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Floral anthocyanins in wild taxa of Petunia (Solanaceae)

机译:矮牵牛(茄科)野生类群中的花色花色素苷

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The flowers of 20 native taxa of Petunia (Solanaceae) were investigated by HPLC for the occurrence of anthocyanins. The investigation revealed the presence of at least 24 anthocyanins in their flowers, of which 18 known anthocyanins isolated from the flowers of P. exserta, P. guarapuavensis, P. integrifolia, P. occidentalis, and P. reitzii were fully identified by chemical and spectral methods to be 3-glucoside of delphinidin; 3-rutinosides of cyanidin, delphinidin, and petunidin; 3-rutinoside-5-glucosides, 3-trans and -cis-p-coumaroylrutinoside-5-glucosides, and 3-trans-caffeoylrutinoside-5-glucosides of delphinidin, petunidin, and malvidin; and 3-trans-caffeoylglucosyl-trans-(caffeoyl or p-coumaroyl) rutinoside-5-glucosides of malvidin. Six novel anthocyanins were isolated from the flowers of P. occidentalis, and their structures were identified to be 3-glucosyl p-coumaroylrutinoside-5-glucosides and 3-glucosylcaffeoylrutinosides of petunidin and malvidin, and also 3-caffeoylglucosylcaffeoylrutinoside-5-glucoside and 3-caffeoylglucosyl p-coumaroylrutinoside-5-glucoside of petunidin. Out of the six pigments, petunidin 3-glucosyl p-coumaroylrutinoside-5-glucoside was unambiguously determined by spectral methods to be petunidin 3-O-[6-O-(4-O-(4-O-(beta-D- glucopyranosyl)-trans-p-coumaroyl)-alpha-- rhamnopyranosyl)-beta--glucopyranoside]- 5-O -[beta--glucopyranoside]. The 20 native taxa of Petunia could be placed into four groups (A, B, C, and D) with one further into five subgroups (D1-D5) regarding their constituents and contents of major anthocyanins and also their pigment biosynthesis with respect to the blocks or inhibitors of the hydroxylation. glucosylation, and acylation reactions in them. The use of anthocyanins as taxonomic markers inthe genus Petunia is discussed in relation to the flower colour and possible pollination vectors.
机译:通过HPLC研究了矮牵牛(茄科)的20个天然分类单元的花中花色苷的存在。调查表明,它们的花中至少存在24种花色苷,其中18种已知的花色苷是从化学假单胞菌,瓜拉普阿文氏菌,整形假单胞菌,occidentalis和reitzii的花中分离得到的。光谱法为飞燕草素的3-葡糖苷;花青素,翠雀素和矮牵牛苷的3-芸香糖苷; delphiinidin,petunidin和malvidin的3-rutinoside-5-glucosides,3-trans和-cis-p-coumaroylrutinoside-5-glucosides和3-trans-caffeoylrutinoside-5-glucosides;和3-反-咖啡酰葡糖基-麦维京的反式-(咖啡酰或对-香豆酰基)芸香苷-5-葡糖苷。从西洋桔梗的花中分离出六个新的花色苷,其结构被鉴定为矮牵牛苷和麦维丁的3-葡糖基对香豆酰芸苔苷5-葡糖苷和3-葡糖基咖啡酰芸香糖苷,以及3-咖啡酰葡糖基葡糖苷-芸香苷芸苔苷-5-葡糖苷和3矮牵牛苷的-caffeoylglucosyl对-coumaroylrutinoside-5-glucoside。在六种颜料中,通过光谱方法明确地确定了矮牵牛苷3-葡糖基对香豆酰芸豆苷-5-葡糖苷为矮牵牛苷3-O- [6-O-(4-O-(4-O-(β-D-吡喃葡糖基)-反式-对-香豆酰基)-α-鼠李糖吡喃糖基)-β-吡喃葡糖苷] -5-O- [β-吡喃葡糖苷]。矮牵牛的20种天然分类单元可以分为四类(A,B,C和D),另一类可以分为五个亚组(D1-D5),这涉及其主要花色苷的组成和含量,以及与花青素有关的色素生物合成。羟基化的阻滞剂或抑制剂。糖基化和其中的酰化反应。关于花的颜色和可能的授粉载体,讨论了花色素苷在矮牵牛属中作为分类学标记的用途。

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