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辣椒疫霉菌效应物靶向 ACD11 结合伴侣,调节拟南芥中 ROS 介导的防御反应。

A Phytophthora capsici Effector Targets ACD11 Binding Partners that Regulate ROS-Mediated Defense Response in Arabidopsis.

机构信息

Department of Plant Pathology, Nanjing Agricultural University, Nanjing 210095, China.

Department of Plant Pathology, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Mol Plant. 2019 Apr 1;12(4):565-581. doi: 10.1016/j.molp.2019.01.018. Epub 2019 Jan 28.

Abstract

Reactive oxygen species (ROS) play a vital role in plant immune response, but the genes involved in the regulation of ROS are scantily reported. Phytophthora pathogens produce a large number of effectors to promote infection, but the modes of action adopted are largely unknown. Here, we report that RxLR207 could activate ROS-mediated cell death in Nicotiana benthamiana and was essential for virulence of P. capsici. We found that this effector targeted BPA1 (binding partner of ACD11) and four members of BPLs (BPA1-Like proteins) in Arabidopsis, and the bpa1 and bpl mutants had enhanced ROS accumulation and cell death under biotic or abiotic stresses. Furthermore, we showed that BPA1 and several BPLs functioned redundantly in plant immunity to P. capsici. We discovered that BPA1 and all six BPLs interacted with ACD11, and stabilization of ACD11 was impaired in the bpa1, bpl2, bpl3, and bpl4 mutants. RxLR207 could promote the degradation of BPA1, BPL1, BPL2, and BPL4 to disrupt ACD11 stabilization in a 26S proteasome-dependent manner. Taken together, these findings indicate the important roles of Arabidopsis BPA1 and its homologs in ROS homeostasis and defense response, highlighting the usefulness of a pathogen effector-directed approach as a promising strategy for the discovery of novel plant immune regulators.

摘要

活性氧(ROS)在植物免疫反应中起着至关重要的作用,但参与 ROS 调节的基因报道甚少。疫霉菌病原体产生大量效应子来促进感染,但作用方式在很大程度上尚不清楚。在这里,我们报告 RxLR207 可以激活 ROS 介导的细胞死亡在烟草原生质体和疫霉菌的毒力是必不可少的。我们发现,这种效应物靶向 BPA1(ACD11 的结合伴侣)和拟南芥中 BPLs(BPA1 样蛋白)的四个成员,并且 bpa1 和 bpl 突变体在生物或非生物胁迫下表现出增强的 ROS 积累和细胞死亡。此外,我们表明 BPA1 和几个 BPLs在植物对疫霉菌的免疫中具有冗余功能。我们发现 BPA1 和所有六个 BPLs与 ACD11 相互作用,并且 bpa1、bpl2、bpl3 和 bpl4 突变体中 ACD11 的稳定性受损。RxLR207 可以促进 BPA1、BPL1、BPL2 和 BPL4 的降解,以破坏 ACD11 稳定在 26S 蛋白酶体依赖性方式。总之,这些发现表明拟南芥 BPA1 及其同源物在 ROS 动态平衡和防御反应中的重要作用,突出了病原体效应物定向方法作为发现新型植物免疫调节剂的有前途的策略的重要性。

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