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Association Mapping of Quantitative Trait Loci in Spring Wheat Landraces Conferring Resistance to Bacterial Leaf Streak and Spot Blotch

机译:春小麦地方品种数量性状位点对细菌叶片条纹和斑点斑点的抗性关联图谱

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Bacterial leaf streak (BLS), caused by Xanthomonas translucens pv. undulosa (Smith et al.) Bragard et al., and spot blotch (SB), caused by Cochliobolus sativus (S. Ito & Kurib.) Drechs. ex Dastur, are two emerging diseases of wheat (Triticum aestivum L.). To achieve sustainable disease management strategies and reduce yield losses, identifying new genes that confer quantitative resistance would benefit resistance breeding efforts. The main objective of this study was to use association mapping (AM) with 832 polymorphic Diversity Arrays Technology (DArT) markers to identify genomic regions associated with resistance to BLS and SB in 566 spring wheat landraces. From data analysis of this diverse panel of wheat accessions, we discovered five novel genomic regions significantly associated with resistance to BLS on chromosomes 1A, 4A, 4B, 6B, and 7D. Similarly, four genomic regions were found to be associated with resistance to SB on chromosomes 1A, 3B, 7B, and 7D. A high degree of linkage disequilibrium (LD) decayed over short genetic distance in the set of wheat accessions studied, and some of these genomic regions appear to be involved in multiple disease resistance (MDR). These results suggest that the AM approach provides a platform for discovery of resistance conditioned by multiple genes with quantitative effects, which could be validated and deployed in wheat breeding programs.
机译:Xanthomonas translucens pv引起的细菌叶条纹(BLS)。 undulosa(Smith等人)Bragard等人,和斑点斑点病(SB),由Sachus(C. Ito&Kurib。)Drechs引起。来自Dastur的是两种新兴的小麦疾病(Triticum aestivum L.)。为了实现可持续的疾病管理策略并减少产量损失,确定赋予定量抗性的新基因将有利于抗性育种工作。这项研究的主要目的是使用关联映射(AM)和832多态性多样性阵列技术(DArT)标记来鉴定与566春小麦地方品种对BLS和SB的抗性相关的基因组区域。通过对这一系列不同小麦品种的数据分析,我们发现了五个与1A,4A,4B,6B和7D染色体上的BLS抗性显着相关的新基因组区域。同样,发现四个基因组区域与1A,3B,7B和7D染色体上的SB抗性相关。在研究的小麦品种中,高度连锁不平衡(LD)在较短的遗传距离内衰减,并且其中一些基因组区域似乎与多重抗病性(MDR)有关。这些结果表明,AM方法为发现具有多个具有定量作用的基因的抗性提供了一个平台,该平台可以在小麦育种计划中得到验证和部署。

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