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Development of a multiple-hybrid population for genome-wide association studies: theoretical consideration and genetic mapping of flowering traits in maize

机译:开发用于全基因组关联研究的多重杂交种群:玉米开花性状的理论考虑和遗传作图

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摘要

Various types of populations have been used in genetics, genomics and crop improvement, including bi- and multi-parental populations and natural ones. The latter has been widely used in genome-wide association study (GWAS). However, inbred-based GWAS cannot be used to reveal the mechanisms involved in hybrid performance. We developed a novel maize population, multiple-hybrid population (MHP), consisting of 724 hybrids produced using 28 temperate and 23 tropical inbreds. The hybrids can be divided into three subpopulations, two diallels and NC (North Carolina Design) II. Significant genetic differences were identified among parents, hybrids and heterotic groups. A cluster analysis revealed heterotic groups existing in the parental lines and the results showed that MHPs are well suitable for GWAS in hybrid crops. MHP-based GWAS was performed using 55 K SNP array for flowering time traits, days to tassel, days to silk, days to anthesis and anthesis-silking interval. Two independent methods, PEPIS developed for hybrids and TASSEL software designed for inbred line populations, revealed highly consistent results with five overlapping chromosomal regions identified and used for discovery of candidate genes and quantitative trait nucleotides. Our results indicate that MHPs are powerful in GWAS for hybrid-related traits with great potential applications in the molecular breeding era.
机译:在遗传学,基因组学和作物改良中已经使用了各种类型的种群,包括双亲和多亲种群和自然种群。后者已广泛用于全基因组关联研究(GWAS)。但是,基于近交的GWAS不能用于揭示混合性能涉及的机制。我们开发了一个新的玉米种群,多杂交种群(MHP),该种群由使用28个温带和23个热带自交系生产的724个杂种组成。杂种可分为三个亚群,两个表盘和NC(北卡罗莱纳州设计)II。在父母,杂种和杂种群体之间鉴定出显着的遗传差异。聚类分析揭示了亲本系中存在的杂种基团,结果表明MHP非常适合杂交作物中的GWAS。基于MHP的GWAS使用55 K SNP阵列进行开花时间性状,流苏天数,花丝天数,花期天数和花期生长期间隔的测定。为杂交种开发的PEPIS和为近交系种群设计的TASSEL软件这两种独立的方法显示出高度一致的结果,其中鉴定出五个重叠的染色体区域并用于发现候选基因和定量性状核苷酸。我们的结果表明,MHPs在GWAS中具有强大的杂交相关性状,在分子育种时代具有巨大的潜在应用。

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