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R2R3 MYB transcription factors: Key regulators of the flavonoid biosynthetic pathway in grapevine

机译:R2R3 MYB转录因子:葡萄中类黄酮生物合成途径的关键调控因子

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摘要

Flavonoids compose one of the most abundant and important subgroups of secondary metabolites with more than 6,000 compounds detected so far in higher plants. They are found in various compositions and concentrations in nearly all plant tissues. Besides the attraction of pollinators and dispersers to fruits and flowers, flavonoids also protect against a plethora of stresses including pathogen attack, wounding and UV irradiation. Flavonoid content and composition of fruits such as grapes, bilberries, strawberries and apples as well as food extracts such as green tea, wine and chocolate have been associated with fruit quality including taste, colour and health-promoting effects. To unravel the beneficial potentials of flavonoids on fruit quality, research has been focused recently on the molecular basis of flavonoid biosynthesis and regulation in economically important fruit-producing plants such as grapevine (Vitis vinifera L.). Transcription factors and genes encoding biosynthetic enzymes have been characterized, studies that set a benchmark for future research on the regulatory networks controlling flavonoid biosynthesis and diversity. This review summarizes recent advances in the knowledge of regulatory cascades involved in flavonoid biosynthesis in grapevine. Transcriptional regulation of flavonoid biosynthesis during berry development is highlighted, with a particular focus on MYB transcription factors as molecular clocks, key regulators and powerful biotechnological tools to identify novel pathway enzymes to optimize flavonoid content and composition in grapes.
机译:黄酮类化合物是次生代谢产物中最丰富,最重要的亚组之一,迄今为止,在高等植物中已检测出6,000多种化合物。在几乎所有植物组织中都以各种成分和浓度发现它们。除了将传粉剂和分散剂吸引到水果和花朵上之外,类黄酮还可以抵抗多种压力,包括病原体侵袭,伤害和紫外线辐射。葡萄,越橘,草莓和苹果等水果的黄酮含量和成分以及绿茶,葡萄酒和巧克力等食品提取物的质量与水果的品质有关,包括味道,颜色和促进健康的作用。为了揭示类黄酮对果实品质的有益潜力,最近的研究集中在经济上重要的水果生产植物如葡萄(Vitis vinifera L.)中类黄酮生物合成和调控的分子基础上。已经对转录因子和编码生物合成酶的基因进行了表征,这些研究为控制类黄酮生物合成和多样性的调控网络的未来研究奠定了基准。这篇综述总结了与葡萄中类黄酮生物合成有关的调控级联反应的最新进展。着重强调了浆果发育过程中类黄酮生物合成的转录调控,尤其着重于MYB转录因子,如分子钟,关键调节剂和强大的生物技术工具,以鉴定可优化葡萄中类黄酮含量和成分的新型途径酶。

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