Sabelleck Björn, Deb Sohini, Levecque Sophie C J, Freh Matthias, Reinstädler Anja, Spanu Pietro D, Thordal-Christensen Hans, Panstruga Ralph
Institute for Biology I, Unit of Plant Molecular Cell Biology, RWTH Aachen University, Aachen 52056, Germany.
Department of Plant and Environmental Sciences, Section for Plant and Soil Sciences, University of Copenhagen, Frederiksberg C 1871 Denmark.
Plant Physiol. 2025 Mar 28;197(4). doi: 10.1093/plphys/kiaf067.
Powdery mildew fungi are serious pathogens affecting many plant species. Their genomes encode extensive repertoires of secreted effector proteins that suppress host immunity. Here, we revised and analyzed the candidate secreted effector protein (CSEP) effectome of the powdery mildew fungus, Blumeria hordei (Bh). We identified seven putative effectors that are broadly conserved in powdery mildew species, suggesting that they are core effectors of these phytopathogens. We showed that one of these effectors, CSEP0214, interacts with the barley (Hordeum vulgare) vacuolar protein-sorting 18 (VPS18) protein, a shared component of the class C core vacuole/endosome tethering (CORVET) and homotypic fusion and protein-sorting (HOPS) endosomal tethering complexes that mediate fusion of early endosomes and multivesicular bodies, respectively, with the central vacuole. Overexpression of CSEP0214 and knockdown of either VPS18, HOPS-specific VPS41, or CORVET-specific VPS8 blocked the vacuolar pathway and the accumulation of the fluorescent vacuolar marker protein (SP)-RFP-AFVY in the endoplasmic reticulum. Moreover, CSEP0214 inhibited the interaction between VPS18 and VPS16, which are both shared components of CORVET as well as HOPS. Additionally, introducing CSEP0214 into barley leaf cells blocked the hypersensitive cell death response associated with resistance gene-mediated immunity, indicating that endomembrane trafficking is required for this process. CSEP0214 expression also prevented callose deposition in cell wall appositions at attack sites and encasements of fungal infection structures. Our results indicate that the powdery mildew core effector CSEP0214 is an essential suppressor of plant immunity.
白粉菌是影响多种植物物种的严重病原体。它们的基因组编码大量抑制宿主免疫的分泌效应蛋白。在此,我们对白粉菌大麦白粉菌(Bh)的候选分泌效应蛋白(CSEP)效应组进行了修订和分析。我们鉴定出七种在白粉菌物种中广泛保守的假定效应蛋白,表明它们是这些植物病原体的核心效应蛋白。我们发现其中一种效应蛋白CSEP0214与大麦(Hordeum vulgare)液泡蛋白分选18(VPS18)蛋白相互作用,VPS18蛋白是C类核心液泡/内体拴系(CORVET)和同型融合与蛋白分选(HOPS)内体拴系复合物的共享组分,分别介导早期内体和多囊泡体与中央液泡的融合。CSEP0214的过表达以及VPS18、HOPS特异性的VPS41或CORVET特异性的VPS8的敲低均阻断了液泡途径以及荧光液泡标记蛋白(SP)-RFP-AFVY在内质网中的积累。此外CSEP0214抑制了VPS18和VPS16之间的相互作用,VPS18和VPS16都是CORVET以及HOPS的共享组分。另外,将CSEP0214导入大麦叶细胞可阻断与抗性基因介导的免疫相关的过敏细胞死亡反应,表明内膜运输是该过程所必需的。CSEP0214的表达还可防止在攻击位点的细胞壁附着处和真菌感染结构的包被中胼胝质的沉积。我们的结果表明,白粉菌核心效应蛋白CSEP0214是植物免疫的重要抑制因子。