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葡萄中黄酮类羟化酶的鉴定及其在果实发育过程中的调控。

Identification of the flavonoid hydroxylases from grapevine and their regulation during fruit development.

作者信息

Bogs Jochen, Ebadi Ali, McDavid Debra, Robinson Simon P

机构信息

Commonwealth Scientific and Industrial Research Organization, Plant Industry, Horticulture Unit, Glen Osmond, South Australia 5064, Australia.

出版信息

Plant Physiol. 2006 Jan;140(1):279-91. doi: 10.1104/pp.105.073262. Epub 2005 Dec 23.

Abstract

Flavonoids are important secondary metabolites in many fruits, and their hydroxylation pattern determines their color, stability, and antioxidant capacity. Hydroxylation of the B-ring of flavonoids is catalyzed by flavonoid 3'-hydroxylase (F3'H) and flavonoid 3',5'-hydroxylase (F3'5'H), and may also require cytochrome b5. We report the identification of genes encoding F3'H, F3'5'H, and a putative cytochrome b5 from grapevine (Vitis vinifera L. cv Shiraz) and their transcriptional regulation in fruit. Functionality of the genes VvF3'H and VvF3'5'H1 was demonstrated by ectopic expression in petunia (Petunia hybrida), which altered flower color and flavonoid composition as expected. VvF3'H was expressed in grapes before flowering, when 3'-hydroxylated flavonols are made, and all three genes were expressed after flowering, when proanthocyanidins (PAs) are synthesized. In berry skin, expression of all three genes was low at the onset of ripening (véraison) but increased after véraison concomitant with the accumulation of 3'- and 3',5'-hydroxylated anthocyanins. VvF3'H and VvCytoB5 were expressed in seeds but not VvF3'5'H1, consistent with the accumulation of 3'-hydroxylated PAs in this tissue. VvCytoB5 expression was correlated with expression of both VvF3'H and VvF3'5'H1 in the different grape tissues. In contrast to red grapes, where VvF3'H, VvF3'5'H1, and VvCytoB5 were highly expressed during ripening, the expression of VvF3'5'H1 and VvCytoB5 in white grapes during ripening was extremely low, suggesting a difference in transcriptional regulation. Our results show that temporal and tissue-specific expression of VvF3'H, VvF3'5'H1, and VvCytoB5 in grapes is coordinated with the accumulation of the respective hydroxylated flavonols and PAs, as well as anthocyanins. Understanding the regulation of flavonoid hydroxylases could be used to modify flavonoid composition of fruits.

摘要

类黄酮是许多水果中重要的次生代谢产物,其羟基化模式决定了它们的颜色、稳定性和抗氧化能力。类黄酮B环的羟基化由类黄酮3'-羟化酶(F3'H)和类黄酮3',5'-羟化酶(F3'5'H)催化,并且可能还需要细胞色素b5。我们报道了从葡萄(Vitis vinifera L. cv Shiraz)中鉴定出编码F3'H、F3'5'H和一种假定细胞色素b5的基因,以及它们在果实中的转录调控。通过在矮牵牛(Petunia hybrida)中异位表达证明了基因VvF3'H和VvF3'5'H1的功能,其如预期那样改变了花色和类黄酮组成。VvF3'H在葡萄开花前表达,此时合成3'-羟基化黄酮醇,并且在开花后合成原花青素(PA)时,所有三个基因均表达。在浆果表皮中,所有三个基因在成熟起始期(转色期)表达量低,但在转色期后随着3'-和3',5'-羟基化花青素的积累而增加。VvF3'H和VvCytoB5在种子中表达,但VvF3'5'H1不表达,这与该组织中3'-羟基化PA的积累一致。VvCytoB5的表达与不同葡萄组织中VvF3'H和VvF3'5'H1的表达相关。与红葡萄在成熟期间VvF3'H、VvF3'5'H1和VvCytoB5高表达相反,白葡萄在成熟期间VvF3'5'H1和VvCytoB5的表达极低,这表明转录调控存在差异。我们的结果表明,葡萄中VvF3'H、VvF3'5'H1和VvCytoB5的时间和组织特异性表达与相应羟基化黄酮醇、PA以及花青素的积累相协调。了解类黄酮羟化酶的调控可用于改变水果的类黄酮组成。

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