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Xuetao Shi, Yehui Xiong, Kai Zhang, Yinshan Zhang, Junqi Zhang, Lili Zhang, Yutao Xiao, Guo-Liang Wang, Wende Liu*. The ANIP1-OsWRKY62 module regulates both basal defense and Pi9-mediated immunity against Magnaporthe oryzae in rice. Molecular Plant, 2023, https://doi: 10.1016/j.molp.2023.03.001

文章来源:        点击数: 次      发布时间:2023-03-10

Abstract

During effector-triggered immunity (ETI), rice ( Oryza sativa ) Pi9 functions as an intracellular resistance protein sensing the effector AvrPi9, secreted by the devastating rice blast pathogen  Magnaporthe oryzae . Importantly, the underlying recognition mechanism(s) between Pi9 and AvrPi9 remains elusive. In this study, we identified a rice ubiquitin-like domain-containing protein (UDP), AVRPI9-INTERACTING PROTEIN 1 (ANIP1), which is directly targeted by AvrPi9 and also binds to Pi9 in plants. Phenotypic analysis of  anip1 mutants and plants overexpressing  ANIP1 revealed that ANIP1 negatively modulates rice basal defense against  M. oryzae . ANIP1 undergoes 26S proteasome-mediated degradation, which can be blocked by both AvrPi9 and Pi9. Moreover, ANIP1 physically associates with the rice WRKY transcription factor OsWRKY62, which also interacts with AvrPi9 and Pi9 in plants. In the absence of Pi9, ANIP1 negatively regulates OsWRKY62 abundance, which can be promoted by AvrPi9. Accordingly, knocking out of  OsWRKY62 in a non- Pi9  background decreased immunity against  M. oryzae . However, we also observed that OsWRKY62 plays negative roles in defense against a compatible  M. oryzae strain in  Pi9 -harboring rice. Pi9 binds to ANIP1 and OsWRKY62 to form a complex, which may help to keep Pi9 in an inactive state and weakens rice immunity. Furthermore, using competitive binding assays, we showed that AvrPi9 promotes Pi9 dissociation from ANIP1, which could be an important step towards ETI activation. Taken together, our results reveal an immune strategy where a UDP-WRKY module, targeted by a fungal effector, modulates rice immunity with distinct manners in the presence/absence of the corresponding resistant protein.


Molecular Plant, IF="21.949

https://www.cell.com/molecular-plant/fulltext/S1674-2052(23)00065-5