LNKs-RVEs complex ticks in the circadian gating of plant temperature stress responses.

Xiaodong Xu, Qiguang Xie
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Abstract

Recently, Kidokoro et al. found that protein complex LNK3,4-RVE4,8 and LNK1,2-RVE4,8 of the circadian clock modulates plant cold- and high-temperature tolerance, respectively. Here, we reviewed the discovery of LNKs, the dynamically formed morning-phased clock complexes, and their critical role on endogenous circadian rhythms. In addition, we summarized the research work on LNKs with the interacting proteins RVEs, CCA1 in temperature responses and discussed how the circadian clock confer increased fitness via gating the rhythmic expression of their target genes.

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LNKs-RVEs复合体在植物温度胁迫反应的昼夜节律门控中起作用。
最近,Kidokoro等人发现,昼夜节律时钟的蛋白复合物lnk3,4 - rve4,8和LNK1,2- rve4,8分别调节植物的耐寒性和高温性。在这里,我们回顾了LNKs的发现,动态形成的早晨生物钟复合物,以及它们在内源性昼夜节律中的关键作用。此外,我们总结了与RVEs、CCA1蛋白相互作用的LNKs在温度反应中的研究工作,并讨论了生物钟如何通过调控其靶基因的节律性表达来增强适应性。
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