Cynoglossum amabile
Cynoglossum amabile | |
---|---|
Scientific classification | |
Kingdom: | Plantae |
Clade: | Tracheophytes |
Clade: | Angiosperms |
Clade: | Eudicots |
Clade: | Asterids |
Order: | Boraginales |
Family: | Boraginaceae |
Genus: | Cynoglossum |
Species: | C. amabile |
Binomial name | |
Cynoglossum amabile |
Cynoglossum amabile, the Chinese hound's tongue[1] or Chinese forget-me-not, is a species of flowering plant in the family Boraginaceae, native to Asia.[2] A hardy annual growing to 50 cm (20 in), it has hairy leaves and cymes of sky-blue flowers in late summer. This plant, closely related to the common forget-me-not of temperate gardens (Myosotis sylvatica), is also grown as an ornamental.[3] In cultivation in the UK it has gained the Royal Horticultural Society's Award of Garden Merit.[4] (confirmed 2017).[5]
The Latin specific epithet amabile means "lovely".[6]
Toxicity
[edit]Cynoglossum amabile contains tumorigenic pyrrolizidine alkaloids[7] such as amabiline.[8]
References
[edit]- ^ Cynoglossum amabile at USDA PLANTS Database
- ^ "Cynoglossum amabile". Germplasm Resources Information Network. Agricultural Research Service, United States Department of Agriculture. Retrieved 16 January 2018.
- ^ "Cynoglossum amabile at NC State University". Archived from the original on 2007-02-03. Retrieved 2007-04-11.
- ^ "Cynoglossum amabile - Chinese forget-me-not". Royal Horticultural Society. Retrieved 15 August 2018.
- ^ "AGM Plants - Ornamental" (PDF). Royal Horticultural Society. July 2017. p. 26. Retrieved 24 January 2018.
- ^ Harrison, Lorraine (2012). RHS Latin for Gardeners. United Kingdom: Mitchell Beazley. ISBN 978-1845337315.
- ^ Fu, Peter P.; Yang, Ya-Chen; Xia, Qingsu; Chou, M.W.; Cui, Y.Y.; Lin, G. (2002). "Pyrrolizidine alkaloids - tumorigenic components in Chinese herbal medicines and dietary supplements". Journal of Food and Drug Analysis. 10 (4): 198–211. Retrieved 2018-08-15.
- ^ Culvenor, CCJ; Smith, LW (1967). "The alkaloids of Cynoglossum australe R.Br. And C. Amabile Stapf & Drummond". Australian Journal of Chemistry. 20 (11): 2499. doi:10.1071/CH9672499.