首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Mildew Resistance Locus O Genes CsMLO1 and CsMLO2 Are Negative Modulators of the Cucumis sativus Defense Response to Corynespora cassiicola
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Mildew Resistance Locus O Genes CsMLO1 and CsMLO2 Are Negative Modulators of the Cucumis sativus Defense Response to Corynespora cassiicola

机译:霉菌抗性基因座O基因CsMLO1和CsMLO2是黄瓜对黄瓜棒杆菌防御反应的负调控因子。

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摘要

Corynespora leaf spot caused by Corynespora cassiicola is one of the major diseases in cucumber (Cucumis sativus L.). However, the resistance mechanisms and signals of cucumber to C. cassiicola are unclear. Here, we report that the mildew resistance locus O (MLO) genes, CsMLO1 and CsMLO2, are both negative modulators of the cucumber defense response to C. cassiicola. Subcellular localization analysis showed that CsMLO1 and CsMLO2 are localized in the plasma membrane. Expression analysis indicated that the transcript levels of CsMLO1 and CsMLO2 are linked to the defense response to C. cassiicola. Transient overexpression of either CsMLO1 or CsMLO2 in cucumber cotyledons reduced resistance to C. cassiicola, whereas silencing of either CsMLO1 or CsMLO2 enhanced resistance to C. cassiicola. The relationships of pathogenesis-related proteins, reactive oxygen species (ROS)-associated genes, and abscisic acid (ABA)-related genes to the overexpression and silencing of CsMLO1/CsMLO2 in non-infested cucumber plants were investigated. The results indicated that CsMLO1 mediated resistance against C. cassiicola by regulating the expression of pathogenesis-related proteins and ROS-associated genes, as well as through ABA signaling pathway-associated genes. The CsMLO2-mediated resistance against C. cassiicola primarily involves regulation of the expression of pathogenesis-related proteins. Our findings will guide strategies to enhance the resistance of cucumber to corynespora leaf spot.
机译:棒状杆菌(Corynespora cassiicola)引起的棒状杆菌斑是黄瓜(Cucumis sativus L.)的主要病害之一。但是,黄瓜对C. cassiicola的抗性机理和信号尚不清楚。在这里,我们报告说,霉菌抗性基因座O(MLO)基因CsMLO1和CsMLO2都是黄瓜对C. cassiicola防御反应的负调控因子。亚细胞定位分析表明CsMLO1和CsMLO2定位在质膜中。表达分析表明,CsMLO1和CsMLO2的转录水平与C. cassiicola的防御反应有关。黄瓜子叶中CsMLO1或CsMLO2的瞬时过表达降低了对C. cassicola的抗性,而CsMLO1或CsMLO2的沉默则增强了对C. cassiicola的抗性。在未侵染的黄瓜植株中,病程相关蛋白,活性氧相关基因和脱落酸相关基因与CsMLO1 / CsMLO2 的过表达和沉默之间的关系是调查。结果表明, CsMLO1 介导了对 C的抗性。通过调节致病相关蛋白和ROS相关基因的表达,以及通过ABA信号通路相关基因来调控cassiicola CsMLO2 介导的对 C的抗性。 cassiicola 主要涉及调节发病相关蛋白的表达。我们的发现将指导提高黄瓜对棒茎叶斑病抗性的策略。

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