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Sequence Analysis of Loci RpvlO and Rpv3 for Resistance against Grapevine Downy Mildew (Plasmopara viticola)

机译:Rpv10和Rpv3基因座对葡萄霜霉病(Plasmopara viticola)的抗性的序列分析

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摘要

The oomycete Plasmopara viticola is one of the most important pathogens of grapevine (Vitis vinifera L.). All traditional European cultivars used for wine production are highly susceptible. Therefore a great quantity of fungicides is necessary to enable high quality production of grapes. Newly bred resistant cultivars generated via marker-assisted selection (MAS) are a major contribution toward reducing fungicide applications for more sustainable viticulture. Identification of specific markers linkedto resistance loci is crucial to facilitate high throughput screening in a breeding program. Many North American Vitis species carry resistance genes due to co-evolution with Plasmopara viticola. Some Asian Vitis species also exhibit such resistances although their evolutionary origin is not yet understood. Among others, the two loci Rpv3 (American origin, e.g., 'Regent') and RpvlO (Asian origin, e.g., 'Solaris') have been identified in earlier studies. Analysis of the genomic DNA sequence of 'Solaris'at the RpvlO locus and 'Villard Blanc' at the Rpv3 locus revealed several candidate genes which might be responsible for the expression of resistance against Plasmopara viticola. These candidates include six genes with protein domains similar to resistance proteins known from other plant species. The aim of the study is the elucidation of the cellular defense mechanisms and the development of gene-linked markers for high throughput screening in grapevine breeding.
机译:卵菌的Plasmopara viticola是葡萄(Vitis vinifera L.)的最重要病原体之一。所有用于葡萄酒生产的传统欧洲品种均高度易感。因此,大量的杀菌剂对于葡萄的高质量生产是必需的。通过标记辅助选择(MAS)产生的新抗性品种对减少杀菌剂的应用做出了重大贡献,从而使葡萄栽培更加可持续。鉴定与抗性基因座相关的特定标记对于在育种程序中促进高通量筛选至关重要。由于与葡萄小单胞菌共进化,许多北美葡萄物种带有抗性基因。尽管尚未了解其进化起源,但某些亚洲葡萄物种也表现出这种抗性。其中,在较早的研究中已经鉴定出两个基因座Rpv3(美国血统,例如“ Regent”)和Rpv10(亚洲血统,例如“ Solaris”)。对Rpv10位点上的“ Solaris”和Rpv3位点上的“ Villard Blanc”的基因组DNA序列进行分析,揭示了几个候选基因,这些基因可能负责表达对葡萄小单胞菌的抗性。这些候选物包括六个蛋白质结构域与其他植物物种已知的抗性蛋白质相似的基因。该研究的目的是阐明葡萄防御中的细胞防御机制并开发用于高通量筛选的基因连锁标记。

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