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热休克蛋白90.2(HSP90.2)调控2Q2介导的小麦对白粉病的抗性。

HSP90.2 modulates 2Q2-mediated wheat resistance against powdery mildew.

作者信息

Yan Yan, Guo Yue-Ting, Chang Chao-Yan, Li Xiao-Ming, Zhang Mei-Qi, Ding Ci-Hang, Cui Dangqun, Sun Congwei, Ren Yan, Wang Meng-Lu, Xie Chaojie, Ni Zhongfu, Sun Qixin, Chen Feng, Gou 缑金营 Jin-Ying

机构信息

National Key Laboratory of Wheat and Maize Crop Science/CIMMYT-China Wheat and Maize Improvement Joint Center/College of Agronomy, Henan Agricultural University, Zhengzhou, China.

School of Life Sciences, Fudan University, Shanghai, China.

出版信息

Plant Cell Environ. 2023 Jun;46(6):1935-1945. doi: 10.1111/pce.14579. Epub 2023 Mar 20.

Abstract

Wheat (Triticum aestivum L.) is a critical food crop feeding the world, but pathogens threaten its production. Wheat Heat Shock Protein 90.2 (HSP90.2) is a pathogen-inducible molecular chaperone folding nascent preproteins. Here, we used wheat HSP90.2 to isolate clients regulated at the posttranslational level. Tetraploid wheat hsp90.2 knockout mutant was susceptible to powdery mildew, while the HSP90.2 overexpression line was resistant, suggesting that HSP90.2 was essential for wheat resistance against powdery mildew. We next isolated 1500 clients of HSP90.2, which contained a wide variety of clients with different biological classifications. We utilized 2Q2, a nucleotide-binding leucine repeat-rich protein, as a model to investigate the potential of HSP90.2 interactome in fungal resistance. The transgenic line co-suppressing 2Q2 was more susceptible to powdery mildew, suggesting 2Q2 as a novel Pm-resistant gene. The 2Q2 protein resided in chloroplasts, and HSP90.2 played a critical role in the accumulation of 2Q2 in thylakoids. Our data provided over 1500 HSP90.2 clients with a potential regulation at the protein folding process and contributed a nontypical approach to isolate pathogenesis-related proteins.

摘要

小麦(Triticum aestivum L.)是养活全球人口的关键粮食作物,但病原体威胁着其产量。小麦热休克蛋白90.2(HSP90.2)是一种病原体诱导型分子伴侣,可折叠新生前体蛋白。在此,我们利用小麦HSP90.2分离在翻译后水平受到调控的客户蛋白。四倍体小麦hsp90.2敲除突变体对白粉病敏感,而HSP90.2过表达株系具有抗性,这表明HSP90.2对小麦抗白粉病至关重要。接下来,我们分离出了1500个HSP90.2的客户蛋白,其中包含各种具有不同生物学分类的客户蛋白。我们以富含核苷酸结合亮氨酸重复序列的蛋白2Q2为模型,研究HSP90.2相互作用组在真菌抗性中的潜力。共抑制2Q2的转基因株系对白粉病更敏感,这表明2Q2是一个新的抗白粉病基因。2Q2蛋白存在于叶绿体中,HSP90.2在类囊体中2Q2的积累中起关键作用。我们的数据提供了1500多个可能在蛋白折叠过程中受到调控的HSP90.2客户蛋白,并为分离发病相关蛋白提供了一种非典型方法。

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