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Resistance to Rhynchosporium commune in a collection of European spring barley germplasm

机译:抵抗欧洲春麦芽种质集合中的rhynchosporium公社

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Key messageAssociation analyses of resistance to Rhynchosporium commune in a collection of European spring barley germplasm detected 17 significant resistance quantitative trait loci. The most significant association was confirmed as Rrs1.AbstractRhynchosporium commune is a fungal pathogen of barley which causes a highly destructive and economically important disease known as rhynchosporium. Genome-wide association mapping was used to investigate the genetic control of host resistance to R. commune in a collection of predominantly European spring barley accessions. Multi-year disease nursery field trials revealed 8 significant resistance quantitative trait loci (QTL), whilst a separate association mapping analysis using historical data from UK national and recommended list trials identified 9 significant associations. The most significant association identified in both current and historical data sources, collocated with the known position of the major resistance gene Rrs1. Seedling assays with R. commune single-spore isolates expressing the corresponding avirulence protein NIP1 confirmed that this locus is Rrs1. These results highlight the significant and continuing contribution of Rrs1 to host resistance in current elite spring barley germplasm. Varietal height was shown to be negatively correlated with disease severity, and a resistance QTL was identified that co-localised with the semi-dwarfing gene sdw1, previously shown to contribute to disease escape. The remaining QTL represent novel resistances that are present within European spring barley accessions. Associated markers to Rrs1 and other resistance loci, identified in this study, represent a set of tools that can be exploited by breeders for the sustainable deployment of varietal resistance in new cultivars.
机译:欧洲春季大麦种质中rhynchosporium公社的关键消息分析分析欧洲春麦芽种质中检测到17个显着的抗性定量特性基因座。最重要的关联被证实为RRS1.Abstractrhynchosporium Commune是大麦的真菌病原体,导致rhynchosporium的高度破坏性和经济上重要的疾病。基因组 - 范围的协会映射用于研究主要欧洲春季大麦加入的集合中宿主抵抗宿主抗性的遗传控制。多年疾病苗圃田间试验显示出8个显着的阻力量性质基因座(QTL),同时使用来自英国国家和推荐名单试验的历史数据单独的关联映射分析确定了9个重要协会。在电流和历史数据源中鉴定的最重要关联,与主要抗性基因RRS1的已知位置并置。幼苗测定与R. Commbe单孢子分离物表达相应的aairulence蛋白Nip1证实该基因座是RRS1。这些结果突出了RRS1在目前精英春季大麦种质中抵抗抵抗力的显着和持续贡献。难以与疾病严重程度呈负相关的变异高度,并鉴定出抗性QTL,其与半矮化基因SDW1共同定位,以前所示有助于疾病逃生。其余的QTL代表欧洲春季大麦公布内存的新型电阻。本研究中识别的RRS1和其他电阻基因座的关联标记代表了一组工具,可以由育种者利用,以可持续部署新品种中的各种抗性。

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