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Genome-wide association mapping for flowering and maturity in tropical soybean: implications for breeding strategies

机译:全基因组关联图谱对热带大豆开花和成熟的影响:对育种策略的影响

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Knowledge of the genetic architecture of flowering and maturity is needed to develop effective breeding strategies in tropical soybean. The aim of this study was to identify haplotypes across multiple environments that contribute to flowering time and maturity, with the purpose of selecting desired alleles, but maintaining a minimal impact on yield-related traits. For this purpose, a genome-wide association study (GWAS) was undertaken to identify genomic regions that control days to flowering (DTF) and maturity (DTM) using a soybean association mapping panel genotyped for single nucleotide polymorphism (SNP) markers. Complementarily, yield-related traits were also assessed to discuss the implications for breeding strategies. To detect either stable or specific associations, the soybean cultivars (N = 141) were field-evaluated across eight tropical environments of Brazil. Seventy-two and forty associations were significant at the genome-wide level relating respectively to DTM and DTF, in two or more environments. Haplotype-based GWAS identified three haplotypes (Gm12_Hap12; Gm19_Hap42 and Gm20_Hap32) significantly co-associated with DTF, DTM and yield-related traits in single and multiple environments. These results indicate that these genomic regions may contain genes that have pleiotropic effects on time to flowering, maturity and yield-related traits, which are tightly linked with multiple other genes with high rates of linkage disequilibrium.
机译:需要知识开花和成熟的遗传结构,以开发热带大豆有效的育种策略。这项研究的目的是确定有助于开花时间和成熟的多种环境中的单倍型,以选择所需的等位基因,但对产量相关性状的影响保持最小。为了这个目的,进行了全基因组关联研究(GWAS),以使用对单核苷酸多态性(SNP)标记进行基因分型的大豆关联作图小组来鉴定控制开花期(DTF)和成熟期(DTM)的基因组区域。作为补充,还对与产量相关的性状进行了评估,以讨论对育种策略的影响。为了检测稳定的关联或特定的关联,在巴西的八个热带环境中对大豆品种(N = 141)进行了现场评估。在两个或多个环境中,分别在DTM和DTF相关的全基因组水平上有72个和40个显着关联。基于单倍型的GWAS确定了三种单倍型(Gm12_Hap12; Gm19_Hap42和Gm20_Hap32)与DTF,DTM和在单个和多个环境中与产量相关的性状显着相关。这些结果表明,这些基因组区域可能包含对开花时间,成熟度和产量相关性状具有多效性的基因,这些基因与多个其他基因紧密连锁,且连锁失衡率很高。

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