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首页> 外文期刊>Plant signaling & behavior >Transcriptional control of flavonoid biosynthesis: fine-tuning of the MYB-bHLH-WD40 (MBW) complex.
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Transcriptional control of flavonoid biosynthesis: fine-tuning of the MYB-bHLH-WD40 (MBW) complex.

机译:类黄酮生物合成的转录控制:MYB-bHLH-WD40(MBW)复合物的微调。

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摘要

Flavonoids are plant secondary polyphenolic metabolites and fulfil many vital biological functions, offering a valuable metabolic and genetic model for studying transcriptional control of gene expression. Arabidopsis thaliana mainly accumulates 3 types of flavonoids, including flavonols, anthocyanins, and proanthocyanidins (PAs). Flavonoid biosynthesis involves a multitude of well-characterized enzymatic and regulatory proteins. Three R2R3-MYB proteins (MYB11, MYB12, and MYB111) control flavonol biosynthesis via activating the early biosynthetic steps, whereas the production of anthocyanins and PAs requires the MYBbHLH-WD40 (MBW) complex to activate the late biosynthetic genes. Additional regulators of flavonoid biosynthesis have recently come to light, which interact with R2R3-MYBs or bHLHs to organize or disrupt the formation of the MBW complex, leading to enhanced or compromised flavonoid production. This mini-review gives an overview of how these novel players modulate flavonoid metabolism and thus plant developmental processes and further proposes a fine-tuning mechanism to complete the complex regulatory network controlling flavonoid biosynthesis.
机译:类黄酮是植物的第二多酚代谢产物,具有许多重要的生物学功能,为研究基因表达的转录调控提供了有价值的代谢和遗传模型。拟南芥主要积累3种类型的类黄酮,包括黄酮醇,花青素和原花色素(PAs)。类黄酮的生物合成涉及许多特征明确的酶和调节蛋白。三种R2R3-MYB蛋白(MYB11,MYB12和MYB111)通过激活早期生物合成步骤来控制黄酮醇的生物合成,而花色苷和PA的生产需要MYBbHLH-WD40(MBW)复合物来激活晚期生物合成基因。最近发现了类黄酮生物合成的其他调节剂,它们与R2R3-MYBs或bHLHs相互作用,以组织或破坏MBW复合物的形成,从而导致类黄酮生成增强或受损。这份小型综述概述了这些新型分子如何调节类黄酮代谢,从而调节植物的发育过程,并进一步提出了微调机制,以完成控制类黄酮生物合成的复杂调控网络。

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