Postma Jelle, Liebrand Thomas W H, Bi Guozhi, Evrard Alexandre, Bye Ruby R, Mbengue Malick, Kuhn Hannah, Joosten Matthieu H A J, Robatzek Silke
The Sainsbury Laboratory, Norwich Research Park, Norwich, NR4 7UH, UK.
Laboratory of Phytopathology, Wageningen University, Droevendaalsesteeg 1, 6708 PB, Wageningen, the Netherlands.
New Phytol. 2016 Apr;210(2):627-42. doi: 10.1111/nph.13802. Epub 2016 Jan 14.
The first layer of plant immunity is activated by cell surface receptor-like kinases (RLKs) and proteins (RLPs) that detect infectious pathogens. Constitutive interaction with the SUPPRESSOR OF BIR1 (SOBIR1) RLK contributes to RLP stability and kinase activity. As RLK activation requires transphosphorylation with a second associated RLK, it remains elusive how RLPs initiate downstream signaling. We employed live-cell imaging, gene silencing and coimmunoprecipitation to investigate the requirement of associated kinases for functioning and ligand-induced subcellular trafficking of Cf RLPs that mediate immunity of tomato against Cladosporium fulvum. Our research shows that after elicitation with matching effector ligands Avr4 and Avr9, BRI1-ASSOCIATED KINASE 1/SOMATIC EMBRYOGENESIS RECEPTOR KINASE 3 (BAK1/SERK3) associates with Cf-4 and Cf-9. BAK1/SERK3 is required for the effector-triggered hypersensitive response and resistance of tomato against C. fulvum. Furthermore, Cf-4 interacts with SOBIR1 at the plasma membrane and is recruited to late endosomes upon Avr4 trigger, also depending on BAK1/SERK3. These observations indicate that RLP-mediated resistance and endocytosis require ligand-induced recruitment of BAK1/SERK3, reminiscent of BAK1/SERK3 interaction and subcellular fate of the FLAGELLIN SENSING 2 (FLS2) RLK. This reveals that diverse classes of cell surface immune receptors share common requirements for initiation of resistance and endocytosis.
植物免疫的第一层由检测感染性病原体的细胞表面类受体激酶(RLKs)和蛋白质(RLPs)激活。与BIR1抑制因子(SOBIR1)RLK的组成性相互作用有助于RLP的稳定性和激酶活性。由于RLK激活需要与第二个相关的RLK进行反式磷酸化,RLP如何启动下游信号传导仍不清楚。我们采用活细胞成像、基因沉默和免疫共沉淀来研究相关激酶对介导番茄对番茄叶霉免疫的Cf RLPs功能和配体诱导的亚细胞运输的需求。我们的研究表明,在用匹配的效应子配体Avr4和Avr9诱导后,BRI1相关激酶1/体细胞胚胎发生受体激酶3(BAK1/SERK3)与Cf-4和Cf-9结合。BAK1/SERK3是效应子触发的超敏反应和番茄对番茄叶霉抗性所必需的。此外,Cf-4在质膜上与SOBIR1相互作用,并在Avr4触发后被招募到晚期内体,这也依赖于BAK1/SERK3。这些观察结果表明,RLP介导的抗性和内吞作用需要配体诱导的BAK1/SERK3招募,这让人想起BAK1/SERK3与鞭毛蛋白感应2(FLS2)RLK的相互作用和亚细胞命运。这揭示了不同类别的细胞表面免疫受体在抗性启动和内吞作用方面有共同的需求。