首页> 美国卫生研究院文献>Molecular Plant Pathology >Powdery mildew effectors AVRA1 and BEC1016 target the ER J‐domain protein HvERdj3B required for immunity in barley
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Powdery mildew effectors AVRA1 and BEC1016 target the ER J‐domain protein HvERdj3B required for immunity in barley

机译:白粉病效应子 AVRA1 和 BEC1016 靶向大麦免疫所需的 ER J 结构域蛋白 HvERdj3B

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摘要

The barley powdery mildew fungus, Blumeria hordei (Bh), secretes hundreds of candidate secreted effector proteins (CSEPs) to facilitate pathogen infection and colonization. One of these, CSEP0008, is directly recognized by the barley nucleotide‐binding leucine‐rich‐repeat (NLR) receptor MLA1 and therefore is designated AVRA1. Here, we show that AVRA1 and the sequence‐unrelated Bh effector BEC1016 (CSEP0491) suppress immunity in barley. We used yeast two‐hybrid next‐generation interaction screens (Y2H‐NGIS), followed by binary Y2H and in planta protein–protein interactions studies, and identified a common barley target of AVRA1 and BEC1016, the endoplasmic reticulum (ER)‐localized J‐domain protein HvERdj3B. Silencing of this ER quality control (ERQC) protein increased Bh penetration. HvERdj3B is ER luminal, and we showed using split GFP that AVRA1 and BEC1016 translocate into the ER signal peptide‐independently. Overexpression of the two effectors impeded trafficking of a vacuolar marker through the ER; silencing of HvERdj3B also exhibited this same cellular phenotype, coinciding with the effectors targeting this ERQC component. Together, these results suggest that the barley innate immunity, preventing Bh entry into epidermal cells, requires ERQC. Here, the J‐domain protein HvERdj3B appears to be essential and can be regulated by AVRA1 and BEC1016. Plant disease resistance often occurs upon direct or indirect recognition of pathogen effectors by host NLR receptors. Previous work has shown that AVRA1 is directly recognized in the cytosol by the immune receptor MLA1. We speculate that the AVRA1 J‐domain target being inside the ER, where it is inapproachable by NLRs, has forced the plant to evolve this challenging direct recognition.
机译:大麦白粉病真菌 Blumeria hordei (Bh) 分泌数百种候选分泌效应蛋白 (CSEP) 以促进病原体感染和定植。其中一种 CSEP0008 被大麦核苷酸结合亮氨酸富集重复序列 (NLR) 受体 MLA1 直接识别,因此被命名为 AVRA1。在这里,我们表明 AVRA1 和序列无关的 Bh 效应子 BEC1016 (CSEP0491) 抑制大麦中的免疫力。我们使用酵母双杂交下一代相互作用筛选 (Y2H-NGIS),然后是二元 Y2H 和植物蛋白-蛋白质相互作用研究,并确定了 AVRA1 和 BEC1016 的共同大麦靶标,即内质网 (ER) 定位的 J 结构域蛋白 HvERdj3B。沉默这种 ER 质控 (ERQC) 蛋白增加了 Bh 渗透。HvERdj3B 是 ER 腔腔,我们使用分裂的 GFP 表明 AVRA1 和 BEC1016 不依赖地转位到 ER 信号肽中。两个效应子的过表达阻碍了液泡标志物通过 ER 的运输;HvERdj3B 的沉默也表现出相同的细胞表型,与靶向该 ERQC 成分的效应子一致。总之,这些结果表明,阻止 Bh 进入表皮细胞的大麦先天免疫需要 ERQC。在这里,J 结构域蛋白 HvERdj3B 似乎是必不可少的,可以受 AVRA1 和 BEC1016 的调节。植物抗病性通常发生在宿主 NLR 受体直接或间接识别病原体效应子时。以前的工作表明,AVRA1 在胞质溶胶中被免疫受体 MLA1 直接识别。我们推测 AVRA1 J 结构域靶标位于 ER 内部,NLR 无法接近,这迫使植物进化出这种具有挑战性的直接识别。

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