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The soybean R2R3 MYB transcription factor GmMYB100 negatively regulates plant flavonoid biosynthesis

机译:大豆R2R3 MYB转录因子GmMYB100负调控植物类黄酮的生物合成

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Soybean flavonoids, a group of important signaling molecules in plant-environment interaction, ubiquitously exist in soybean and are tightly regulated by many genes. Here we reported that GmMYB100, a gene encoding a R2R3 MYB transcription factor, is involved in soybean flavonoid biosynthesis. GmMYB100 is mainly expressed in flowers, leaves and immature embryo, and its level is decreased after pod ripening. Subcellular localization assay indicates that GmMYB100 is a nuclear protein. GmMYB100 has transactivation ability revealed by a yeast functional assay; whereas bioinformatic analysis suggests that GmMYB100 has a negative function in flavonoid biosynthesis. GmMYB100-overexpression represses the transcript levels of flavonoid-related genes in transgenic soybean hairy roots and Arabidopsis, and inhibits isoflavonoid (soybean) and flavonol (Arabidopsis) production in transgenic plants. Furthermore, the transcript levels of six flavonoid-related genes and flavonoid (isoflavonoid and flavone aglycones) accumulation are elevated in the GmMYB100-RNAi transgenic hairy roots. We also demonstrate that GmMYB100 protein depresses the promoter activities of soybean chalcone synthase and chalcone isomerase. These findings indicate that GmMYB100 is a negative regulator in soybean flavonoid biosynthesis pathway.
机译:大豆类黄酮是植物与环境相互作用中的一组重要信号分子,普遍存在于大豆中,并受到许多基因的严格调控。在这里我们报道了编码R2R3 MYB转录因子的基因GmMYB100与大豆类黄酮的生物合成有关。 GmMYB100主要在花,叶和未成熟的胚中表达,荚果成熟后其水平降低。亚细胞定位测定表明GmMYB100是一种核蛋白。 GmMYB100具有通过酵母功能测定揭示的反式激活能力;而生物信息学分析表明,GmMYB100在类黄酮的生物合成中具有负功能。 GmMYB100过表达抑制转基因大豆毛状根和拟南芥中类黄酮相关基因的转录水平,并抑制转基因植物中异黄酮(大豆)和黄酮醇(拟南芥)的产生。此外,在GmMYB100-RNAi转基因毛状根中,六个类黄酮相关基因和类黄酮(异类黄酮和黄酮苷元)积累的转录水平升高。我们还证明GmMYB100蛋白可抑制大豆查尔酮合酶和查尔酮异构酶的启动子活性。这些发现表明,GmMYB100在大豆类黄酮生物合成途径中是负调节剂。

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