Arctium lappa

Burdock
Greater Burdock
Scientific classification
Kingdom: Plantae
(unranked): Angiosperms
(unranked): Eudicots
(unranked): Asterids
Order: Asterales
Family: Asteraceae
Genus: Arctium
Species: A. lappa
Binomial name
Arctium lappa
L.
Synonyms
Arctium lappa - MHNT

Arctium lappa, commonly called greater burdock,[1] gobō, edible burdock,[1] lappa,[1] beggar's buttons,[1] thorny burr, or happy major[2] is a Eurasian species of plants in the sunflower family, cultivated in gardens for its root used as a vegetable. It has become an invasive weed of high-nitrogen soils in North America, Australia, and other regions.[3][4][5][6]

Description

Inflorescence.

Greater Burdock is a biennial plant, rather tall, reaching as much as 3 m (10 ft).[7] It has large, alternating, cordiform leaves that have a long petiole and are pubescent on the underside.[8]

The flowers are purple and grouped in globular capitula, united in clusters. They appear in mid-summer, from July to September.[9] The capitula are surrounded by an involucre made out of many bracts, each curving to form a hook, allowing them to be carried long distances on the fur of animals. The fruits are achenes; they are long, compressed, with short pappuses. The fleshy tap-root can grow up to 1 m (3 ft 3 in) deep.[8]

Distribution and ecology

This species is native to the temperate regions of the old world, from Scandinavia to the Mediterranean, and from the British Isles through Russia, and the Middle East to India, China, Taiwan and Japan.

It is naturalized almost everywhere and is usually found in disturbed areas, especially in soil rich in nitrogen. It is commonly cultivated in Japan where it gives its name to a particular construction technique, burdock piling.

The leaves of Greater Burdock provide food for the caterpillars of some Lepidoptera, such as the Thistle Ermine (Myelois circumvoluta).

Cultivation

It prefers a fresh, worked soil, rich in humus, and should be positioned in full sunlight. Burdock is very reactive to nitrogen fertilizer. Propagation is achieved through sowing the seeds midsummer. The harvest occurs three to four months after the seeding until late autumn, when the roots become too fibrous.

Culinary use

A Japanese appetizer, kinpira gobō, consisting of sauteed gobō (Greater burdock root) and carrot, with a side of sautéed dried daikon
"Gobō salad" Japanese burdock salad
Burdock root, raw
Nutritional value per 100 g (3.5 oz)
Energy 302 kJ (72 kcal)
17.34 g
Sugars 2.9
Dietary fiber 3.3 g
0.15 g
1.53 g
Vitamins
Thiamine (B1)
(1%)

0.01 mg

Riboflavin (B2)
(3%)

0.03 mg

Niacin (B3)
(2%)

0.3 mg

Pantothenic acid (B5)
(6%)

0.321 mg

Vitamin B6
(18%)

0.24 mg

Folate (B9)
(6%)

23 μg

Vitamin C
(4%)

3 mg

Vitamin E
(3%)

0.38 mg

Vitamin K
(2%)

1.6 μg

Minerals
Calcium
(4%)

41 mg

Iron
(6%)

0.8 mg

Magnesium
(11%)

38 mg

Manganese
(11%)

0.232 mg

Phosphorus
(7%)

51 mg

Potassium
(7%)

308 mg

Sodium
(0%)

5 mg

Zinc
(3%)

0.33 mg


Percentages are roughly approximated using US recommendations for adults.
Source: USDA Nutrient Database

Greater burdock root is known as niúbàng (牛蒡) in Chinese, which was borrowed into Japanese as gobō and Korean as ueong (우엉), and is widely eaten in the region. It was used in Europe during the Middle Ages as a vegetable, but now it is rarely used except in Italy, Brazil and Portugal, where it is known as bardana or "garduna". Plants are cultivated for their slender roots, which can grow about 1 meter long and 2 cm across. The root was traditionally used in Britain as a flavouring in the herbal drink dandelion and burdock, which is still commercially produced.

Immature flower stalks may also be harvested in late spring, before flowers appear. The taste resembles that of artichoke, to which the burdock is related.

In the second half of the 20th century, burdock achieved international recognition for its culinary use due to the increasing popularity of the macrobiotic diet, which advocates its consumption. The root contains a fair amount of dietary fiber (GDF, 6g per 100g), calcium, potassium, amino acids,[10] and is low calorie. It contains polyphenols that causes darkened surface and muddy harshness by formation of tannin-iron complexes. Those polyphenols are caffeoylquinic acid derivatives.[11]

The root is very crisp and has a sweet, mild, and pungent flavor with a little muddy harshness that can be reduced by soaking julienned/shredded roots in water for five to ten minutes. The harshness shows excellent harmonization with pork in miso soup (tonjiru) and takikomi gohan (a Japanese-style pilaf).

A popular Japanese dish is kinpira gobō, julienned or shredded burdock root and carrot, braised with soy sauce, sugar, mirin and/or sake, and sesame oil. Another is burdock makizushi, rolled sushi filled with pickled burdock root; the burdock root is often artificially colored orange to resemble a carrot. Burdock root can also be found as a fried snack food similar in taste and texture to potato chips and is occasionally used as an ingredient in tempura dishes.

