效应器
生物
蛋白酶
细胞生物学
免疫系统
信号转导
毒力
免疫
分泌物
基因沉默
水稻
病菌
磷酸化
基因
MAPK/ERK通路
三型分泌系统
蛋白酵素
微生物学
细胞信号
基因表达调控
真菌蛋白
作者
Yuan Fang,Zhaoyun Wang,Wenjing Li,Ji Wu,Jing Chen,Qiutao Xu,Tom Hsiang,Xiaoyang Chen
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-07-15
卷期号:12 (29): eaef1021-eaef1021
标识
DOI:10.1126/sciadv.aef1021
摘要
) is highly susceptible to a variety of devastating fungal diseases. However, whether these phylogenetically distinct fungal pathogens employ conserved effectors to disrupt common immune hubs remains unclear. Here, we identify a conserved virulence strategy in which multiple rice-infecting fungal pathogens employ a subtilisin-like protease effector, SBT1, to suppress host immunity. Upon secretion into plant cells, SBT1 directly targets the key immune signaling component OsMAPKKKα and mediates its degradation in a proteolytic activity-dependent manner. OsMAPKKKα acts in a linear signaling cascade: it is phosphorylated and stabilized by OsRLCK185 at Thr493, and subsequently phosphorylates OsMKK4 to activate downstream MAPK signaling. By degrading OsMAPKKKα, SBT1 disrupts the chitin-triggered immune signaling transduced through the OsCERK1-OsRLCK185-OsMAPKKKα-OsMKK4 module. Importantly, host-induced gene silencing (HIGS) targeting SBT1 confers broad-spectrum resistance against multiple fungal pathogens. Our study unveils a previously unexplored pathogen strategy wherein a secreted effector protease dismantles a central signaling node, and identifies OsMAPKKKα as a promising target for engineering disease-resistant crops.
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