首页> 外文期刊>The Plant Cell >Jasmonate regulates the INDUCER OF CBF EXPRESSION-C-REPEAT BINDING FACTOR/DRE BINDING FACTOR1 cascade and freezing tolerance in Arabidopsis.
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Jasmonate regulates the INDUCER OF CBF EXPRESSION-C-REPEAT BINDING FACTOR/DRE BINDING FACTOR1 cascade and freezing tolerance in Arabidopsis.

机译:茉莉酸调节拟南芥中CBF表达-C-重复结合因子/ DRE结合因子的诱导剂级联和抗冻性。

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The INDUCER OF CBF EXPRESSION (ICE)-C-REPEAT BINDING FACTOR/DRE BINDING FACTOR1 (CBF/DREB1) transcriptional pathway plays a critical role in modulating cold stress responses in Arabidopsis thaliana. Dissecting crucial upstream regulatory signals or components of the ICE-CBF/DREB1 cascade will enhance our understanding of plant cold-tolerance mechanisms. Here, we show that jasmonate positively regulates plant responses to freezing stress in Arabidopsis. Exogenous application of jasmonate significantly enhanced plant freezing tolerance with or without cold acclimation. By contrast, blocking endogenous jasmonate biosynthesis and signaling rendered plants hypersensitive to freezing stress. Consistent with the positive role of jasmonate in freezing stress, production of endogenous jasmonate was triggered by cold treatment. In addition, cold induction of genes acting in the CBF/DREB1 signaling pathway was upregulated by jasmonate. Further investigation revealed that several JASMONATE ZIM-DOMAIN (JAZ) proteins, the repressors of jasmonate signaling, physically interact with ICE1 and ICE2 transcription factors. JAZ1 and JAZ4 repress the transcriptional function of ICE1, thereby attenuating the expression of its regulon. Consistent with this, overexpression of JAZ1 or JAZ4 represses freezing stress responses of Arabidopsis. Taken together, our study provides evidence that jasmonate functions as a critical upstream signal of the ICE-CBF/DREB1 pathway to positively regulate Arabidopsis freezing tolerance.
机译:CBF表达(ICE)-C重复绑定因子/ DRE绑定因子1(CBF / DREB1)转录途径的诱导因子在拟南芥中调节冷胁迫响应中起着关键作用。剖析ICE-CBF / DREB1级联的关键上游调控信号或成分将增强我们对植物耐寒性机制的了解。在这里,我们显示茉莉酸酯积极调节植物对拟南芥中冰冻胁迫的反应。不论是否进行冷驯化,茉莉酸酯的外源施用都能显着提高植物的耐冻性。相比之下,阻断内源性茉莉酸酯的生物合成和发信号使植物对冷冻胁迫变得高度敏感。与茉莉酸酯在冷冻应激中的积极作用一致,内源性茉莉酸酯的产生是由冷处理触发的。此外,茉莉酸上调了CBF / DREB1信号通路中基因的冷诱导。进一步的研究表明,几种茉莉酸信号素(JAZ)蛋白(茉莉酸信号传导的阻遏物)与ICE1和ICE2转录因子发生物理相互作用。 JAZ1和JAZ4抑制ICE1的转录功能,从而减弱其调节子的表达。与此相一致,JAZ1或JAZ4的过表达抑制拟南芥的冰冻应激反应。综上所述,我们的研究提供了证据,茉莉酸酯是ICE-CBF / DREB1通路的一个关键上游信号,可以积极调节拟南芥的耐寒性。

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