Phytopathology, School of Life Sciences, Technical University of Munich, Freising, Germany.
Bavarian Center for Biomolecular Mass Spectrometry (BayBioMS), Technical University of Munich, Freising, Germany.
EMBO Rep. 2022 May 4;23(5):e53281. doi: 10.15252/embr.202153281. Epub 2022 Mar 1.
Plant immune responses must be tightly controlled for proper allocation of resources for growth and development. In plants, endogenous signaling peptides regulate developmental and growth-related processes. Recent research indicates that some of these peptides also have regulatory functions in the control of plant immune responses. This classifies these peptides as phytocytokines as they show analogies with metazoan cytokines. However, the mechanistic basis for phytocytokine-mediated regulation of plant immunity remains largely elusive. Here, we identify GOLVEN2 (GLV2) peptides as phytocytokines in Arabidopsis thaliana. GLV2 signaling enhances sensitivity of plants to elicitation with immunogenic bacterial elicitors and contributes to resistance against virulent bacterial pathogens. GLV2 is perceived by ROOT MERISTEM GROWTH FACTOR 1 INSENSITIVE (RGI) receptors. RGI mutants show reduced elicitor sensitivity and enhanced susceptibility to bacterial infection. RGI3 forms ligand-induced complexes with the pattern recognition receptor (PRR) FLAGELLIN SENSITIVE 2 (FLS2), suggesting that RGIs are part of PRR signaling platforms. GLV2-RGI signaling promotes PRR abundance independent of transcriptional regulation and controls plant immunity via a previously undescribed mechanism of phytocytokine activity.
植物的免疫反应必须受到严格控制,以合理分配资源用于生长和发育。在植物中,内源性信号肽调节发育和生长相关过程。最近的研究表明,其中一些肽在植物免疫反应的控制中也具有调节功能。由于这些肽与后生动物细胞因子具有相似性,因此将它们归类为植物细胞因子。然而,植物细胞因子介导的植物免疫调控的机制基础在很大程度上仍难以捉摸。在这里,我们鉴定出拟南芥中的 GOLVEN2 (GLV2) 肽为植物细胞因子。GLV2 信号增强了植物对免疫原性细菌激发子的敏感性,并有助于抵抗毒性细菌病原体。GLV2 被根分生组织生长因子 1 不敏感 (RGI) 受体感知。RGI 突变体对激发子的敏感性降低,对细菌感染的敏感性增强。RGI3 与模式识别受体 (PRR) 鞭毛蛋白敏感 2 (FLS2) 形成配体诱导复合物,表明 RGIs 是 PRR 信号平台的一部分。GLV2-RGI 信号促进 PRR 丰度,而不依赖于转录调节,并通过以前未描述的植物细胞因子活性机制控制植物免疫。