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CsMLO8/11是黄瓜茎对白粉病完全敏感所必需的,并与CsCRK2和CsRbohD相互作用。

CsMLO8/11 are required for full susceptibility of cucumber stem to powdery mildew and interact with CsCRK2 and CsRbohD.

作者信息

Dong Shaoyun, Liu Xin, Han Jianan, Miao Han, Beckles Diane M, Bai Yuling, Liu Xiaoping, Guan Jiantao, Yang Ruizhen, Gu Xingfang, Sun Jiaqiang, Yang Xueyong, Zhang Shengping

机构信息

State Key Laboratory of Vegetable Biobreeding, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, 100081, Beijing China.

Department of Plant Sciences, University of California Davis, One Shield Avenue, Davis, CA 95616, USA.

出版信息

Hortic Res. 2023 Dec 29;11(2):uhad295. doi: 10.1093/hr/uhad295. eCollection 2024 Feb.

Abstract

Powdery mildew (PM) is one of the most destructive diseases that threaten cucumber production globally. Efficient breeding of novel PM-resistant cultivars will require a robust understanding of the molecular mechanisms of cucumber resistance against PM. Using a genome-wide association study, we detected a locus significantly correlated with PM resistance in cucumber stem, . A 1449-bp insertion in the coding region at the locus resulted in enhanced stem PM resistance. Knockout mutants of and generated by CRISPR/Cas9 both showed improved PM resistance in the stem, hypocotyl, and leaves, and the double mutant displayed even stronger resistance. We found that reactive oxygen species (ROS) accumulation was higher in the stem of these mutants. Protein interaction assays suggested that CsMLO8 and CsMLO11 could physically interact with CsRbohD and CsCRK2, respectively. Further, we showed that CsMLO8 and CsCRK2 competitively interact with the C-terminus of CsRbohD to affect CsCRK2-CsRbohD module-mediated ROS production during PM defense. These findings provide new insights into the understanding of CsMLO proteins during PM defense responses.

摘要

白粉病(PM)是全球威胁黄瓜生产的最具破坏性的病害之一。高效培育新型抗白粉病品种需要深入了解黄瓜抗白粉病的分子机制。通过全基因组关联研究,我们在黄瓜茎中检测到一个与抗白粉病显著相关的位点。在该位点的编码区有一个1449 bp的插入,导致茎对白粉病的抗性增强。通过CRISPR/Cas9技术产生的该位点及另一位点的敲除突变体在茎、下胚轴和叶片中均表现出对白粉病抗性的提高,双突变体表现出更强的抗性。我们发现这些突变体的茎中活性氧(ROS)积累更高。蛋白质相互作用分析表明,CsMLO8和CsMLO11分别可以与CsRbohD和CsCRK2发生物理相互作用。此外,我们表明CsMLO8和CsCRK2与CsRbohD的C末端竞争性相互作用,以影响在白粉病防御过程中CsCRK2-CsRbohD模块介导的ROS产生。这些发现为理解白粉病防御反应过程中的CsMLO蛋白提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c27b/10894460/ef02d5a5445b/uhad295f1.jpg

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