A Small Cysteine-Rich Phytotoxic Protein of Phytophthora capsici Functions as Both Plant Defense Elicitor and Virulence Factor

生物 辣椒疫霉 疫霉菌 激发子 毒力 卵菌 毒力因子 微生物学 大豆疫霉 遗传学 基因 植物
作者
Zihui Zhang,Jing-Hao Jin,Gui-Lin Sheng,Yu-Ping Xing,Wang Liu,Xiao Zhou,Yiqing Liu,Xiao‐Ren Chen
出处
期刊:Molecular Plant-microbe Interactions [Scientific Societies]
卷期号:34 (8): 891-903 被引量:14
标识
DOI:10.1094/mpmi-01-21-0025-r
摘要

Small cysteine-rich (SCR) proteins, including fungal avirulence proteins, play important roles in pathogen–plant interactions. SCR protein-encoding genes have been discovered in the genomes of Phytophthora pathogens but their functions during pathogenesis remain obscure. Here, we report the characterization of one Phytophthora capsici SCR protein (namely, SCR82) with similarity to Phytophthora cactorum phytotoxic protein PcF. The scr82 gene has 10 allelic sequences in the P. capsici population. Homologs of SCR82 were not identified in fungi or other organisms but in Phytophthora relative species. Initially, scr82 was weakly expressed during the mycelium, sporangium, and zoospore stages but quickly upregulated when the infection initiated. Both ectopic expression of SCR82 and recombinant yeast-expressed protein (rSCR82) caused cell death on tomato leaves. Upon treatment, rSCR82 induced plant defense responses, including the induction of defense gene expression, reactive oxygen species burst, and callose deposition. Knockout of scr82 in P. capsici by CRISPR/Cas9 severely impaired its virulence on host plants and significantly reduced its resistance against oxidative stress. Inversely, its overexpression increased the pathogen’s virulence and tolerance to oxidative stress. Our results collectively demonstrate that SCR82 functions as both an important virulence factor and plant defense elicitor, which is conserved across Phytophthora spp. [Formula: see text] Copyright © 2021 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license .
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