首页> 外文期刊>The Plant Cell >Phosphorylation of FAR-RED ELONGATED HYPOCOTYL1 is a key mechanism defining signaling dynamics of phytochrome A under red and far-red light in Arabidopsis.
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Phosphorylation of FAR-RED ELONGATED HYPOCOTYL1 is a key mechanism defining signaling dynamics of phytochrome A under red and far-red light in Arabidopsis.

机译:FAR-红色加长的hypocotyyl1的磷酸化是定义拟南芥中红光和远红光下植物色素A信号传导动态的关键机制。

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Emerging plants have to adapt to a high ratio of far-red light (FR)/red light (R) light in the canopy before they reach the R-enriched direct sunlight. Phytochrome A (phyA) is the single dominant photoreceptor in young Arabidopsis thaliana seedlings that initiates photomorphogenesis in response to a FR-enriched environment and transduces increasing R signals to early responsive genes. To date, how phyA differentially transmits FR and R signals to downstream genes remains obscure. Here, we present a phyA pathway in which FAR-RED ELONGATED HYPOCOTYL1 (FHY1), an essential partner of phyA, directly guides phyA to target gene promoters and coactivates transcription. Furthermore, we identified two phosphorylation sites on FHY1, Ser-39 and Thr-61, whose phosphorylation by phyA under R inhibits phyA signaling at each step of its pathway. Deregulation of FHY1 phosphorylation renders seedlings colorblind to FR and R. Finally, we show that the weaker phyA response resulting from FHY1 phosphorylation ensures the seedling deetiolation process in response to a R-enriched light condition. Collectively, our results reveal FHY1 phosphorylation as a key mechanism for FR/R spectrum-specific responses in plants and an essential event for plant adaption to changing light conditions in nature.
机译:新兴植物必须在冠层中适应高比例的远红光(FR)/红光(R)光,然后才能到达富含R的直射阳光下。植物色素A(phyA)是年轻的拟南芥幼苗中的单一显性光感受器,可响应富集FR的环境启动光形态发生并将R信号转导至早期响应基因。迄今为止,phyA如何将FR和R信号差异传输至下游基因仍然不清楚。在这里,我们提出了phyA途径,其中phyA的重要伴侣FAR-RED ELONGATED HYPOCOTYL1(FHY1)直接指导phyA靶向靶基因启动子并共激活转录。此外,我们在FHY1,Ser-39和Thr-61上鉴定了两个磷酸化位点,它们在R下被phyA磷酸化,从而抑制了其路径每一步的phyA信号传导。 FHY1磷酸化的失调使幼苗对FR和R色盲。最后,我们表明FHY1磷酸化导致的较弱phyA响应确保了幼苗在富R光条件下的脱化过程。总的来说,我们的结果表明FHY1磷酸化是植物中FR / R光谱特异性反应的关键机制,也是植物适应自然光条件变化的重要事件。

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