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Genome-wide associations for multiple pest resistances in a Northwestern United States elite spring wheat panel

机译:美国西北部精英春小麦小组对多种害虫抗性的全基因组关联

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摘要

Northern areas of the western United States are one of the most productive wheat growing regions in the United States. Increasing productivity through breeding is hindered by several biotic stresses which slow and constrain targeted yield improvement. In order to understand genetic variation for stripe rust (Puccinia striiformis f. sp. tritici), Septoria tritici blotch (Mycosphaerella graminicola), and Hessian fly (Mayetiola destructor) in regional germplasm, a panel of 408 elite spring wheat lines was characterized and genotyped with an Illumina 9K wheat single nucleotide polymorphism (SNP) chip to enable genome-wide association study (GWAS) analyses. Significant marker-trait associations were identified for stripe rust (38 loci), Septoria tritici blotch (8) and Hessian fly (9) resistance. Many of the QTL corresponded with previously reported gene locations or QTL, but we also discovered new resistance loci for each trait. We validated one of the stripe rust resistance loci detected by GWAS in a bi-parental mapping population, which confirmed the detection of Yr15 in the panel. This study elucidated well-defined chromosome regions for multiple pest resistances in elite Northwest germplasm. Newly identified resistance loci, along with SNPs more tightly linked to previously reported genes or QTL will help future breeding and marker assisted selection efforts.
机译:美国西部的北部地区是美国最高产的小麦产区之一。几种生物胁迫阻碍了通过育种提高生产力,这些生物胁迫减缓并限制了目标产量的提高。为了了解区域种质中条锈病(Puccinia striiformis f。sp。tritici),小麦色斑病(Septoria tritici blotch)(Mycosphaerella graminicola)和黑森州蝇(Mayetiola destructor)的遗传变异,对一组408株优良春小麦品系进行了鉴定和基因分型使用Illumina 9K小麦单核苷酸多态性(SNP)芯片进行全基因组关联研究(GWAS)分析。显着的标记-性状关联被确定为条锈病(38个基因座),小麦黑斑病(8)和黑森州蝇(9)抗性。许多QTL与先前报道的基因位置或QTL相符,但我们还发现了每个性状的新抗性位点。我们验证了由双亲测图群体中GWAS检测到的条纹抗性基因座之一,这证实了在面板中检测到Yr15。这项研究阐明了西北种质优良种质中多重害虫抗性的明确染色体区域。新发现的抗性基因座,以及与先前报道的基因或QTL更紧密相连的SNP,将有助于未来的育种和标记辅助的选择工作。

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