数字农科院2.0

A KNOX II transcription factor suppresses the NLR immune receptor BRG8-mediated immunity in rice

文献类型: 外文期刊

作者: Xu, Siliang;Wei, Xinghua;Yang, Qinqin;Hu, Dongxiu;Zhang, Yuanyuan;Yuan, Xiaoping;Kang, Fengyu;Wu, Zhaozhong;Yan, Zhiqin;Luo, Xueqin;Sun, Yanfei;Wang, Shan;Feng, Yue;Xu, Qun;Zhang, Mengchen;Yang, Yaolong

作者机构:

关键词: rice;NLR protein;KNOX II protein;rice blast;bacterial blight

期刊名称: PLANT COMMUNICATIONS

ISSN: 2590-3462

年卷期: 2024 年 5 卷 10 期

页码:

收录情况: SCIE(2024版) ; ; CSCD(2023-2024年度)

摘要: Nucleotide-binding site and leucine-rich repeat (NLR) proteins are activated by detecting pathogen effectors, which in turn trigger host defenses and cell death. Although many NLRs have been identified, the mechanisms responsible for NLR-triggered defense responses are still poorly understood. In this study, through a genome-wide association study approach, we identified a novel NLR gene, Blast Resistance Gene 8 (BRG8), BRG8 ), which confers resistance to rice blast and bacterial blight diseases. BRG8 overexpression and complementation lines exhibit enhanced resistance to both pathogens. Subcellular localization assays showed that BRG8 is localized in both the cytoplasm and the nucleus. Additional evidence revealed that nuclear-localized BRG8 can enhance rice immunity without a hypersensitive response (HR)-like phenotype. We also demonstrated that the coiled-coil domain of BRG8 not only physically interacts with itself but also interacts with the KNOX II protein HOMEOBOX ORYZA SATIVA59 (HOS59). Knockout mutants of HOS59 in the BRG8 background show enhanced resistance to Magnaporthe oryzae strain CH171 and Xoo strain CR4, similar to that of the BRG8 background. By contrast, overexpression of HOS59 in the BRG8 background will compromise the HR-like phenotype and resistance response. Further analysis revealed that HOS59 promotes the degradation of BRG8 via the 26S proteasome pathway. Collectively, our study highlights HOS59 as an NLR immune regulator that fine-tunes BRG8-mediated immune responses against pathogens, providing new insights into NLR associations and functions in plant immunity.

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