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来自中国野生山葡萄 VaMYB44 转录因子负调控转基因拟南芥和酿酒葡萄的耐冷性。

VaMYB44 transcription factor from Chinese wild Vitis amurensis negatively regulates cold tolerance in transgenic Arabidopsis thaliana and V. vinifera.

机构信息

College of Horticulture, Northwest A&F University, Yangling, Xianyang, 712100, Shaanxi, China.

Key Laboratory of Horticultural Plant Biology and Germplasm Innovation in Northwest China, Ministry of Agriculture, Yangling, Xianyang, 712100, Shaanxi, China.

出版信息

Plant Cell Rep. 2022 Aug;41(8):1673-1691. doi: 10.1007/s00299-022-02883-w. Epub 2022 Jun 6.

Abstract

Heterologous expression of VaMYB44 gene in Arabidopsis and V. vinifera cv. 'Thompson Seedless' increases cold sensitivity, which is mediated by the interaction of VaMYC2 and VaTIFY5A with VaMYB44 MYB transcription factors play critical roles in plant stress response. However, the function of MYB44 under low temperature stress is largely unknown in grapes. Here, we isolated a VaMYB44 gene from Chinese wild Vitis amurensis acc. 'Shuangyou' (cold-resistant). The VaMYB44 is expressed in various organs and has lower expression levels in stems and young leaves. Exposure of the cold-sensitive V. vinifera cv. 'Thompson Seedless' and cold-resistant 'Shuangyou' grapevines to cold stress (-1 °C) resulted in differential expression of MYB44 in leaves with the former reaching 14 folds of the latter after 3 h of cold stress. Moreover, the expression of VaMYB44 was induced by exogenous ethylene, abscisic acid, and methyl jasmonate in the leaves of 'Shuangyou'. Notably, the subcellular localization assay identified VaMYB44 in the nucleus. Interestingly, heterologous expression of VaMYB44 in Arabidopsis and 'Thompson Seedless' grape increased freezing-induced damage compared to their wild-type counterparts. Accordingly, the transgenic lines had higher malondialdehyde content and electrolyte permeability, and lower activities of superoxide dismutase, peroxidase, and catalase. Moreover, the expression levels of some cold resistance-related genes decreased in transgenic lines. Protein interaction assays identified VaMYC2 and VaTIFY5A as VaMYB44 interacting proteins, and VaMYC2 could bind to the VaMYB44 promoter and promote its transcription. In conclusion, the study reveals VaMYB44 as the negative regulator of cold tolerance in transgenic Arabidopsis and transgenic grapes, and VaMYC2 and VaTIFY5A are involved in the cold sensitivity of plants by interacting with VaMYB44.

摘要

从中国野生葡萄品种‘双优’中分离到 VaMYB44 基因。VaMYB44 在不同器官中表达,在茎和幼叶中表达水平较低。冷敏感的葡萄品种‘汤普森无核’和抗寒的‘双优’葡萄叶片在冷胁迫(-1°C)下,前者在 3 h 冷胁迫后 MYB44 的表达量达到后者的 14 倍。此外,外源乙烯、脱落酸和茉莉酸甲酯在‘双优’叶片中诱导 VaMYB44 的表达。有趣的是,亚细胞定位实验表明 VaMYB44 定位于细胞核。有趣的是,在拟南芥和‘汤普森无核’葡萄中异源表达 VaMYB44 会增加冷冻诱导的损伤,与野生型相比。因此,转基因株系的丙二醛含量和电解质渗透率较高,超氧化物歧化酶、过氧化物酶和过氧化氢酶活性较低。此外,一些与冷胁迫相关基因的表达水平在转基因株系中降低。蛋白互作实验鉴定出 VaMYC2 和 VaTIFY5A 是 VaMYB44 的互作蛋白,VaMYC2 可以结合 VaMYB44 启动子并促进其转录。综上所述,本研究揭示了 VaMYB44 作为转基因拟南芥和转基因葡萄中冷耐性的负调控因子,VaMYC2 和 VaTIFY5A 通过与 VaMYB44 相互作用参与植物的冷敏感性。

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