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葡萄转录因子VvWRKY1的分离、特性分析及其对转基因烟草植株真菌病原体应答的影响

Isolation and characterization of a Vitis vinifera transcription factor, VvWRKY1, and its effect on responses to fungal pathogens in transgenic tobacco plants.

作者信息

Marchive Chloé, Mzid Rim, Deluc Laurent, Barrieu François, Pirrello Julien, Gauthier Adrien, Corio-Costet Marie-France, Regad Farid, Cailleteau Bernard, Hamdi Saïd, Lauvergeat Virginie

机构信息

Unité Mixte de Recherche 1287, Ecophysiologie et Génomique Fonctionnelle de la Vigne, Université Bordeaux 1, Université Bordeaux 2, Institut National de la Recherche Agronomique, BP 81, F-33883 Villenave d'Ornon, France.

出版信息

J Exp Bot. 2007;58(8):1999-2010. doi: 10.1093/jxb/erm062. Epub 2007 Apr 24.

DOI:10.1093/jxb/erm062
PMID:17456504
Abstract

Pathogen attack represents a major problem for viticulture and for agriculture in general. At present, the use of phytochemicals is more and more restrictive, and therefore it is becoming essential to control disease by having a thorough knowledge of resistance mechanisms. The present work focused on the trans-regulatory proteins potentially involved in the control of the plant defence response, the WRKY proteins. A full-length cDNA, designated VvWRKY1, was isolated from a grape berry library (Vitis vinifera L. cv. Cabernet Sauvignon). It encodes a polypeptide of 151 amino acids whose structure is characteristic of group IIc WRKY proteins. VvWRKY1 gene expression in grape is regulated in a developmental manner in berries and leaves and by various signal molecules involved in defence such as salicylic acid, ethylene, and hydrogen peroxide. Biochemical analysis indicates that VvWRKY1 specifically interacts with the W-box in various nucleotidic contexts. Functional analysis of VvWRKY1 was performed by overexpression in tobacco, and transgenic plants exhibited reduced susceptibility to various fungi but not to viruses. These results are consistent with a possible role for VvWRKY1 in grapevine defence against fungal pathogens.

摘要

病原体侵袭是葡萄栽培乃至整个农业面临的一个主要问题。目前,植物化学物质的使用受到越来越多的限制,因此,深入了解抗性机制对于控制病害变得至关重要。目前的研究工作聚焦于可能参与植物防御反应调控的反式调节蛋白——WRKY蛋白。从葡萄浆果文库(葡萄品种赤霞珠)中分离出一个全长cDNA,命名为VvWRKY1。它编码一个由151个氨基酸组成的多肽,其结构具有IIc类WRKY蛋白的特征。葡萄中VvWRKY1基因的表达在浆果和叶片中以发育方式受到调控,并受到参与防御的各种信号分子如水杨酸、乙烯和过氧化氢的调控。生化分析表明,VvWRKY1在各种核苷酸环境中与W盒特异性相互作用。通过在烟草中过表达对VvWRKY1进行功能分析,转基因植物对各种真菌的易感性降低,但对病毒不敏感。这些结果与VvWRKY1在葡萄抵御真菌病原体中可能发挥的作用一致。

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