Jiang Changyue, Wang Dan, Zhang Jie, Xu Yan, Zhang Chaohong, Zhang Jianxia, Wang Xiping, Wang Yuejin
College of Horticulture, Northwest A & F University, 712100, Yangling, Shaanxi, The People's Republic of China.
Key Laboratory of Horticultural Plant Biology and Germplasm Innovation in Northwest China, Ministry of Agriculture, 712100, Yangling, Shaanxi, The People's Republic of China.
Hortic Res. 2021 Jul 1;8(1):151. doi: 10.1038/s41438-021-00585-0.
Resveratrol plays a crucial phytoalexin role in the grapevine and is beneficial to human health. However, the molecular mechanism of resveratrol accumulation in the enhancement of disease resistance is unclear. Here, we report that the transcription factor VqMYB154 from Vitis quinquangularis accession Danfeng-2 is strongly expressed under artificial inoculation with Uncinula necator and regulates resveratrol accumulation. Unlike its homolog, VqMYB154 has a pathogen-induced promoter and responds to stimulation by U. necator, Pseudomonas syringae, and other treatments. Yeast one-hybrid and GUS activity assays confirmed that VqMYB154 can activate the stilbene synthase genes VqSTS9, VqSTS32, and VqSTS42 by directly binding to their promoters. Overexpression of VqMYB154 in grape leaves resulted in activation of the stilbene pathway, upregulation of STS genes, and accumulation of stilbenoids. In addition, heterologous overexpression of VqMYB154 in Arabidopsis activated resistance-related genes and resulted in greater programmed cell death and accumulation of reactive oxygen species, which led to resistance against P. syringae. These results suggest that the transcription factor VqMYB154 from V. quinquangularis accession Danfeng-2 participates in the regulatory mechanism that improves the biosynthesis and accumulation of stilbenes and enhances resistance to disease in grapevine.
白藜芦醇在葡萄中起着关键的植保素作用,且对人体健康有益。然而,白藜芦醇在增强抗病性过程中积累的分子机制尚不清楚。在此,我们报道来自毛葡萄‘丹凤 - 2’的转录因子VqMYB154在白粉菌人工接种下强烈表达,并调控白藜芦醇的积累。与其同源物不同,VqMYB154具有病原体诱导型启动子,可响应白粉菌、丁香假单胞菌及其他处理的刺激。酵母单杂交和GUS活性分析证实,VqMYB154可通过直接结合芪合酶基因VqSTS9、VqSTS32和VqSTS42的启动子来激活这些基因。在葡萄叶片中过表达VqMYB154导致芪类途径的激活、STS基因的上调以及芪类化合物的积累。此外,在拟南芥中异源过表达VqMYB154激活了抗性相关基因,并导致更多的程序性细胞死亡和活性氧积累,从而增强了对丁香假单胞菌的抗性。这些结果表明,来自毛葡萄‘丹凤 - 2’的转录因子VqMYB154参与了改善芪类生物合成和积累以及增强葡萄抗病性的调控机制。