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首页> 外文期刊>The Plant Cell >Jasmonate and Phytochrome A Signaling in Arabidopsis Wound and Shade Responses Are Integrated through JAZ1 Stability
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Jasmonate and Phytochrome A Signaling in Arabidopsis Wound and Shade Responses Are Integrated through JAZ1 Stability

机译:茉莉酸和植物色素A信号在拟南芥中的受伤和阴影响应通过JAZ1稳定性得以整合。

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摘要

Jasmonate (JA) activates plant defense, promotes pollen maturation, and suppresses plant growth. An emerging theme in JA biology is its involvement in light responses; here, we examine the interdependence of the JA- and light-signaling pathways in Arabidopsis thaliana. We demonstrate that mutants deficient in JA biosynthesis and signaling are deficient in a subset of high irradiance responses in far-red (FR) light. These mutants display exaggerated shade responses to low, but not high, R/FR ratio light, suggesting a role for JA in phytochrome A (phyA) signaling. Additionally, we demonstrate that the FR light-induced expression of transcription factor genes is dependent on CORONATINE INSENSITIVE1 (COI1), a central component of JA signaling, and is suppressed by JA. phyA mutants had reduced JA-regulated growth inhibition and VSP expression and increased content of cis-(+)-12-oxophytodienoic acid, an intermediate in JA biosynthesis. Significantly, COI1-mediated degradation of JASMONATE ZIM DOMAIN1-beta-glucuronidase (JAZ1-GUS) in response to mechanical wounding and JA treatment required phyA, and ectopic expression of JAZ1-GUS resulted in exaggerated shade responses. Together, these results indicate that JA and phyA signaling are integrated through degradation of the JAZ1 protein, and both are required for plant responses to light and stress.
机译:茉莉(Jasmonate,JA)可以激活植物防御系统,促进花粉成熟,并抑制植物生长。 JA生物学的一个新兴主题是其参与光反应。在这里,我们研究了拟南芥中JA和光信号通路的相互依赖性。我们证明了缺乏JA生物合成和信号传导的突变体在远红(FR)光中的高辐照度响应的子集中是缺乏的。这些突变体对低但不高的R / FR比光表现出夸张的阴影响应,表明JA在植物色素A(phyA)信号传导中的作用。此外,我们证明FR光诱导的转录因子基因表达依赖于JA信号传导的核心成分CORONATINE INSENSITIVE1(COI1),并被JA抑制。 phyA突变体降低了JA调控的生长抑制和VSP表达,并增加了JA生物合成的中间体顺式(+)-12-氧代乙二酸的含量。值得注意的是,COI1介导的JASMONATE ZIMDOMAIN1-β-葡糖醛酸糖苷酶(JAZ1-GUS)的降解对机械性损伤和JA治疗的响应需要phyA,而JAZ1-GUS的异位表达导致阴影反应过度。总之,这些结果表明JA和phyA信号通过JAZ1蛋白的降解而整合在一起,并且都是植物对光和胁迫的响应所必需的。

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