The EDS1–PAD4–ADR1 node mediates Arabidopsis pattern-triggered immunity

拟南芥 生物 效应器 细胞生物学 受体 免疫受体 富含亮氨酸重复 突变体 激酶 基因 遗传学
作者
Rory N. Pruitt,Federica Locci,Friederike Wanke,Lisha Zhang,Svenja C. Saile,Anna Joe,Darya Karelina,Chenlei Hua,Katja Fröhlich,Wei‐Lin Wan,Meijuan Hu,Shaofei Rao,Sara Christina Stolze,Anne Harzen,Andrea A. Gust,Klaus Harter,M.H.A.J. Joosten,Bart P. H. J. Thomma,Jian‐Min Zhou,Jeffery L. Dangl
出处
期刊:Nature [Nature Portfolio]
卷期号:598 (7881): 495-499 被引量:351
标识
DOI:10.1038/s41586-021-03829-0
摘要

Plants deploy cell-surface and intracellular leucine rich-repeat domain (LRR) immune receptors to detect pathogens1. LRR receptor kinases and LRR receptor proteins at the plasma membrane recognize microorganism-derived molecules to elicit pattern-triggered immunity (PTI), whereas nucleotide-binding LRR proteins detect microbial effectors inside cells to confer effector-triggered immunity (ETI). Although PTI and ETI are initiated in different host cell compartments, they rely on the transcriptional activation of similar sets of genes2, suggesting pathway convergence upstream of nuclear events. Here we report that PTI triggered by the Arabidopsis LRR receptor protein RLP23 requires signalling-competent dimers of the lipase-like proteins EDS1 and PAD4, and of ADR1 family helper nucleotide-binding LRRs, which are all components of ETI. The cell-surface LRR receptor kinase SOBIR1 links RLP23 with EDS1, PAD4 and ADR1 proteins, suggesting the formation of supramolecular complexes containing PTI receptors and transducers at the inner side of the plasma membrane. We detected similar evolutionary patterns in LRR receptor protein and nucleotide-binding LRR genes across Arabidopsis accessions; overall higher levels of variation in LRR receptor proteins than in LRR receptor kinases are consistent with distinct roles of these two receptor families in plant immunity. We propose that the EDS1–PAD4–ADR1 node is a convergence point for defence signalling cascades, activated by both surface-resident and intracellular LRR receptors, in conferring pathogen immunity. The authors provide mechanistic insights into the crosstalk between signalling components of pattern-triggered immunity and effector-triggered immunity and their molecular linkers.
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