Fermentation of the root by Aspergillus oryzae is also used for making miso and rice wine in Japanese cuisine.[12]

Use in traditional medicine

Dried burdock roots (Bardanae radix) are used in folk medicine as a diuretic, diaphoretic, and a blood purifying agent.[13] Anecdotal reports from the 19th century suggest that this medicinal plant has also been used by the Ojibwa tribe, and today, in form of an ingredient in Essiac tea for the alternative treatment of some cancers.[14] As an oily macerate, it is a component of some cosmetics, shampoos and hair care products. The seeds of greater burdock are employed in traditional Chinese medicine particularly for skin conditions and in cold/flu formulas, under the name niubangzi[15] (Chinese: 牛蒡子; pinyin: niúpángzi; some dictionaries list the Chinese as just 牛蒡 niúbàng.)

Chemical constituents

Burdock roots contain mucilage, sulfurous acetylene compounds, polyacetylenes and bitter guaianolide-type constituents. Seeds contain arctigenin, arctiin, and butyrolactone lignans.[16][17][18]

Size

Size of greater burdock leaves.
The man holding the burdock leaf is 180 centimetres (5.9 ft) tall. 
This is a burdock leaf. Note the steps in the background for scale. 

See also

References

  1. 1 2 3 4 "USDA GRIN taxonomy".
  2. Grieve, Maud (1971). A Modern Herbal: The Medicinal, Culinary, Cosmetic and Economic Properties, Cultivation and Folk-lore of Herbs, Grasses, Fungi, Shrubs, & Trees with All Their Modern Scientific Uses, Volume 1. p. 143. ISBN 9780486227986.
  3. Flora of North America Vol. 19, 20 and 21 Page 169 Great burdock, grande bardane, Arctium lappa Linnaeus, Sp. Pl. 2: 816. 1753.
  4. Atlas of Living Australia, Arctium lappa L.
  5. Biota of North America Program 2014 county distribution map
  6. Altervista Flora Italiana, Bardana maggiore Arctium lappa L. many photos
  7. "COMMON BURDOCK, Arctium minus," Ohio Perennial and Biennial Weed Guide, Ohio State University, http://www.oardc.ohio-state.edu/weedguide/singlerecord.asp?id=900
  8. 1 2 Flora of China Vol. 20-21 Page 153 牛蒡 niu bang Arctium lappa Linnaeus, Sp. Pl. 2: 816. 1753.
  9. Rose, Francis (1981). The Wild Flower Key. Frederick Warne & Co. pp. 386–387. ISBN 0-7232-2419-6.
  10. (井関 清経=健康サイト編集). "ゴボウの皮はむかないのが"新常識" (06/01/19) - ニュース - nikkei BPnet". Nikkeibp.co.jp. Retrieved 2012-02-02.
  11. Maruta, Yoshihiko; Kawabata, Jun; Niki, Ryoya (1995). "Antioxidative caffeoylquinic acid derivatives in the roots of burdock (Arctium lappa L.)". Journal of Agricultural and Food Chemistry. 43 (10): 2592. doi:10.1021/jf00058a007.
  12. "New probiotic identified in fermented Japanese vegetable: Enzyme improves colon health in rats". Science Daily.
  13. Chan Y.-S., Cheng L.-N., Wu J.-H., Chan E., Kwan Y.-W., Lee S.M.-Y., Leung G.P.-H., Yu P.H.-F., Chan S.-W. (2010). "A review of the pharmacological effects of Arctium lappa (burdock)". Inflammopharmacology.
  14. Zick S.M., Sen A., Feng Y., Green J., Olatunde S., Boon H. (2006). "Trial of essiac to ascertain its effect in women with breast cancer (TEA-BC)". Journal of Alternative and Complementary Medicine. 12 (10): 971–980.
  15. School of Chinese Medicine database Archived August 26, 2014, at the Wayback Machine.
  16. Hayashi, K; Narutaki, K; Nagaoka, Y; Hayashi, T; Uesato, S (2010). "Therapeutic effect of arctiin and arctigenin in immunocompetent and immunocompromised mice infected with influenza". Biological and Pharmaceutical Bulletin. 33 (7): 1199–1205. PMID 20606313.
  17. Xie L.-H., Ahn E.-M., Akao T., Abdel-Hafez A.A.-M., Nakamura N., Hattori M. (2003). "Transformation of arctiin to estrogenic and antiestrogenic substances by human intestinal bacteria". Chemical and Pharmaceutical Bulletin. 51 (4): 378–384. PMID 12672988.
  18. Matsumoto T., Hosono-Nishiyama K., Yamada H. (2006). "Antiproliferative and apoptotic effects of from Arctium lappa on leukemic cells". Planta Medica. 72 (3): 276–278. doi:10.1055/s-2005-916174. PMID 16534737.

External links

Wikiversity has bloom time data for Arctium lappa on the Bloom Clock
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