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首页> 外文期刊>The Plant Cell >An Arabidopsis Plasma Membrane Proton ATPase Modulates JA Signaling and Is Exploited by the Pseudomonas syringae Effector Protein AvrB for Stomatal Invasion
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An Arabidopsis Plasma Membrane Proton ATPase Modulates JA Signaling and Is Exploited by the Pseudomonas syringae Effector Protein AvrB for Stomatal Invasion

机译:拟南芥血浆膜质子ATPase调节JA信号,并被丁香假单胞菌效应蛋白AvrB开发用于气孔入侵。

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摘要

Stomata are natural openings through which many pathogenic bacteria enter plants. Successful bacterial pathogens have evolved various virulence factors to promote stomatal opening. Here, we show that the Pseudomonas syringae type III effector protein AvrB induces stomatal opening and enhances bacterial virulence in a manner dependent on RPM1-INTERACTING4 (RIN4), which promotes stomatal opening by positively regulating the Arabidopsis plasma membrane H+-ATPase (AHA1), which is presumed to directly regulate guard cell turgor pressure. In support of a role of AHA1 in AvrB-induced stomatal opening, AvrB enhances ATPase activity in plants. Unexpectedly, AHA1 promotes the interaction between the jasmonate (JA) receptor CORONATINE INSENSITIVE1 (COI1) and JASMONATE ZIM-DOMAIN (JAZ) proteins and enhances JA signaling. JA signaling is required for optimum stomatal infection in AHA1-active plants. Similarly, AvrB also induces the COI1-JAZ9 interaction and the degradation of multiple JAZ proteins. AvrB-induced stomatal opening and virulence require the canonical JA signaling pathway, which involves the COI1 and NAC transcription factors. The findings thus point to a previously unknown pathway exploited by P. syringae that acts upstream of COI1 to regulate JA signaling and stomatal opening.
机译:气孔是许多病原细菌通过其进入植物的自然开口。成功的细菌病原体已经进化出多种毒力因子来促进气孔开放。在这里,我们显示丁香假单胞菌III型效应蛋白AvrB诱导气孔开放并以依赖于RPM1-INTERACTING4(RIN4)的方式增强细菌毒力,而RPM1-INTERACTING4通过积极调节拟南芥的质膜H + -ATPase(AHA1)促进气孔开放,推测其直接调节保卫细胞膨胀压力。为了支持AHA1在AvrB诱导的气孔开放中的作用,AvrB增强了植物中的ATPase活性。出乎意料的是,AHA1促进了茉莉酸(JA)受体CORONATINE INSENSITIVE1(COI1)和茉莉酸ZIM-DOMAIN(JAZ)蛋白之间的相互作用,并增强了JA信号传导。 JA信号是AHA1活性植物中最佳气孔感染所必需的。类似地,AvrB还诱导COI1-JAZ9相互作用以及多种JAZ蛋白的降解。 AvrB诱导的气孔开放和毒力需要规范的JA信号通路,该通路涉及COI1和NAC转录因子。因此,该发现指向由丁香假单胞菌利用的先前未知的途径,该途径在COI1的上游起作用以调节JA信号传导和气孔开放。

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