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Illicium anisatum, with common names Japanese star anise, [1] Aniseed tree, [1] and sacred Anise tree, [1] known in Japanese as shikimi (樒, シキミ), is an evergreen shrub or small tree closely related to the Chinese star anise (Illicium verum).
The essential oils of several species are used as flavorings and carminatives; however, the oils of I. anisatum and I. floridanum are toxic. I. verum, the common star anise, is used to flavor food and liquor. Its fruit is a traditional Chinese medicine called bājiǎo huíxiāng (八角茴香), which is used to treat abdominal pain and vomiting ...
Japanese star anise (Illicium anisatum), a similar tree, is highly toxic and inedible; in Japan, it has instead been burned as incense. Cases of illness, including "serious neurological effects, such as seizures", reported after using star anise tea may be a result of deliberate economically motivated adulteration with this species.
Like any plant native to the desert, the desert rose adores warm, dry temperatures. It will start to droop as soon as thermometer reading drops below 50 degrees. It does best at temperatures ...
Star anise refers to Illicium verum Chinese star anise, and the spice derived from it. It can also refer to related poisonous plants: Illicium anisatum, Japanese star anise, similar in appearance to Illicium verum; Illicium floridanum, a shrub of the southeastern United States; Illicium parviflorum, swamp star anise, of the southeastern United ...
Nymphaea alba, from the Nymphaeales. The basal angiosperms are the flowering plants which diverged from the lineage leading to most flowering plants. In particular, the most basal angiosperms were called the ANITA grade, which is made up of Amborella (a single species of shrub from New Caledonia), Nymphaeales (water lilies, together with some other aquatic plants) and Austrobaileyales (woody ...
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It is an important biochemical metabolite in plants and microorganisms. Its name comes from the Japanese flower shikimi (シキミ, the Japanese star anise, Illicium anisatum), from which it was first isolated in 1885 by Johan Fredrik Eykman. [1] The elucidation of its structure was made nearly 50 years later. [2]
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