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一种植物寄生线虫效应蛋白组的起源、分布及进化

The origin, deployment, and evolution of a plant-parasitic nematode effectorome.

作者信息

Molloy Beth, Shin Dio S, Long Jonathan, Pellegrin Clement, Senatori Beatrice, Vieira Paulo, Thorpe Peter J, Damm Anika, Ahmad Mariam, Vermeulen Kerry, Derevnina Lida, Wei Siyuan, Sperling Alexis, Reyes Estévez Estefany, Bruty Samuel, de Souza Victor Hugo Moura, Kranse Olaf Prosper, Maier Tom, Baum Thomas, Eves-van den Akker Sebastian

机构信息

The Crop Science Centre, Department of Plant Sciences, University of Cambridge, Cambridge, United Kingdom.

Mycology and Nematology Genetic Diversity and Biology Laboratory, United States Department of Agriculture-Agricultural Research Service, Beltsville, Maryland, United States of America.

出版信息

PLoS Pathog. 2024 Jul 29;20(7):e1012395. doi: 10.1371/journal.ppat.1012395. eCollection 2024 Jul.

Abstract

Plant-parasitic nematodes constrain global food security. During parasitism, they secrete effectors into the host plant from two types of pharyngeal gland cells. These effectors elicit profound changes in host biology to suppress immunity and establish a unique feeding organ from which the nematode draws nutrition. Despite the importance of effectors in nematode parasitism, there has been no comprehensive identification and characterisation of the effector repertoire of any plant-parasitic nematode. To address this, we advance techniques for gland cell isolation and transcriptional analysis to define a stringent annotation of putative effectors for the cyst nematode Heterodera schachtii at three key life-stages. We define 717 effector gene loci: 269 "known" high-confidence homologs of plant-parasitic nematode effectors, and 448 "novel" effectors with high gland cell expression. In doing so we define the most comprehensive "effectorome" of a plant-parasitic nematode to date. Using this effector definition, we provide the first systems-level understanding of the origin, deployment and evolution of a plant-parasitic nematode effectorome. The robust identification of the effector repertoire of a plant-parasitic nematode will underpin our understanding of nematode pathology, and hence, inform strategies for crop protection.

摘要

植物寄生线虫制约着全球粮食安全。在寄生过程中,它们会从两种咽腺细胞向寄主植物分泌效应蛋白。这些效应蛋白会引起寄主生物学的深刻变化,以抑制免疫反应并建立一个独特的取食器官,线虫从中获取营养。尽管效应蛋白在线虫寄生中很重要,但尚未对任何植物寄生线虫的效应蛋白库进行全面鉴定和表征。为了解决这个问题,我们改进了腺细胞分离和转录分析技术,以在三个关键生命阶段对胞囊线虫甜菜孢囊线虫的假定效应蛋白进行严格注释。我们定义了717个效应基因位点:269个植物寄生线虫效应蛋白的“已知”高可信度同源物,以及448个在腺细胞中高表达的“新”效应蛋白。通过这样做,我们定义了迄今为止植物寄生线虫最全面的“效应蛋白组”。利用这个效应蛋白定义,我们首次从系统层面理解了植物寄生线虫效应蛋白组的起源、部署和进化。对植物寄生线虫效应蛋白库的有力鉴定将支撑我们对线虫病理学的理解,从而为作物保护策略提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d62b/11309470/c274ee8e9821/ppat.1012395.g001.jpg

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