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基于转录组和蛋白质组学技术挖掘玉米抗拟轮枝镰孢茎腐病的潜在候选基因

Comprehensive Transcriptome and Proteome Analysis for Mining Maize Defense-related Candidate Genes Against Stalk Rot Caused by Fusarium verticillioides

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【作者】 曹言勇; 程泽强; 朱卫红; 杨文博; 马娟; 李慧敏; 孙新艳; 段灿星; 夏来坤;

【Author】 CAO Yan-yong;CHENG Ze-qiang;ZHU Wei-hong;YANG Wen-bo;MA Juan;LI Hui-min;SUN Xin-yan;DUAN Can-xing;XIA Lai-kun;Institute of Cereal Crops, Henan Academy of Agricultural Sciences/Shennong Laboratory;Institute of Crop Sciences, Chinese Academy of Agricultural Sciences/Key Laboratory of Grain Crop Genetic Resources Evaluation and Utilization;

【通讯作者】 段灿星;夏来坤;

【机构】 河南省农业科学院粮食作物研究所/神农种业实验室; 中国农业科学院作物科学研究所/农业农村部粮食作物基因资源评价利用重点实验室;

【摘要】 通过生理表型检测、转录组测序和蛋白质组学等多种技术,全面鉴定玉米响应F. verticillioides侵染的差异基因(DEGs)和差异蛋白(DEPs),并进行功能和通路的富集分析。生理指标测定结果显示,除了总叶绿素含量在接种后显著降低外,其余指标均显著升高,表明玉米在受到F. verticillioides侵染后,通过激活一系列生理反应以抵抗病原菌的侵袭。富集分析结果显示,DEGs和DEPs主要富集在亚油酸代谢、苯丙类生物合成、谷胱甘肽代谢、淀粉和蔗糖代谢、氨基糖和核苷酸糖代谢等途径中。基于联合分析结果构建了亚油酸途径中的LOXs基因通过合成JA来增强玉米对F. verticillioides抗性的可能作用模型。通过RT-qPCR和PRM验证14个与致病相关的候选基因和蛋白质。

【Abstract】 In this study, we comprehensively identified differentially expressed genes(DEGs) and differentially expressed proteins(DEPs) in maize in response to F. verticillioides infection using phenotypic and physiological characteristics, transcriptome sequencing, and proteomics analysis. Physiological characteristics measurement indicated that total chlorophyll content was decreased whereas other characteristics were obviously increased in maize plants,representing maize defense responses conditioning F. verticillioides infection. Enrichment analysis revealed that DEGs and DEPs were primarily enriched in linoleic acid metabolism, phenylpropanoid biosynthesis, glutathione metabolism, starch and sucrose metabolism, and amino sugar and nucleotide sugar metabolism pathways. Based on the results of combined analyses, a potential model was constructed in which LOXs genes in the linoleic acid pathway enhance maize resistance to F. verticillioides through JA synthesis. Fourteen candidate genes and proteins related to pathogenicity were validated by RT-qPCR and PRM.

【基金】 河南省农业科学院科技创新团队(2024TD40);国家重点研发专项(2021YFD1200700);中国农业科学院农业科技创新工程项目(01-ICS-02)
  • 【文献出处】 玉米科学 ,Journal of Maize Sciences , 编辑部邮箱 ,2025年11期
  • 【分类号】S435.131.4
  • 【下载频次】124
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