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首页> 外文期刊>Plant Biotechnology Journal >Identification of loci governing eight agronomic traits using a GBS?¢????GWAS approach and validation by QTL mapping in soya bean
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Identification of loci governing eight agronomic traits using a GBS?¢????GWAS approach and validation by QTL mapping in soya bean

机译:使用GBS ¢ GWAS方法鉴定控制八个农艺性状的基因座,并通过QTL映射在大豆中进行验证

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摘要

Soya bean is a major source of edible oil and protein for human consumption as well as animal feed. Understanding the genetic basis of different traits in soya bean will provide important insights for improving breeding strategies for this crop. A genome?¢????wide association study (GWAS) was conducted to accelerate molecular breeding for the improvement of agronomic traits in soya bean. A genotyping?¢????by?¢????sequencing (GBS) approach was used to provide dense genome?¢????wide marker coverage (>47????000 SNPs) for a panel of 304 short?¢????season soya bean lines. A subset of 139 lines, representative of the diversity among these, was characterized phenotypically for eight traits under six environments (3 sites????????????2????years). Marker coverage proved sufficient to ensure highly significant associations between the genes known to control simple traits (flower, hilum and pubescence colour) and flanking SNPs. Between one and eight genomic loci associated with more complex traits (maturity, plant height, seed weight, seed oil and protein) were also identified. Importantly, most of these GWAS loci were located within genomic regions identified by previously reported quantitative trait locus (QTL) for these traits. In some cases, the reported QTLs were also successfully validated by additional QTL mapping in a biparental population. This study demonstrates that integrating GBS and GWAS can be used as a powerful complementary approach to classical biparental mapping for dissecting complex traits in soya bean.
机译:大豆是人类食用的食用油和蛋白质以及动物饲料的主要来源。了解大豆不同性状的遗传基础将为改善该作物的育种策略提供重要见解。进行了基因组广泛关联研究(GWAS),以促进分子育种,改善大豆的农艺性状。使用基因分型(GBS)方法进行基因分型,可为304个小组提供致密的基因组-较宽的标记覆盖率(> 47-000个SNP)。简短的季节大豆行。在六个环境下(三个位点2年),对139个品系的子集进行了表型分析,表征了其中8个性状。事实证明,标记覆盖范围足以确保已知的控制简单性状(花,门铃和青春期颜色)的基因与侧翼的SNP之间具有高度重要的关联。还确定了1至8个与更复杂的性状(成熟度,株高,种子重量,种子油和蛋白质)相关的基因组位点。重要的是,这些GWAS基因座大多数位于以前报道的这些性状的定量性状基因座(QTL)所鉴定的基因组区域内。在某些情况下,通过双亲群体中的其他QTL作图也可以成功验证报告的QTL。这项研究表明,GBS和GWAS的集成可以用作经典双亲映射的强大补充方法,以剖析大豆的复杂性状。

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