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Genetic and Molecular Regulation by DELLA Proteins of Trichome Development in Arabidopsis

机译:拟南芥Trichome发育的DELLA蛋白遗传和分子调控

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摘要

Gibberellins (GA) are known to influence phase change in Arabidopsis (Arabidopsis thaliana) as well as the development of trichomes, which are faithful epidermal markers of shoot maturation. They modulate these developmental programs in part by antagonizing DELLA repressors of growth, GIBBERELLIC ACID INSENSITIVE (GAI) and REPRESSOR OF ga1-3 (RGA). In this study, we have probed the relative roles played by RGA, GAI, and two homologs, RGA-LIKE1 (RGL1) and RGL2, in these processes and investigated molecular mechanisms through which they influence epidermal differentiation. We found that the DELLAs act collectively to regulate trichome initiation on all aerial organs and that the onset of their activity is accompanied by the repression of most genes known to regulate trichome production. These effects are consistent with the results of genetic analysis, which conclusively place theses genes downstream of the DELLAs. We find that repression of trichome regulatory genes is rapid, but involves an indirect, rather than a direct, molecular mechanism, which requires de novo protein synthesis. DELLA activity also influences postinitiation events and we show that GAI is a major repressor of trichome branching, a role in which it is antagonized by RGL1 and RGL2. Finally, we report that, in contrast to most other effects, the repression by GA applications of flower trichome initiation is not dependent on RGA, GAI, RGL1, or RGL2. In summary, our data show that DELLA proteins are central to trichome development in Arabidopsis and that their effect can be largely explained by their transcriptional influence on trichome initiation activators.
机译:已知赤霉素(GA)影响拟南芥(Arabidopsis thaliana)的相变以及毛状体的形成,而毛状体是茎成熟的可靠表皮标记。他们通过拮抗生长的DELLA阻遏物,赤霉素敏感性(GAI)和ga1-3阻遏物(RGA)来调节这些发育计划。在这项研究中,我们探讨了RGA,GAI和两个同系物RGA-LIKE1(RGL1)和RGL2在这些过程中的相对作用,并研究了它们影响表皮分化的分子机制。我们发现,DELLAs共同起作用,调节所有气生器官上的毛状体起始,并且其活性的发作伴随着大多数已知的调节毛状体产生的基因的抑制。这些作用与遗传分析的结果一致,后者将这些基因最终置于DELLAs的下游。我们发现毛状体调节基因的抑制是快速的,但涉及间接的而不是直接的分子机制,这需要从头合成蛋白质。 DELLA活性也影响启动后的事件,我们显示GAI是毛状体分支的主要阻遏物,RGL1和RGL2拮抗了该作用。最后,我们报告说,与大多数其他影响相反,GA应用对花毛起始的抑制作用不依赖于RGA,GAI,RGL1或RGL2。总而言之,我们的数据表明,DELLA蛋白是拟南芥中毛状体发育的核心,其作用很大程度上可以通过其对毛状体起始激活因子的转录影响来解释。

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