Jiao Li, Zhang Yali, Lu Jiang
The Viticulture and Enology Program, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China; Center for Viticulture and Enology, School of Agriculture and Biology, Shanghai JiaoTong University, Shanghai, 200240, China.
The Viticulture and Enology Program, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.
Plant Physiol Biochem. 2017 Mar;112:53-63. doi: 10.1016/j.plaphy.2016.12.019. Epub 2016 Dec 25.
Many U-box proteins have been identified and characterized as important factors against environmental stresses such as chilling, heat, salinity and pathogen attack in plant. Our previous research reported the cloning of a novel U-box protein gene VaPUB from Vitis amurensis 'Zuoshanyi' grape and suggested a function of it in related to cold stress in the model plant Arabidopsis system. In this study, the role of VaPUB in response to biotic and abiotic stress was further analyzed in the homologous grapevine system by studying the transcript regulation and the protein accumulation in VaPUB transgenic vines. The expression analysis assay shown that VaPUB was significantly up-regulated 6 h after cold treatment and as early as 2 h post inoculation with Plasmopara viticola, a pathogen causing downy mildew disease in grapevine. Over-expressing VaPUB in V. Vinifera 'Thompson Seedless' affected the microstructure of leaves. The proteome assay shown that the accumulation of pathogenesis-related protein PR10 and many proteins involved in carbon and energy metabolism, oxidation reaction and protein metabolism were significantly altered in transgenic vines. In comparison with wild type plants, the expression level of PR10 family genes was significantly decreased in VaPUB transgenic vines under P. viticola treatment or cold stress. Results from this study showed that the U-box protein gene PUB quickly responded to both biotic stress and abiotic stress and significantly influenced the accumulation of resistance related proteins in grapevine.
许多U-box蛋白已被鉴定并被认为是植物抵御低温、高温、盐胁迫和病原体侵袭等环境胁迫的重要因子。我们之前的研究报道了从‘左山一’山葡萄中克隆出一个新的U-box蛋白基因VaPUB,并在模式植物拟南芥系统中表明其与冷胁迫相关的功能。在本研究中,通过研究VaPUB转基因葡萄藤中的转录调控和蛋白质积累,在同源葡萄系统中进一步分析了VaPUB在应对生物和非生物胁迫中的作用。表达分析试验表明,冷处理6小时后以及接种葡萄霜霉病病原菌葡萄生单轴霉后2小时,VaPUB显著上调。在‘汤普森无核’葡萄中过表达VaPUB影响了叶片的微观结构。蛋白质组分析表明,转基因葡萄藤中病程相关蛋白PR10以及许多参与碳和能量代谢、氧化反应和蛋白质代谢的蛋白质积累发生了显著变化。与野生型植株相比,在葡萄生单轴霉处理或冷胁迫下,VaPUB转基因葡萄藤中PR10家族基因的表达水平显著降低。本研究结果表明,U-box蛋白基因PUB对生物胁迫和非生物胁迫均能快速响应,并显著影响葡萄中抗性相关蛋白的积累。