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A canonical protein complex controls immune homeostasis and multipathogen resistance

作者:Yue Wu, Weiying Xu, Guoyan Zhao, Ziyao Lei, Kui Li, Jiyun Liu, Shijia Huang, Junli Wang, Xiangbin Zhong, Xin Yin, Yuandong Wang, Haochen Zhang, He Yang, Zian Ye, Yonggang Meng, Xiaoyu Chang, Hui Lin, Xin Wang, Yuan‐Yuan Gao, Jijie Chai, Jane E. Parker, Yiwen Deng, Yu Zhang, Mingjun Gao, Zuhua He · 发表于:Science · 年份:2024 · DOI:10.1126/science.adr2138 · 被引用次数:70 · 研究领域:Endoplasmic Reticulum Stress and Disease、Autophagy in Disease and Therapy、DNA Repair Mechanisms

The calcium (Ca 2+ ) sensor ROD1 (RESISTANCE OF RICE TO DISEASES1) is a master regulator of immunity in rice. By screening suppressors of rod1 mutants, we show that ROD1 governs immune homeostasis by surveilling the activation of a canonical immune pathway. Mutations in OsTIR ( TIR-only protein ), OsEDS1 ( enhanced disease susceptibility 1 ), OsPAD4 ( phytoalexin deficient 4 ), and OsADR1 ( activated disease resistance 1 ) all abolish enhanced disease resistance of rod1 plants. OsTIR catalyzes the production of second messengers 2′-(5″-phosphoribosyl)-5′-adenosine monophosphate (pRib-AMP) and diphosphate (pRib-ADP), which trigger formation of an OsEDS1-OsPAD4-OsADR1 (EPA) immune complex. ROD1 interacts with OsTIR and inhibits its enzymatic activity, whereas mutation of ROD1 leads to constitutive activation of the EPA complex. Thus, we unveil an immune network that fine-tunes immune homeostasis and multipathogen resistance in rice.