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A functional connection between the clock component TOC1 and abscisic acid signaling pathways

机译:时钟组件TOC1与脱落酸信号通路之间的功能连接

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The hormone abscisic acid (ABA) regulates the stress signals crucial for plant tolerance to adverse environmental conditions. The circadian clock also uses environmental cues for appropriate timing of plant physiology and metabolism. Despite previousstudies showing the connections between ABA and clock signalling pathways, the molecular nodes underlying these connections remained unknown. In a recent study, we have shown that the essential clock component TOCl (Timing of CAB expression 1) regulatesthe diurnal expression of the ABA-related gene ABAR/CHLH/GUN5 by direct binding to its promoter. Treatment with ABA specifically induces TOCl at midday and this induction controls both the phase of TOCl binding and the expression of ABAR. TOCl inductionby ABA is abolished in ABAR RNAi plants revealing a new feedback loop that reciprocally links A BAR and TOCl expression. This regulation is essential for ABA function as TOCl and ABAR overexpressing and mutant plants display altered ABA-mediated tolerance to drought conditions. Notably, TOCl is also implicated in ABA-mediated inhibition of seed germination but in an opposite direction to that observed for dehydration responses. These opposing functions open interesting questions about the spatial and temporal networks connecting ABA and clock signaling pathways.
机译:脱落酸(ABA)调节对于植物对不利环境条件的耐受性至关重要的胁迫​​信号。昼夜节律时钟还利用环境提示来确定植物生理和新陈代谢的适当时机。尽管先前的研究显示了ABA和时钟信号通路之间的联系,但这些联系下的分子节点仍然未知。在最近的研究中,我们已经表明基本时钟成分TOC1(CAB表达1的时间)通过直接与其启动子结合来调节ABA相关基因ABAR / CHLH / GUN5的昼夜表达。用ABA处理在中午特异性诱导TOC1,并且该诱导控制TOC1结合的阶段和ABAR的表达。在ABAR RNAi植物中废除了由ABA引起的TOC1诱导,揭示了一个新的反馈环,该反馈环相互关联A BAR和TOC1表达。该调节对于ABA功能至关重要,因为TOC1和ABAR过表达,而突变植物显示出ABA介导的对干旱条件的耐受性发生了变化。值得注意的是,TOC1也与ABA介导的种子发芽抑制有关,但与脱水反应观察到的方向相反。这些对立的功能提出了有关连接ABA和时钟信号通路的时空网络的有趣问题。

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