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SAG101 Forms a Ternary Complex with EDS1 and PAD4 and Is Required for Resistance Signaling against Turnip Crinkle Virus

机译:SAG101与EDS1和PAD4形成三元复合物,对于萝卜芜菁皱纹病毒的抗性信号传递是必需的

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摘要

EDS1, PAD4, and SAG101 are common regulators of plant immunity against many pathogens. EDS1 interacts with both PAD4 and SAG101 but direct interaction between PAD4 and SAG101 has not been detected, leading to the suggestion that the EDS1-PAD4 and EDS1-SAG101 complexes are distinct. We show that EDS1, PAD4, and SAG101 are present in a single complex in planta. While this complex is preferentially nuclear localized, it can be redirected to the cytoplasm in the presence of an extranuclear form of EDS1. PAD4 and SAG101 can in turn, regulate the subcellular localization of EDS1. We also show that the Arabidopsis genome encodes two functionally redundant isoforms of EDS1, either of which can form ternary complexes with PAD4 and SAG101. Simultaneous mutations in both EDS1 isoforms are essential to abrogate resistance (R) protein-mediated defense against turnip crinkle virus (TCV) as well as avrRps4 expressing Pseudomonas syringae. Interestingly, unlike its function as a PAD4 substitute in bacterial resistance, SAG101 is required for R-mediated resistance to TCV, thus implicating a role for the ternary complex in this defense response. However, only EDS1 is required for HRT-mediated HR to TCV, while only PAD4 is required for SA-dependent induction of HRT. Together, these results suggest that EDS1, PAD4 and SAG101 also perform independent functions in HRT-mediated resistance.
机译:EDS1,PAD4和SAG101是植物抵抗多种病原体的常见调节剂。 EDS1与PAD4和SAG101都相互作用,但未检测到PAD4和SAG101之间的直接相互作用,这提示了EDS1-PAD4和EDS1-SAG101复合物是不同的。我们显示EDS1,PAD4和SAG101存在于植物中的单个复合物中。尽管此复合物优先核定位,但在存在核外形式EDS1的情况下,它可以重定向到细胞质。 PAD4和SAG101可以进而调节EDS1的亚细胞定位。我们还显示,拟南芥基因组编码EDS1的两个功能冗余同工型,其中任何一个都可以与PAD4和SAG101形成三元复合物。这两种EDS1亚型的同时突变对于消除抗(R)蛋白质介导的针对萝卜皱纹病毒(TCV)以及表达丁香假单胞菌avrRps4的防御至关重要。有趣的是,与它在细菌抗性中作为PAD4替代物的功能不同,SAG101是R介导的对TCV的抗性所必需的,因此暗示了三元复合物在该防御反应中的作用。但是,HRT介导的HR至TCV仅需要EDS1,而SA依赖的HRT诱导只需要PAD4。总之,这些结果表明,EDS1,PAD4和SAG101在HRT介导的抗性中也具有独立的功能。

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