Collard (plant)

Collard refers to certain loose-leafed cultivars of Brassica oleracea, the same species as many common vegetables, including cabbage (Capitata Group) and broccoli (Italica Group). Collard is a member of the Viridis Group of Brassica oleracea.[1][2] American collard cultivars are more correctly placed in the Viridis cultivar group due to a high genetic similarity with cabbage, although older publications often include them within the Acephala Group (kale).[3] The name "collard" comes from the word "colewort" (a medieval term for non-heading brassica crops).[4][5]

Collard
A bundle of collard greens
SpeciesBrassica oleracea
Cultivar groupAcephala Group
OriginGreece
Cultivar group membersMany; see text.
Young collard plants growing in a container

The plants are grown as a food crop for their large, dark-green, edible leaves, mainly in Brazil, Portugal, Zimbabwe, the southern United States, Tanzania, Kenya, Uganda, the Balkans, Italy, northern Spain, and India. Collard greens have been eaten for at least 2000 years, with evidence showing that the ancient Greeks cultivated several types of collard, as well as kale.[6]

Description

The term collard has been used to include many non-heading Brassica oleracea crops. While American collards are best placed in the Viridis crop group,[3] the Acephala cultivar group is also used ("without a head" in Greek) referring to a lack of close-knit core of leaves (a "head") like cabbage does, making collards more tolerant of high humidity levels and less susceptible to fungal diseases.[7] The plant is a biennial where winter frost occurs; some varieties may be perennial in warmer regions. It has an upright stalk, often growing over two feet tall. The plant is very similar to kale. Popular cultivars of collard greens include 'Georgia Southern', 'Vates', 'Morris Heading', 'Blue Max', 'Top Bunch', 'Butter Collard' (couve manteiga), couve tronchuda, and Groninger Blauw.[3] In Africa it is commonly known as Sukuma (East Africa), Muriwo or umBhida (Southern Africa).

Cultivation

A field of collard in Pennsylvania

The plant is commercially cultivated for its thick, slightly bitter, edible leaves. They are available year-round, but are tastier and more nutritious in the cold months, after the first frost.[8] For best texture, the leaves are picked before they reach their maximum size, at which stage they are thicker and are cooked differently from the new leaves. Age does not affect flavor. Flavor and texture also depend on the cultivar; the couve manteiga and couve tronchuda are especially appreciated in Brazil and Portugal. In the Appalachian region of the Southern United States, "Cabbage Collards", characterized by yellow-green leaves and a partially heading structure are more popular than the dark-green non-heading types in the coastal South.[9]

Nutritional information

Collard greens, boiled
Nutritional value per 100 g (3.5 oz)
Energy137 kJ (33 kcal)
5.6 g
Sugars0.4 g
Dietary fiber4 g
0.7
2.7 g
VitaminsQuantity %DV
Vitamin A equiv.
48%
380 μg
42%
4513 μg
6197 μg
Thiamine (B1)
3%
0.04 mg
Riboflavin (B2)
9%
0.11 mg
Niacin (B3)
4%
0.58 mg
Pantothenic acid (B5)
4%
0.22 mg
Vitamin B6
10%
0.13 mg
Folate (B9)
4%
16 μg
Vitamin C
22%
18 mg
Vitamin E
6%
0.9 mg
Vitamin K
388%
407 μg
MineralsQuantity %DV
Calcium
14%
141 mg
Iron
9%
1.13 mg
Magnesium
6%
21 mg
Manganese
24%
0.51 mg
Phosphorus
5%
32 mg
Potassium
2%
117 mg
Sodium
1%
15 mg
Zinc
2%
0.23 mg
Other constituentsQuantity
Water90.2 g

Percentages are roughly approximated using US recommendations for adults.
Source: USDA FoodData Central

Raw collard greens are 90% water, 6% carbohydrates, 3% protein, and contain negligible fat (table). Like kale, collard greens contain substantial amounts of vitamin K (388% of the Daily Value, DV) in a 100-gram serving. Collard greens are rich sources (20% or more of DV) of vitamin A, vitamin C, and manganese, and moderate sources of calcium and vitamin B6.[10] A 100-gram (3 12-ounce) reference serving of cooked collard greens provides 137 kilojoules (33 kilocalories) of food energy. Some collard cultivars may be abundant sources of alphatic glucosinolates, such as glucoraphanin.[11]

Culinary use

East Africa

Collard greens are known as sukuma in Tanzania, Kenya and Uganda.[12] Sukuma is mainly lightly sauteed in oil until tender, flavoured with onions and seasoned with salt, and served either as the main accompaniment or as a side dish with the preferred meat (fish, chicken, beef, or pork). In Congo, Tanzania and Kenya (East Africa), thinly sliced collard greens are the main accompaniments of a popular dish known as sima or ugali (a maize flour cake).

