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通过酵母双杂交筛选获得的莴苣霜霉病菌效应蛋白的寄主互作蛋白

Host interactors of effector proteins of the lettuce downy mildew Bremia lactucae obtained by yeast two-hybrid screening.

作者信息

Pelgrom Alexandra J E, Meisrimler Claudia-Nicole, Elberse Joyce, Koorman Thijs, Boxem Mike, Van den Ackerveken Guido

机构信息

Plant-Microbe Interactions, Department of Biology, Utrecht University, Utrecht, The Netherlands.

Developmental Biology, Department of Biology, Utrecht University, Utrecht, The Netherlands.

出版信息

PLoS One. 2020 May 12;15(5):e0226540. doi: 10.1371/journal.pone.0226540. eCollection 2020.

Abstract

Plant pathogenic bacteria, fungi and oomycetes secrete effector proteins to manipulate host cell processes to establish a successful infection. Over the last decade the genomes and transcriptomes of many agriculturally important plant pathogens have been sequenced and vast candidate effector repertoires were identified using bioinformatic analyses. Elucidating the contribution of individual effectors to pathogenicity is the next major hurdle. To advance our understanding of the molecular mechanisms underlying lettuce susceptibility to the downy mildew Bremia lactucae, we mapped physical interactions between B. lactucae effectors and lettuce candidate target proteins. Using a lettuce cDNA library-based yeast-two-hybrid system, 61 protein-protein interactions were identified, involving 21 B. lactucae effectors and 46 unique lettuce proteins. The top ten interactors based on the number of independent colonies identified in the Y2H and two interactors that belong to gene families involved in plant immunity, were further characterized. We determined the subcellular localization of the fluorescently tagged lettuce proteins and their interacting effectors. Importantly, relocalization of effectors or their interactors to the nucleus was observed for four protein-pairs upon their co-expression, supporting their interaction in planta.

摘要

植物致病细菌、真菌和卵菌分泌效应蛋白以操纵宿主细胞过程,从而成功建立感染。在过去十年中,许多具有农业重要性的植物病原体的基因组和转录组已被测序,并使用生物信息学分析鉴定出大量候选效应蛋白库。阐明单个效应蛋白对致病性的贡献是下一个主要障碍。为了加深我们对生菜对霜霉病菌(Bremia lactucae)易感性的分子机制的理解,我们绘制了B. lactucae效应蛋白与生菜候选靶蛋白之间的物理相互作用。使用基于生菜cDNA文库的酵母双杂交系统,鉴定出61种蛋白质-蛋白质相互作用,涉及21种B. lactucae效应蛋白和46种独特的生菜蛋白质。基于在酵母双杂交中鉴定出的独立菌落数量,对前十大相互作用蛋白以及属于参与植物免疫的基因家族的两个相互作用蛋白进行了进一步表征。我们确定了荧光标记的生菜蛋白及其相互作用效应蛋白的亚细胞定位。重要的是,在共表达时,观察到四对蛋白质中效应蛋白或其相互作用蛋白重新定位到细胞核,这支持了它们在植物体内的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d86/7217486/57da6cea2f31/pone.0226540.g001.jpg

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