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The circadian clock rephases during lateral root organ initiation in Arabidopsis thaliana

机译:拟南芥侧根器官启动过程中的昼夜节律重调

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摘要

The endogenous circadian clock enables organisms to adapt their growth and development to environmental changes. Here we describe how the circadian clock is employed to coordinate responses to the key signal auxin during lateral root (LR) emergence. In the model plant, Arabidopsis thaliana, LRs originate from a group of stem cells deep within the root, necessitating that new organs emerge through overlying root tissues. We report that the circadian clock is rephased during LR development. Metabolite and transcript profiling revealed that the circadian clock controls the levels of auxin and auxin-related genes including the auxin response repressor IAA14 and auxin oxidase AtDAO2. Plants lacking or overexpressing core clock components exhibit LR emergence defects. We conclude that the circadian clock acts to gate auxin signalling during LR development to facilitate organ emergence.
机译:内源性生物钟使生物能够使其生长发育适应环境变化。在这里,我们描述了生物钟如何在侧根(LR)出现期间用于协调对关键信号生长素的响应。在模式植物拟南芥中,LRs来源于根深处的一组干细胞,因此需要新的器官通过上覆的根组织出现。我们报告说,昼夜节律时钟在LR开发过程中已重新定相。代谢物和转录谱分析表明,昼夜节律控制着生长素和生长素相关基因的水平,包括生长素应答阻遏物IAA14和生长素氧化酶AtDAO2。缺少或过度表达核心时钟成分的植物表现出LR出现缺陷。我们得出的结论是,昼夜节律时钟在LR发育过程中起到门控生长素信号转导器官的作用。

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