生物技术通报 ›› 2025, Vol. 41 ›› Issue (7): 95-105.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0109

• 研究报告 • 上一篇    下一篇

基于WGCNA鉴定大豆抗大豆花叶病毒NAC转录因子及其诱导表达分析

牛景萍1(), 赵婧2, 郭茜2, 王书宏2, 赵晋忠3, 杜维俊2, 殷丛丛3, 岳爱琴2()   

  1. 1.山西农业大学生命科学学院,太谷 030801
    2.山西农业大学农学院,太谷 030801
    3.山西农业大学基础部,太谷 030801
  • 收稿日期:2025-01-26 出版日期:2025-07-26 发布日期:2025-07-22
  • 通讯作者: 岳爱琴,女,博士,教授,研究方向 :大豆遗传与种质创新;E-mail: yueaiqinnd@126.com
  • 作者简介:牛景萍,女,博士,讲师,研究方向 :大豆抗病;E-mail: niujingping@sxau.edu.cn
  • 基金资助:
    山西省农业关键核心技术攻关项目(NYGG27-4);山西省科技重大专项计划“揭榜挂帅”项目子课题(202201140601025-3-06);科技创新2030-重大项目(2023ZD04035);山西省现代农业产业技术体系建设项目(2024CYJSTX05-07);山西农业大学科技创新基金项目(2018YJ29)

Identification and Induced Expression Analysis of Transcription Factors NAC in Soybean Resistance to Soybean Mosaic Virus Based on WGCNA

NIU Jing-ping1(), ZHAO Jing2, GUO Qian2, WANG Shu-hong2, ZHAO Jin-zhong3, DU Wei-jun2, YIN Cong-cong3, YUE Ai-qin2()   

  1. 1.College of Life Sciences, Shanxi Agricultural University, Taigu 030801
    2.College of Agronomy, Shanxi Agricultural University, Taigu 030801
    3.Department of Basic Sciences, Shanxi Agricultural University, Taigu 030801
  • Received:2025-01-26 Published:2025-07-26 Online:2025-07-22

摘要:

目的 挖掘大豆抗大豆花叶病毒(soybean mosaic virus, SMV)病相关的核心转录因子(transcription factors, TFs),为深入解析大豆抗病分子机制和创制抗病品种提供理论依据。 方法 以大豆抗病材料X149和感病材料X97受大豆花叶病毒株系SC15诱导后的转录组数据为基础,利用PlantTFDB v 5.0数据库从转录组中预测全基因组转录因子基因;基于差异表达转录因子基因,通过加权基因共表达网络分析(weighted gene co-expression network analysis, WGCNA)获得抗病转录因子相关模块和抗病核心转录因子;采用String 12.0预测转录因子互作蛋白;利用RT-qPCR分析转录因子受激素(ETH、SA、MeJA和ABA)诱导表达情况。 结果 全基因组含有转录因子的基因有3 170个,其中1 727个属于差异表达基因;WGCNA分析表明1 727个基因被划分为6个转录因子基因共表达模块,其中brown模块和turquoise模块与X149抗性显著相关,2个模块中转录因子基因间连通度最高的核心转录因子为turquoise模块中NAC转录因子GmNAC030基因,turquoise模块中与GmNAC030具有相似表达的NAC转录因子基因有GmNAC043GmNAC085GmNAC092GmNAC101;互作蛋白预测表明,GmNAC030、GmNAC043和GmNAC092互作蛋白均为转录因子,且仅有互作蛋白Glyma.02g131700(bZIP1)、Glyma.16g164800(AP2-EREBP)和Glyma.08G118200(WRKY48)位于模块中。RT-qPCR分析表明GmNAC030主要受MeJA诱导,另外4个NAC转录因子基因主要受MeJA和ETH诱导。 结论 5个NAC转录因子基因GmNAC030、GmNAC043GmNAC085GmNAC092GmNAC101的表达与大豆抗SMV相关且受外源激素MeJA和ETH的诱导。

关键词: 大豆, 大豆花叶病毒, 加权共表达网络分析, NAC转录因子, 表达分析

Abstract:

Objective To identify the hub genes of transcription factors associated with soybean resistance to soybean mosaic virus (SMV), which may provide a theoretical foundation for elucidating molecular mechanism and developing resistant germplasm. Method Using the transcriptome data of soybean disease-resistant material X149 and disease-susceptible material X97 induced by SMV SC15, PlantTFDB v5.0 database was used to predict the transcription factor genes of the whole genome. Weighted gene co-expression network analysis (WGCNA) was applied to identify the resistance-associated modules and hub transcription factors based on differentially expressed transcription factor genes. String 12.0 was for predicitng transcription factor interacting proteins. RT-qPCR was to analyze the expression patterns of transcription factor genes induced by hormones (ETH, SA, MeJA and ABA). Result The whole genome contained 3 170 genes encoding transcription factors, of which 1 727 were differentially expressed. WGCNA analysis revealed that 1 727 genes were divided into six co-expression modules. Notably, the brown and turquoise modules demonstrated significant correlations with X149 resistance. Within the brown and turquoise modules, GmNAC030 in turquoise module, a NAC transcription factor, showed the highest connectivity and was identified as a core transcription factor. Other NAC transcription factor genes in the turquoise module expression were similar to GmNAC030 included GmNAC043, GmNAC085, GmNAC092, and GmNAC101. Prediction of interacting protein indicated that the interacting proteins of GmNAC030, GmNAC043, and GmNAC092 were primarily transcription factors. Specifically, only the interacting proteins Glyma.02g131700 (bZIP1), Glyma.16g164800 (AP2-EREBP), and Glyma.08G118200 (WRKY48) were located within the module. RT-qPCR analysis demonstrated that GmNAC030 expression was predominantly induced by MeJA, while the other four NAC transcription factors were mainly induced by both MeJA and ETH. Conclusion The expression of five NAC transcription factors, GmNAC030, GmNAC043, GmNAC085, GmNAC092 and GmNAC101, is associated with soybean resistance to SMV and can be induced by MeJA and ETH.

Key words: soybean, soybean mosaic virus, WGCNA, NAC transcription factor, expression analysis