首页> 美国卫生研究院文献>Cell Research >Rice RING protein OsBBI1 with E3 ligase activity confers broad-spectrum resistance against Magnaporthe oryzae by modifying the cell wall defence
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Rice RING protein OsBBI1 with E3 ligase activity confers broad-spectrum resistance against Magnaporthe oryzae by modifying the cell wall defence

机译:具有E3连接酶活性的水稻RING蛋白OsBBI1通过修饰细胞壁防御赋予广谱抗稻瘟病菌的抗性

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摘要

Emerging evidence suggests that E3 ligases play critical roles in diverse biological processes, including innate immune responses in plants. However, the mechanism of the E3 ligase involvement in plant innate immunity is unclear. We report that a rice gene, OsBBI1, encoding a RING finger protein with E3 ligase activity, mediates broad-spectrum disease resistance. The expression of OsBBI1 was induced by rice blast fungus Magnaporthe oryzae, as well as chemical inducers, benzothiadiazole and salicylic acid. Biochemical analysis revealed that OsBBI1 protein possesses E3 ubiquitin ligase activity in vitro. Genetic analysis revealed that the loss of OsBBI1 function in a Tos17-insertion line increased susceptibility, while the overexpression of OsBBI1 in transgenic plants conferred enhanced resistance to multiple races of M. oryzae. This indicates that OsBBI1 modulates broad-spectrum resistance against the blast fungus. The OsBBI1-overexpressing plants showed higher levels of H2O2 accumulation in cells and higher levels of phenolic compounds and cross-linking of proteins in cell walls at infection sites by M. oryzae compared with wild-type (WT) plants. The cell walls were thicker in the OsBBI1-overexpressing plants and thinner in the mutant plants than in the WT plants. Our results suggest that OsBBI1 modulates broad-spectrum resistance to blast fungus by modifying cell wall defence responses. The functional characterization of OsBBI1 provides insight into the E3 ligase-mediated innate immunity, and a practical tool for constructing broad-spectrum resistance against the most destructive disease in rice.
机译:新兴证据表明,E3连接酶在多种生物学过程中起着关键作用,包括植物中的先天免疫应答。但是,E3连接酶参与植物固有免疫的机制尚不清楚。我们报告说,水稻基因OsBBI1,编码具有E3连接酶活性的无名指蛋白,介导了广谱抗病性。稻瘟病菌Magnaporthe oryzae以及化学诱导剂苯并噻二唑和水杨酸诱导了OsBBI1的表达。生化分析表明,OsBBI1蛋白在体外具有E3泛素连接酶活性。遗传分析表明,Tos17插入系中OsBBI1功能的丧失增加了敏感性,而转基因植物中OsBBI1的过表达赋予了对米曲霉多族抗性的增强。这表明OsBBI1调节了对瘟真菌的广谱抗性。与野生型(WT)植物相比,过表达OsBBI1的植物在稻瘟病菌感染部位显示出更高水平的H2O2在细胞中的积累和更高水平的酚类化合物以及细胞壁中蛋白质的交联。与WT植物相比,在过表达OsBBI1的植物中细胞壁更厚,而在突变植物中细胞壁更薄。我们的结果表明,OsBBI1通过修饰细胞壁防御反应来调节广谱抗性。 OsBBI1的功能表征提供了对E3连接酶介导的先天免疫力的了解,并且是构建针对水稻最具破坏性疾病的广谱抗性的实用工具。

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