Southern and Eastern Europe

Collards have been cultivated in Europe for thousands of years with references to the Greeks and Romans back to the 1st Century.[13] In Montenegro, Dalmatia and Herzegovina, collard greens, locally known as raštika or raštan, were traditionally one of the staple vegetables. It is particularly popular in the winter, stewed with smoked mutton (kaštradina) or cured pork, root vegetables and potatoes.[14] Known in Turkey as kara lahana ("dark cabbage"), it is a staple in the Black Sea area.

Southern United States

Collard greens are a staple vegetable in Southern U.S. cuisine.[15][16][17] They are often prepared with other similar green leaf vegetables, such as spinach, kale, turnip greens, and mustard greens in the dish called "mixed greens". Typically used in combination with collard greens are smoked and salted meats (ham hocks, smoked turkey drumsticks, smoked turkey necks, pork neckbones, fatback or other fatty meat), diced onions, vinegar, salt, and black pepper, white pepper, or crushed red pepper, and some cooks add a small amount of sugar. Traditionally, collards are eaten on New Year's Day, along with black-eyed peas or field peas and cornbread, to ensure wealth in the coming year.[15] Cornbread is used to soak up the "pot liquor", a nutrient-rich collard broth. Collard greens may also be thinly sliced and fermented to make a collard sauerkraut that is often cooked with flat dumplings. Landrace collard in-situ genetic diversity and ethnobotany are subjects of research for citizen-science groups.[18]

Zimbabwe

In Zimbabwe, collard greens are known as mbida in Ndebele and muriwo in Shona. Due to the climate, mbida/muriwo thrives under almost all conditions, with most people growing it in their gardens. It is commonly eaten with Sadza (ugali in West & East Africa, pap in South Africa and polenta in Italy) as part of the staple food.[19] Mbida/Muriwo is normally wilted in boiling water before being fried and combined with sautéd onions and/or tomato. Some (more traditionally, the Shona people) add beef, pork and other meat to the mbida mix for a type of stew.[20] Most people eat mbida on a regular basis in Zimbabwe as it is economical and as previously mentioned, can be grown with little to no effort in one's own garden. Mubida/Muriwo is so common there one of the country's top musicians Jah Prayzah did a song on the meal [21]

Brazil and Portugal

Caldo verde, a popular Portuguese soup made with collard greens

In Portuguese and Brazilian cuisine, collard greens (or couve) are a common accompaniment to fish and meat dishes. They make up a standard side dish for feijoada, a popular pork and beans-style stew.[22] These Brazilian and Portuguese cultivars are likely members of a distinct non-heading cultivar group of Brassica oleracea, specifically the Tronchuda Group.

Thinly-sliced collard greens are also a main part of the popular Portuguese soup, caldo verde ("green broth"). For this broth, the leaves are sliced into strips, 2–3 mm (33218 in) wide (sometimes by a grocer or market vendor using a special hand-cranked slicer) and added to the other ingredients 15 minutes before it is served.

India

In the Kashmir Valley,[23][24] collard greens (haakh) are included in most meals.[25] Leaves are harvested by pinching in early spring when the dormant buds sprout and give out tender leaves known as kaanyil haakh. When the extending stem bears alternate leaves in quick succession during the growing season, older leaves are harvested periodically. In late autumn, the apical portion of the stem is removed along with the whorled leaves. There are several dishes made with haakh. A common dish eaten with rice is haak rus, a soup of whole collard leaves cooked simply with water, oil, salt, green chilies and spices.

Pests

The sting nematode Belonolaimus gracilis and the awl nematode, Dolichodorus spp. are both ectoparasites that can injure collard. Root symptoms include, stubby or coarse roots that are dark at the tips. Shoot symptoms include, stunted growth, premature wilting and chlorosis (Nguyen and Smart, 1975). Another species of the sting worm, Belonolaimus longicaudatus is a pest of collards in Georgia and North Carolina (Robbins and Barker, 1973). B. longicaudatus is devastating to seedlings and transplants. As few as three nematodes per 100g of soil when transplanting can cause significant yield losses on susceptible plants. They are most common in sandy soils (Noling, 2012).

The stubby root nematodes Trichodorus and Paratrichodorus attach and feed near the tip of collard's taproots. The damage caused prevents proper root elongation leading to tight mats that could appear swollen, therefore resulting in a "stubby root" (Noling, 2012).

