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首页> 外文期刊>The Horticulture Journal >Cloning of the Flavonoid 3 '-Hydroxylase Gene of Eustoma grandiflorum (Raf.) Shinn. (EgF3 ' H) and Complementation of an F3 ' H-deficient Mutant of Ipomoea nil (L.) Roth. by Heterologous Expression of EgF3 ' H
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Cloning of the Flavonoid 3 '-Hydroxylase Gene of Eustoma grandiflorum (Raf.) Shinn. (EgF3 ' H) and Complementation of an F3 ' H-deficient Mutant of Ipomoea nil (L.) Roth. by Heterologous Expression of EgF3 ' H

机译:洋桔梗(Raf。Shinn)的类黄酮3'-羟化酶基因的克隆。 (EgF3'H)和番木瓜(L.)Roth的F3'H缺陷型突变体的补体。 EgF3'H的异源表达

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摘要

A full-length cDNA of a putative flavonoid 3'-hydroxylase (F3'H) gene encoding a key enzyme in the production of cyanidin was cloned from a lisianthus (Eustoma grandiflorum) petal. Lisianthus F3'H (EgF3'H) shares 75.1, 73.8, and 68.2% amino acid identity with Arabidopsis thaliana, Ipomoea nil, and Petunia hybrida, respectively. RT-PCR revealed that wild-type lisianthus flowers accumulated higher levels of F3'H mRNA during the early stages of development than in the late stages. The accumulated F3'H transcript levels in leaves were similar to those in flowers in the early stages of development. Overexpression of lisianthus F3'H cDNA altered flower color from red to blue in the I. nil cultivar 'Violet', which lacks a functional F3'H gene. In addition, the transgenic 'Violet' plants accumulated cyanidin and peonidin at similar levels to wild-type I. nil. Taking these findings together, this study demonstrates that EgF3'H functions as a flavonoid 3'-hydroxylase with a role in the synthesis of cyanidin and peonidin pigments.
机译:从桔梗(Eustoma grandiflorum)花瓣中克隆了一个假定的类黄酮3'-羟化酶(F3'H)基因的全长cDNA,该基因编码花色素的产生中的关键酶。桔梗F3'H(EgF3'H)与拟南芥,番薯和矮牵牛的氨基酸同一性分别为75.1、73.8和68.2%。 RT-PCR表明,野生型桔梗花在发育早期积累的F3'H mRNA水平高于后期。叶片中积累的F3'H转录本水平与发育初期的花朵相似。洋桔梗F3'H cDNA的过表达使无功能的F3'H基因的无性系“紫罗兰”的花色从红色变为蓝色。另外,转基因的“紫罗兰”植物积累的花青素和peonidin的水平与野生型I. nil相似。综合这些发现,这项研究表明EgF3'H充当类黄酮3'-羟化酶,并在花青素和peonidin色素的合成中起作用。

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