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首页> 外文期刊>Phytochemistry >Co-pigmentation and flavonoid glycosyltransferases in blue Veronica persica flowers
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Co-pigmentation and flavonoid glycosyltransferases in blue Veronica persica flowers

机译:蓝色Veronica persica花中的共色素沉着和类黄酮糖基转移酶

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摘要

Glycosylation is one of the key modification steps for plants to produce a broad spectrum of flavonoids with various structures and colors. A survey of flavonoids in the blue flowers of Veronica persica Poiret (Lamiales, Scrophulariaceae), which is native of Eurasia and now widespread worldwide, led to the identification of highly glycosylated flavonoids, namely delphinidin 3-O-(2-O-(6-O-p-coumaroyl-glucosyl)-6-O-p-coumaroyl-glucoside)-5-O-glucoside (1) and apigenin 7-O-(2-O-glucuronosyl)-glucuronide (2), as two of its main flavonoids. Interestingly, the latter flavone glucuronide (2) caused a bathochromic shift on the anthocyanin (1) toward a blue hue in a dose-dependent manner, showing an intermolecular co-pigment effect. In order to understand the molecular basis for the biosynthesis of this glucuronide, we isolated a cDNA encoding a UDP-dependent glycosyltransferase (UGT88D8), based on the structural similarity to flavonoid 7-O-glucuronosyltransferases (F7GAT) from Lamiales plants. Enzyme assays showed that the recombinant UGT88D8 protein catalyzes the 7-O-glucuronosylation of apigenin and its related flavonoids with preference to UDPglucuronic acid as a sugar donor. Furthermore, we identified and functionally characterized a cDNA encoding another UGT, UGT94F1, as the anthocyanin 3-O-glucoside-2d-O-glucosyltransferase (A3Glc2dGlcT), according to the structural similarity to sugarsugar glycosyltransferases classified to the cluster IV of flavonoid UGTs. Preferential expression of UGT88D8 and UGT94F1 genes in the petals supports the idea that these UGTs play an important role in the biosynthesis of key flavonoids responsible for the development of the blue color of V. persica flowers.
机译:糖基化是植物产生具有各种结构和颜色的广谱类黄酮的关键修饰步骤之一。对欧亚大陆的一种Verano persica Poiret(Lamiales,Scrophulariaceae)的蓝色花朵中的黄酮类化合物进行调查后发现,这种化合物高度糖基化的类黄酮,即delphinidin 3-O-(2-O-(6 -Op-香豆酰基-葡糖基)-6-Op-香豆酰基-葡糖苷)-5-O-葡糖苷(1)和芹菜素7-O-(2-O-葡糖醛酸糖基)-葡糖醛酸苷(2),是其两个主要类黄酮。有趣的是,后者的黄酮葡糖醛酸苷(2)引起花色苷(1)的红移以剂量依赖的方式向着蓝色调转变,显示出分子间共色素效应。为了了解该葡糖醛酸苷生物合成的分子基础,我们基于与拉米亚莱斯植物中类黄酮7-O-葡糖醛酸糖基转移酶(F7GAT)的结构相似性,分离了编码UDP依赖性糖基转移酶(UGT88D8)的cDNA。酶法分析表明,重组UGT88D8蛋白可催化芹菜素及其相关类黄酮的7-O-葡萄糖醛糖基化反应,而UDP-葡萄糖醛酸优先作为糖供体。此外,根据与糖类糖基糖基转移酶的结构相似性,我们将其编码为另一个花色苷3-O-葡糖苷-2d-O-葡萄糖基转移酶(A3Glc2dGlcT),并将其编码为另一类UGT的cDNA,并将其功能表征为类黄酮类UGT的IV类。 UGT88D8和UGT94F1基因在花瓣中的优先表达支持以下想法:这些UGT在关键黄酮类化合物的生物合成中起重要作用,该类黄酮负责波斯菊的蓝色开花。

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