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首页> 外文期刊>Plant and cell physiology >Functional diversification of grapevine MYB5a and MYB5b in the control of flavonoid biosynthesis in a petunia anthocyanin regulatory mutant.
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Functional diversification of grapevine MYB5a and MYB5b in the control of flavonoid biosynthesis in a petunia anthocyanin regulatory mutant.

机译:葡萄MYB5a和MYB5b在矮牵牛花色素苷调节突变体中类黄酮生物合成控制中的功能多样化。

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Flavonoids play a key role in grapevine physiology and also contribute substantially to the quality of berries and wines. VvMYB5a and VvMYB5b are R2R3-MYB transcription factors previously proposed to control the spatiotemporal expression of flavonoid structural genes during berry development. We investigated the functions of these two proteins in detail by heterologous expression in a petunia an2 mutant, which has negligible anthocyanin levels in the petals because it lacks the MYB protein PhAN2. We also expressed VvMYBA1, the grapevine ortholog of petunia PhAN2, in the same genetic background. The anthocyanin profiles induced by expressing these transgenes in the petals revealed that VvMYBA1 is the functional ortholog of PhAN2 and that, unlike VvMYB5a, VvMYB5b can partially complement the an2 mutation. Transcriptomic analysis of petals by microarray hybridization and quantitative PCR confirmed that VvMYB5b up-regulates a subset of anthocyanin structural genes, whereas VvMYB5a has a more limited impact on the expression of genes related to anthocyanin biosynthesis. Furthermore, we identified additional specific and common targets of these two regulators, related to vacuolar acidification and membrane remodeling. Taken together, these data provide insight into the role of VvMYB5a and VvMYB5b in flavonoid biosynthesis and provide evidence for additional regulatory roles in distinct pathways
机译:黄酮类化合物在葡萄的生理中起着关键作用,并且也对浆果和葡萄酒的品质做出了重要贡献。 VvMYB5a和VvMYB5b是R2R3-MYB转录因子,以前曾提出在浆果发育过程中控制类黄酮结构基因的时空表达。我们通过在矮牵牛an2突变体中的异源表达详细研究了这两种蛋白的功能,该突变体由于缺少MYB蛋白PhAN2而在花瓣中的花色苷水平可忽略不计。我们还以相同的遗传背景表达了矮牵牛PhAN2的葡萄直系同源基因VvMYBA1。通过在花瓣中表达这些转基因而诱导的花色苷谱显示,VvMYBA1是PhAN2的功能直系同源物,与VvMYB5a不同,VvMYB5b可以部分互补an2突变。通过微阵列杂交和定量PCR对花瓣进行的转录组学分析证实,VvMYB5b上调了花色苷结构基因的一个子集,而VvMYB5a对花色苷生物合成相关基因的表达影响更为有限。此外,我们确定了与液泡酸化和膜重塑有关的这两个调节剂的其他特定和共同目标。综上所述,这些数据可洞悉VvMYB5a和VvMYB5b在类黄酮生物合成中的作用,并为在不同途径中其他调控作用提供证据

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