GmWRKY40, a member of the WRKY transcription factor genes identified from Glycine max L., enhanced the resistance to Phytophthora sojae

大豆疫霉 WRKY蛋白质结构域 生物 脱落酸 转录因子 茉莉酸甲酯 水杨酸 基因 非生物胁迫 疫霉菌 茉莉酸 遗传学 基因表达 细胞生物学 拟南芥 植物 转录组 突变体
作者
Xiaoxia Cui,Qiang Yan,Gan Shen,Xue Dong,Hai-Tang Wang,Xiaobin Han,Jinming Zhao,Na Guo
出处
期刊:BMC Plant Biology [BioMed Central]
卷期号:19 (1) 被引量:36
标识
DOI:10.1186/s12870-019-2132-0
摘要

Abstract Background The WRKY proteins are a superfamily of transcription factors and members play essential roles in the modulation of diverse physiological processes, such as growth, development, senescence and response to biotic and abiotic stresses. However, the biological roles of the majority of the WRKY family members remains poorly understood in soybean relative to the research progress in model plants. Results In this study, we identified and characterized GmWRKY40 , which is a group IIc WRKY gene. Transient expression analysis revealed that the GmWRKY40 protein is located in the nucleus of plant cells. Expression of GmWRKY40 was strongly induced in soybean following infection with Phytophthora sojae , or treatment with methyl jasmonate, ethylene, salicylic acid, and abscisic acid. Furthermore, soybean hairy roots silencing GmWRKY40 enhanced susceptibility to P. sojae infection compared with empty vector transgenic roots. Moreover, suppression of GmWRKY40 decreased the accumulation of reactive oxygen species (ROS) and modified the expression of several oxidation-related genes. Yeast two-hybrid experiment combined with RNA-seq analysis showed that GmWRKY40 interacted with 8 JAZ proteins with or without the WRKY domain or zinc-finger domain of GmWRKY40, suggesting there were different interaction patterns among these interacted proteins. Conclusions Collectively, these results suggests that GmWRKY40 functions as a positive regulator in soybean plants response to P. sojae through modulating hydrogen peroxide accumulation and JA signaling pathway.
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