Several species of the root knot nematode Meloidogyne spp. infest collards. These include: M. javanica, M. incognita and M. arenaria. Second-stage juveniles attack the plant and settle in the roots. However, infestation seems to occur at lower populations compared to other cruciferous plants. Root symptoms include deformation (galls) and injury that prevent proper water and nutrient uptake. This could eventually lead to stunting, wilting and chlorosis of the shoots (Crow and Dunn, 2012).

The false root knot nematode Nacobbus aberrans has a wide host range of up to 84 species including many weeds. On Brassicas it has been reported in several states, including Nebraska, Wyoming, Utah, Colorado, Montana, South Dakota, and Kansas (Manzanilla- López et al., 2002). As a pest of collards, the degree of damage is dependent upon the nematode population in the soil.

Some collard cultivars exhibit resistance to bacterial leaf blight incited by Pseudomonas cannabina pv. alisalensis (Pca).[26]

See also

References

  1. Farnham, Mark W. (May 1996). "Genetic Variation among and within United States Collard Cultivars and Landraces as Determined by Randomly Amplified Polymorphic DNA Markers". Journal of the American Society for Horticultural Science. 121 (3): 374–379. doi:10.21273/jashs.121.3.374. ISSN 0003-1062.
  2. Quiros, Carlos F.; Farnham, Mark W. (2011), Schmidt, Renate; Bancroft, Ian (eds.), "The Genetics of Brassica oleracea", Genetics and Genomics of the Brassicaceae, Plant Genetics and Genomics: Crops and Models, New York, NY: Springer, pp. 261–289, doi:10.1007/978-1-4419-7118-0_9, ISBN 978-1-4419-7118-0, retrieved 2020-11-28
  3. Pelc, Sandra E.; Couillard, David M.; Stansell, Zachary J.; Farnham, Mark W. (2015). "Genetic Diversity and Population Structure of Collard Landraces and their Relationship to Other Brassica oleracea Crops". The Plant Genome. 8 (3): eplantgenome2015.04.0023. doi:10.3835/plantgenome2015.04.0023. ISSN 1940-3372. PMID 33228266. S2CID 55772782.
  4. "collard". Oxford English Dictionary (Online ed.). Oxford University Press. (Subscription or participating institution membership required.)
  5. "Greeks and Romans Grew Kale and Collards". Texas A&M Agricultural Extension. Retrieved 2018-04-02.
  6. "Greeks and Romans Grew Kale and Collards | Archives | Aggie Horticulture". Aggie-horticulture.tamu.edu. Retrieved 2012-07-26.
  7. "Brassica oleracea var. acephala". Floridata. 2007-02-06. Retrieved 2012-07-26.
  8. "Birney Imes: Amazing collards – The Dispatch". Cdispatch.com. 2012-07-21. Retrieved 2012-07-26.
  9. "Collards - University of Alabama Press". www.uapress.ua.edu. Retrieved 2020-11-28.
  10. Farnham, Mark W.; Lester, Gene E.; Hassell, Richard (2012-08-01). "Collard, mustard and turnip greens: Effects of genotypes and leaf position on concentrations of ascorbic acid, folate, β-carotene, lutein and phylloquinone". Journal of Food Composition and Analysis. 27 (1): 1–7. doi:10.1016/j.jfca.2012.04.008. ISSN 0889-1575.
  11. Stansell, Zachary; Cory, Wendy; Couillard, David; Farnham, Mark (2015). "Collard landraces are novel sources of glucoraphanin and other aliphatic glucosinolates". Plant Breeding. 134 (3): 350–355. doi:10.1111/pbr.12263. ISSN 1439-0523.
  12. Swegarden, Hannah; Stelick, Alina; Dando, Robin; Griffiths, Phillip D. (2019). "Bridging Sensory Evaluation and Consumer Research for Strategic Leafy Brassica (Brassica oleracea) Improvement". Journal of Food Science. 84 (12): 3746–3762. doi:10.1111/1750-3841.14831. ISSN 1750-3841. PMID 31681987.
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  14. Liliana Pavicic and Gordana Pirker-Mosher Best of Croatian Cooking, p. 137, at Google Books
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  16. "COLLARD GREENS SHORTAGE THREATENS NEW YEAR'S DAY GOOD LUCK RECIPE". Newsweek.com. Newsweek. Retrieved 1 November 2019.
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  18. "Home". The Heirloom Collards Project. Retrieved 2020-12-07.
  19. "Food in Zimbabwe - Zimbabwean Food, Zimbabwean Cuisine - traditional, diet, history, common, meals, staple, rice, people, make". www.foodbycountry.com.
  20. "Pork Bones Haifiridzi". 21 May 2017.
  21. "Sadza neMuriwo". Jah Prayzah. 22 July 2019.
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