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首页> 外文期刊>The Plant Cell >The Arabidopsis thaliana STYLISH1 Protein Acts as a Transcriptional Activator Regulating Auxin Biosynthesis.
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The Arabidopsis thaliana STYLISH1 Protein Acts as a Transcriptional Activator Regulating Auxin Biosynthesis.

机译:拟南芥STYLISH1蛋白充当调节生长素生物合成的转录激活因子。

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The establishment and maintenance of auxin maxima in vascular plants is regulated by auxin biosynthesis and polar intercellular auxin flow. The disruption of normal auxin biosynthesis in mouse-ear cress (Arabidopsis thaliana) leads to severe abnormalities, suggesting that spatiotemporal regulation of auxin biosynthesis is fundamental for normal growth and development. We have shown previously that the induction of the SHORT-INTERNODES/STYLISH (SHI/STY) family member STY1 results in increased transcript levels of the YUCCA (YUC) family member YUC4 and also higher auxin levels and auxin biosynthesis rates in Arabidopsis seedlings. We have also shown previously that SHI/STY family members redundantly affect development of flowers and leaves. Here, we further examine the function of STY1 by analyzing its DNA and protein binding properties. Our results suggest that STY1, and most likely other SHI/STY members, are DNA binding transcriptional activators that target genes encoding proteins mediating auxin biosynthesis. This suggests that the SHI/STY family members are essential regulators of auxin-mediated leaf and flower development. Furthermore, the lack of a shoot apical meristem in seedlings carrying a fusion construct between STY1 and a repressor domain, SRDX, suggests that STY1, and other SHI/STY members, has a role in the formation and/or maintenance of the shoot apical meristem, possibly by regulating auxin levels in the embryo.
机译:生长素的生物合成和极性的细胞间生长素流动调节着维管植物中最大生长素的建立和维持。鼠耳水芹(Arabidopsis thaliana)中正常植物生长素生物合成的破坏导致严重异常,这表明时空调节植物生长素生物合成是正常生长和发育的基础。先前我们已经表明,对短交界/风格(SHI / STY)家族成员STY1的诱导导致YUCCA(YUC)家族成员YUC4的转录水平升高,并且在拟南芥幼苗中还具有更高的植物生长素水平和植物生长素生物合成速率。先前我们还表明SHI / STY家族成员对花朵和叶子的发育产生了多余的影响。在这里,我们通过分析STY1的DNA和蛋白质结合特性进一步检查其功能。我们的结果表明,STY1和最可能的其他SHI / STY成员是DNA结合转录激活因子,其靶向编码介导生长素生物合成的蛋白质的基因。这表明SHI / STY家族成员是生长素介导的叶和花发育的必需调节剂。此外,在携带STY1和阻遏域SRDX之间融合构建体的幼苗中缺少茎尖分生组织,表明STY1和其他SHI / STY成员在茎尖分生组织的形成和/或维持中具有作用。 ,可能是通过调节胚胎中的生长素水平。

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