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Presence/absence, differential expression and sequence polymorphisms between PiAVR2 and PiAVR2-like in Phytophthora infestans determine virulence on R2 plants.

New Phytol.. 2011-08;  191(3):763-76
Eleanor M. Gilroy, Susan Breen, Stephen C. Whisson, Julie Squires, Ingo Hein, Maciej Kaczmarek, Dionne Turnbull, Petra C. Boevink, Anoma Lokossou, Liliana M. Cano, Juan Morales, Anna O. Avrova, Leighton Pritchard, Eva Randall, Alison Lees, Francine Govers, Pieter van West, Sophien Kamoun, Vivianne G. A. A. Vleeshouwers, David E. L. Cooke, Paul R. J. Birch. Plant Pathology, James Hutton Institute, Invergowrie, Dundee DD2 5DA, UK
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摘要

•A detailed molecular understanding of how oomycete plant pathogens evade disease resistance is essential to inform the deployment of durable resistance (R) genes.•Map-based cloning, transient expression in planta, pathogen transformation and DNA sequence variation across diverse isolates were used to identify and characterize PiAVR2 from potato late blight pathogen Phytophthora infestans.•PiAVR2 is an RXLR-EER effector that is up-regulated during infection, accumulates at the site of haustoria formation, and is recognized inside host cells by potato protein R2. Expression of PiAVR2 in a virulent P. infestans isolate conveys a gain-of-avirulence phenotype, indicating that this is a dominant gene ... More

关键词

durable disease resistance; effector-triggered immunity; gene-for-gene; hypersensitive response; potato blight