Hos2-mediated KatG1 decrotonylation orchestrates ROS scavenging in rice blast infection
Abstract
In plant–pathogen interaction, plants trigger reactive oxygen species (ROS) bursts to defend against pathogen invasion, while pathogens evolved antioxidant systems to scavenge ROS for infection. Our study reveals a regulatory mechanism of ROS adaptation and scavenging in the rice blast fungus Magnaporthe oryzae. We found that KatG1, a bifunctional catalase-peroxidase, acts as a ROS-responsive regulatory enzyme. During infection, the deacetylase Hos2 mediates the decrotonylation of KatG1 at K422, initiating the ROS clearance process. Decrotonylated KatG1 depolymerizes into monomers, interacts with the Hsp70 protein Ssb1, and translocates to the nucleus. Nuclear KatG1 promotes the dissociation of the Atf1-Tup1 complex, activating the expression of Atf1-mediated oxidoreductase genes and enhancing fungal infection. Moreover, we identified a small molecule, orcinol gentiobioside (OGB), that targets KatG1, inhibiting M. oryzae invasion. This study elucidates a regulatory mechanism of ROS metabolism and stress adaptation in plant fungal infections and provides a potential target for fungicide development to control rice blast disease. Plants trigger reactive oxygen species (ROS) bursts to defend against pathogens. Here the authors report that decrotonylation and relocalization of the rice blast fungus KatG1 protein can activate fungal ROS responses and propose targeting of this pathway in fungicide development.
// Source
Authors: Zhiyong Ren, Zhirong Peng, Yong Zhang, Shanjun Tang, Shikun Xiang, Jun Zhu, Xiang Dong, Mengxi Tang, Shimei Zhang, Mengyuan Qin, Zhiguang Qu, Yanling Kong, Junjie Xing, Jingbo Xu, Xiaolin Chen
Institutions: Hunan University of Traditional Chinese Medicine, Huazhong Agricultural University, Hunan Academy of Traditional Chinese Medicine, China National Hybrid Rice R&D Central Hunan Hybrid Rice Reserch Center, State Key Laboratory of Agricultural Microbiology, State Key Laboratory of Hybrid Rice