1 Departamento de Microbiología, Facultad de Ciencias, Universidad de Málaga and Instituto de Hortofruticultura Subtropical y Mediterránea "La Mayora"-Universidad de Málaga-Consejo Superior de Investigaciones Científicas (IHSM-UMA-CSIC), 29071 Málaga, Spain.
2 Departamento de Biología Molecular y Bioquímica, Facultad de Ciencias, Universidad de Málaga, 29071 Málaga, Spain; and.
Mol Plant Microbe Interact. 2018 Sep;31(9):914-931. doi: 10.1094/MPMI-12-17-0318-R. Epub 2018 Jul 13.
Podosphaera xanthii is the main causal agent of powdery mildew disease in cucurbits. In a previous study, we determined that P. xanthii expresses approximately 50 Podosphaera effector candidates (PECs), identified based on the presence of a predicted signal peptide and the absence of functional annotation. In this work, we used host-induced gene silencing (HIGS), employing Agrobacterium tumefaciens as a vector for the delivery of the silencing constructs (ATM-HIGS), to identify genes involved in early plant-pathogen interaction. The analysis of seven selected PEC-encoding genes showed that six of them, PEC007, PEC009, PEC019, PEC032, PEC034, and PEC054, are required for P. xanthii pathogenesis, as revealed by reduced fungal growth and increased production of hydrogen peroxide by host cells. In addition, protein models and protein-ligand predictions allowed us to identify putative functions for these candidates. The biochemical activities of PEC019, PEC032, and PEC054 were elucidated using their corresponding proteins expressed in Escherichia coli. These proteins were confirmed as phospholipid-binding protein, α-mannosidase, and cellulose-binding protein. Further, BLAST searches showed that these three effectors are widely distributed in phytopathogenic fungi. These results suggest novel targets for fungal effectors, such as host-cell plasma membrane, host-cell glycosylation, and damage-associated molecular pattern-triggered immunity.
蔓桔球腔菌是葫芦科作物白粉病的主要致病菌。在之前的研究中,我们确定蔓桔球腔菌大约表达 50 种效应物候选蛋白(PECs),这些候选蛋白是基于存在预测的信号肽和缺乏功能注释而被鉴定出来的。在这项工作中,我们使用了寄主诱导基因沉默(HIGS),利用根癌农杆菌作为载体来传递沉默构建体(ATM-HIGS),以鉴定参与早期植物-病原菌相互作用的基因。对七个选定的 PEC 编码基因的分析表明,其中六个基因,PEC007、PEC009、PEC019、PEC032、PEC034 和 PEC054,对于蔓桔球腔菌的致病力是必需的,这表现为真菌生长减少和寄主细胞中过氧化氢的产生增加。此外,蛋白质模型和蛋白-配体预测使我们能够确定这些候选物的可能功能。PEC019、PEC032 和 PEC054 的生化活性是通过在大肠杆菌中表达相应的蛋白质来阐明的。这些蛋白质被证实为磷脂结合蛋白、α-甘露糖苷酶和纤维素结合蛋白。此外,BLAST 搜索表明这三个效应子在植物病原真菌中广泛分布。这些结果表明了真菌效应子的新靶标,如寄主细胞质膜、寄主细胞糖基化和损伤相关分子模式触发的免疫。