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在抗白粉病和易感葡萄品种中,功能正常的 EDS1 同源物受到差异调控,并可补充拟南芥 eds1 突变体。

A functional EDS1 ortholog is differentially regulated in powdery mildew resistant and susceptible grapevines and complements an Arabidopsis eds1 mutant.

机构信息

Division of Plant Sciences, Christopher S. Bond Life Sciences Center, University of Missouri, Columbia, MO 65203-7310, USA.

出版信息

Planta. 2010 Apr;231(5):1037-47. doi: 10.1007/s00425-010-1107-z. Epub 2010 Feb 10.

DOI:10.1007/s00425-010-1107-z
PMID:20145949
Abstract

Vitis vinifera (grapevine) is the most economically important deciduous fruit crop, but cultivated grapevine varieties lack adequate innate immunity to a range of devastating diseases. To identify genetic resources for grapevine innate immunity and understand pathogen defense pathways in a woody perennial plant, we focus in this study on orthologs of the central Arabidopsis thaliana defense regulator ENHANCED DISEASE SUSCEPTIBILITY1 (EDS1). The family of EDS1-like genes is expanded in grapevine, and members of this family were previously found to be constitutively upregulated in the resistant variety 'Norton' of the North American grapevine species Vitis aestivalis, while they were induced by Erysiphe necator, the causal agent of grapevine powdery mildew (PM), in the susceptible V. vinifera variety 'Cabernet Sauvignon'. Here, we determine the responsiveness of individual EDS1-like genes in grapevine to PM and salicylic acid, and find that EDS1-like paralogs are differentially regulated in 'Cabernet Sauvignon', while two are constitutively upregulated in 'Norton'. Sequencing of VvEDS1 and VaEDS1 cDNA and genomic clones revealed high conservation in the protein-encoding sequence and some divergence of the promoter sequence in the two grapevine varieties. Complementation of the Arabidopsis eds1-1 mutant showed that the EDS1-like gene with highest predicted amino acid sequence similarity to AtEDS1 from either grapevine varieties is a functional ortholog of AtEDS1. Together, our analyses show that differential susceptibility to PM is correlated with differences in EDS1 expression, not differences in EDS1 function, between resistant 'Norton' and susceptible 'Cabernet Sauvignon'.

摘要

葡萄(葡萄藤)是最具经济重要性的落叶水果作物,但栽培的葡萄品种缺乏对一系列破坏性疾病的充分固有免疫力。为了鉴定葡萄固有免疫的遗传资源并理解木本多年生植物中的病原体防御途径,我们在这项研究中重点关注拟南芥中心防御调节剂增强疾病易感性 1(EDS1)的同源物。EDS1 样基因家族在葡萄中扩张,并且该家族的成员先前在北美葡萄物种 Vitis aestivalis 的抗性品种“Norton”中被发现组成性地上调,而在易感的 V. vinifera 品种“赤霞珠”中则由葡萄白粉病(PM)的病原体 Erysiphe necator 诱导。在这里,我们确定了葡萄中单个 EDS1 样基因对 PM 和水杨酸的反应性,发现 EDS1 样基因在“赤霞珠”中差异调节,而在“Norton”中两个基因组成性地上调。葡萄 VvEDS1 和 VaEDS1 cDNA 和基因组克隆的测序揭示了两种葡萄品种中蛋白编码序列的高度保守性和启动子序列的一些差异。拟南芥 eds1-1 突变体的互补表明,与拟南芥 AtEDS1 具有最高预测氨基酸序列相似性的 EDS1 样基因是 AtEDS1 的功能同源物。总的来说,我们的分析表明,对 PM 的不同敏感性与 EDS1 表达的差异相关,而不是抗性“Norton”和易感“赤霞珠”之间 EDS1 功能的差异。

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