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Candidate Effector Proteins of the Rust Pathogen Melampsora larici-populina Target Diverse Plant Cell Compartments

机译:耐久性病原体Melampsora larici-populina靶的候选效应蛋白靶向植物细胞室

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摘要

Rust fungi are devastating crop pathogens that deliver effector proteins into infected tissues to modulate plant functions and promote parasitic growth. The genome of the poplar leaf rust fungus Melampsora larici-populina revealed a large catalog of secreted proteins, some of which have been considered candidate effectors. Unraveling how these proteins function in host cells is a key to understanding pathogenicity mechanisms and developing resistant plants. In this study, we used an effectoromics pipeline to select, clone, and express 20 candidate effectors in Nicotiana benthamiana leaf cells to determine their subcellular localization and identify the plant proteins they interact with. Confocal microscopy revealed that six candidate effectors target the nucleus, nucleoli, chloroplasts, mitochondria, and discrete cellular bodies. We also used coimmunoprecipitation (coIP) and mass spectrometry to identify 606 N. benthamiana proteins that associate with the candidate effectors. Five candidate effectors specifically associated with a small set of plant proteins that may represent biologically relevant interactors. We confirmed the interaction between the candidate effector MLP124017 and TOPLESS-related protein 4 from poplar by in planta coIP. Altogether, our data enable us to validate effector proteins from M. larici-populina and reveal that these proteins may target multiple compartments and processes in plant cells. It also shows that N. benthamiana can be a powerful heterologous system to study effectors of obligate biotrophic pathogens.
机译:RUDR真菌是毁灭性的作物病原体,将效应蛋白递送到受感染的组织中以调节植物功能并促进寄生生长。杨树叶锈菌真菌的基因组Melampsora Larici-populina揭示了一种分泌蛋白的大目录,其中一些已被认​​为是候选效果。解开这些蛋白质在宿主细胞中的功能是如何理解致病机制和显影抗性植物的关键。在这项研究中,我们使用了效应器管道来选择,克隆和表达尼古拉·宾亚叶片细胞中的20个候选效果,以确定其亚细胞定位并鉴定它们与之相互作用的植物蛋白质。共聚焦显微镜揭示了六个候选效应靶向核,核仁,叶绿体,线粒体和离散的细胞体。我们还使用CoImMunopropipipitipation(COIP)和质谱法以鉴定与候选效应助剂相关的606n.Benthamiana蛋白。与一小组植物蛋白有特异性相关的五种候选效应,其可以代表生物相关交互运动器。我们在Planta Coop中确认了候选效应MLP124017和露珠相关蛋白4之间的相互作用。完全,我们的数据使我们能够验证来自M. larici-populina的效应蛋白,并揭示这些蛋白质可以靶向植物细胞中的多个隔室和过程。它还表明,N. Benthamiana可以是一种强大的异源系统,以研究迫使迫使脂肪养殖病原体的效果。

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