首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Association mapping of resistance to Puccinia hordei in Australian barley breeding germplasm.
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Association mapping of resistance to Puccinia hordei in Australian barley breeding germplasm.

机译:澳大利亚大麦育种种质对Puccinia hordei的抗性的关联图。

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Three hundred and sixty (360) elite barley (Hordeum vulgare L.) breeding lines from the Northern Region Barley Breeding Program in Australia were genotyped with 3,244 polymorphic diversity arrays technology markers and the results used to map quantitative trait loci (QTL) conferring a reaction to leaf rust (Puccinia hordei Otth). The F3:5 (Stage 2) lines were derived or sourced from different geographic origins or hubs of international barley breeding ventures representing two breeding cycles (2009 and 2011 trials) and were evaluated across eight environments for infection type at both seedling and adult plant stages. Association mapping was performed using mean scores for disease reaction, accounting for family effects using the eigenvalues from a matrix of genotype correlations. In this study, 15 QTL were detected; 5 QTL co-located with catalogued leaf rust resistance genes (Rph1, Rph3/19, Rph8/14/15, Rph20, Rph21), 6 QTL aligned with previously reported genomic regions and 4 QTL (3 on chromosome 1H and 1 on 7H) were novel. The adult plant resistance gene Rph20 was identified across the majority of environments and pathotypes. The QTL detected in this study offer opportunities for breeding for more durable resistance to leaf rust through pyramiding multiple genomic regions via marker-assisted selection.
机译:使用3,244种多态性多样性阵列技术标记对澳大利亚北部地区大麦育种计划的三百六十(360)个大麦(Hordeum vulgare L.)育种品系进行了基因分型,并将结果用于定位赋予反应的数量性状基因座(QTL)去锈(Puccinia hordei Otth)。 F 3:5 (第2阶段)品系来自或来自代表两个繁殖周期(2009年和2011年试验)的国际大麦育种企业的不同地理起源或中心,并在八个感染环境中进行了评估在苗期和成年植株期均进行分型使用疾病反应的平均评分进行关联映射,并使用来自基因型相关性矩阵的特征值考虑家庭效应。在这项研究中,检测到15个QTL。 5个QTL与分类的叶锈病抗性基因(Rph1,Rph3 / 19,Rph8 / 14/15,Rph20,Rph21)位于同一位置,有6个与先前报道的基因组区域对齐的QTL和4个QTL(3H位于1H染色体上,1H位于7H上)是新颖的。已在大多数环境和病原体中鉴定了成年植物抗性基因Rph20。在这项研究中检测到的QTL为通过标记辅助选择使多个基因组区域金字塔化而提供了更持久的抗叶锈病抗性的机会。

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