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首页> 外文期刊>The Plant Cell >Negative Regulation of Anthocyanin Biosynthesis in Arabidopsis by a miR156-Targeted SPL Transcription Factor
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Negative Regulation of Anthocyanin Biosynthesis in Arabidopsis by a miR156-Targeted SPL Transcription Factor

机译:靶向miR156的SPL转录因子对拟南芥中花色苷生物合成的负调控。

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Flavonoids are synthesized through an important metabolic pathway that leads to the production of diverse secondary metabolites, including anthocyanins, flavonols, flavones, and proanthocyanidins. Anthocyanins and flavonols are derived from Phe and share common precursors, dihydroflavonols, which are substrates for both flavonol synthase and dihydroflavonol 4-reductase. In the stems of Arabidopsis thaliana, anthocyanins accumulate in an acropetal manner, with the highest level at the junction between rosette and stem. We show here that this accumulation pattern is under the regulation of miR156-targeted SQUAMOSA PROMOTER BINDING PROTEIN-LIKE (SPL) genes, which are deeply conserved and known to have important roles in regulating phase change and flowering. Increased miR156 activity promotes accumulation of anthocyanins, whereas reduced miR156 activity results in high levels of flavonols. We further provide evidence that at least one of the miR156 targets, SPL9, negatively regulates anthocyanin accumulation by directly preventing expression of anthocyanin biosynthetic genes through destabilization of a MYB-bHLH-WD40 transcriptional activation complex. Our results reveal a direct link between the transition to flowering and secondary metabolism and provide a potential target for manipulation of anthocyanin and flavonol content in plants.
机译:类黄酮是通过重要的代谢途径合成的,该途径导致产生多种次级代谢产物,包括花青素,黄酮醇,黄酮和原花色素。花青素和黄酮醇衍生自苯丙氨酸,并具有共同的前体二氢黄酮醇,它们是黄酮醇合酶和二氢黄酮醇4-还原酶的底物。在拟南芥的茎中,花青素以顶瓣方式积累,在花环和茎之间的交界处具有最高水平。我们在这里表明,这种积累模式是在miR156靶向的SQUAMOSA启动子结合蛋白样(SPL)基因的调控下,该基因被高度保守并已知在调控相变和开花中具有重要作用。增加的miR156活性促进花色苷的积累,而降低的miR156活性导致高水平的黄酮醇。我们进一步提供的证据表明,miR156靶标中的至少一个SPL9通过MYB-bHLH-WD40转录激活复合物的失稳直接阻止花青素生物合成基因的表达,从而负面调节花青素的积累。我们的结果揭示了过渡到开花和次级代谢之间的直接联系,并为操纵植物中的花色苷和黄酮含量提供了潜在的靶标。

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