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Phytophthora infestans RXLR-WY Effector AVR3a Associates with Dynamin-Related Protein 2 Required for Endocytosis of the Plant Pattern Recognition Receptor FLS2

机译:疫霉疫霉菌RXLR-WY效应器AVR3a与动力相关的蛋白2关联的植物模式识别受体FLS2的胞吞作用

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摘要

Pathogens utilize effectors to suppress basal plant defense known as PTI (Pathogen-associated molecular pattern-triggered immunity). However, our knowledge of PTI suppression by filamentous plant pathogens, i.e. fungi and oomycetes, remains fragmentary. Previous work revealed that the co-receptor BAK1/SERK3 contributes to basal immunity against the potato pathogen Phytophthora infestans. Moreover BAK1/SERK3 is required for the cell death induced by P. infestans elicitin INF1, a protein with characteristics of PAMPs. The P. infestans host-translocated RXLR-WY effector AVR3a is known to supress INF1-mediated cell death by binding the plant E3 ligase CMPG1. In contrast, AVR3aKI-Y147del, a deletion mutant of the C-terminal tyrosine of AVR3a, fails to bind CMPG1 and does not suppress INF1-mediated cell death. Here, we studied the extent to which AVR3a and its variants perturb additional BAK1/SERK3-dependent PTI responses in N. benthamiana using the elicitor/receptor pair flg22/FLS2 as a model. We found that all tested variants of AVR3a suppress defense responses triggered by flg22 and reduce internalization of activated FLS2. Moreover, we discovered that AVR3a associates with the Dynamin-Related Protein 2 (DRP2), a plant GTPase implicated in receptor-mediated endocytosis. Interestingly, silencing of DRP2 impaired ligand-induced FLS2 internalization but did not affect internalization of the growth receptor BRI1. Our results suggest that AVR3a associates with a key cellular trafficking and membrane-remodeling complex involved in immune receptor-mediated endocytosis. We conclude that AVR3a is a multifunctional effector that can suppress BAK1/SERK3-mediated immunity through at least two different pathways.
机译:病原体利用效应子抑制基础植物防御,称为PTI(病原体相关分子模式触发的免疫力)。然而,我们对丝状植物病原体即真菌和卵菌抑制PTI的知识仍然是零碎的。先前的工作表明,共受体BAK1 / SERK3有助于抵抗马铃薯病原菌疫霉疫菌的基础免疫。此外,由致病疫霉引发素INF1(一种具有PAMPs特征的蛋白质)诱导的细胞死亡需要BAK1 / SERK3。已知通过感染植物E3连接酶CMPG1,致病疫霉宿主易位的RXLR-WY效应子AVR3a抑制了INF1介导的细胞死亡。相反,AVR3aC端酪氨酸的缺失突变体AVR3aKI-Y147del无法结合CMPG1,并且不能抑制INF1介导的细胞死亡。在这里,我们使用激发子/受体对flg22 / FLS2作为模型,研究了AVR3a及其变体在本氏烟草中干扰其他BAK1 / SERK3依赖性PTI反应的程度。我们发现,所有经过测试的AVR3a变体都能抑制flg22触发的防御反应,并减少激活的FLS2的内在化。此外,我们发现AVR3a与动力相关蛋白2(DRP2)相关,这是一种涉及受体介导的内吞作用的植物GTP酶。有趣的是,DRP2沉默会削弱配体诱导的FLS2内在化,但不会影响生长受体BRI1的内在化。我们的结果表明,AVR3a与参与免疫受体介导的内吞作用的关键细胞运输和膜重塑复合物有关。我们得出结论,AVR3a是一种多功能效应器,可以通过至少两种不同的途径抑制BAK1 / SERK3介导的免疫。

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