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Blackcurrant: Brief Summary

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The blackcurrant (Ribes nigrum), also known as black currant or cassis, is a deciduous shrub in the family Grossulariaceae grown for its edible berries. It is native to temperate parts of central and northern Europe and northern Asia, where it prefers damp fertile soils. It is widely cultivated both commercially and domestically.

It is winter hardy, but cold weather at flowering time during the spring may reduce the size of the crop. Bunches of small, glossy black fruit develop along the stems in the summer and can be harvested by hand or by machine.

The raw fruit is particularly rich in vitamin C and polyphenols. Blackcurrants can be eaten raw but are usually cooked in sweet or savoury dishes. They are used to make jams, preserves, and syrups and are grown commercially for the juice market. The fruit is also used to make alcoholic beverages and dyes.

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