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Earliness traits in rapeseed (Brassica napus): SNP loci and candidate genes identified by genome-wide association analysis

机译:油菜籽(Brassica Napus)的早期性状:通过基因组关联分析鉴定的SNP基因座和候选基因

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摘要

Life cycle timing is critical for yield and productivity of Brassica napus (rapeseed) cultivars grown in different environments. To facilitate breeding for earliness traits in rapeseed, SNP loci and underlying candidate genes associated with the timing of initial flowering, maturity and final flowering, as well as flowering period (FP) were investigated in two environments in a diversity panel comprising 300 B. napus inbred lines. Genome-wide association studies (GWAS) using 201,817 SNP markers previously developed from SLAF-seq (specific locus amplified fragment sequencing) revealed a total of 131 SNPs strongly linked (P 4.96E-07) to the investigated traits. Of these 131 SNPs, 40 fell into confidence intervals or were physically adjacent to previously published flowering time QTL or SNPs. Phenotypic effect analysis detected 35 elite allelic variants for early maturing, and 90 for long FP. Candidate genes present in the same linkage disequilibrium blocks (r(2) 0.6) or in 100 kb regions around significant trait-associated SNPs were screened, revealing 57 B. napus genes (33 SNPs) orthologous to 39 Arabidopsis thaliana flowering time genes. These results support the practical and scientific value of novel large-scale SNP data generation in uncovering the genetic control of agronomic traits in B. napus, and also provide a theoretical basis for molecular marker-assisted selection of earliness breeding in rapeseed.
机译:生命周期定时对于在不同环境中生长的芸苔(油菜籽)品种的产量和生产力至关重要。为了促进油菜籽中的早期性状的繁殖,SNP基因座和潜在的候选基因与初始开花,成熟度和最终开花的时间相关,以及在包括300b.napus的多样性面板中的两个环境中研究了与开花期(FP)进行了研究自交系。基因组 - 宽协会研究(GWAs)使用预先从SLAF-SEQ(特定基因座扩增片段测序)产生的201,817个SNP标记,揭示了总共131个SNPs强烈连接(P <4.96E-07)。在这131个SNP中,40次陷入置信区间或物理上与先前公布的开花时间QTL或SNP相邻。表型效应分析检测到35种精英等位基因变体,用于早熟的早熟和90次。筛选出在相同的连锁不平衡嵌段中存在的候选基因(R(2)& 0.6)或在100kb区域围绕着重要性状相关的SNP,揭示57b.napus基因(33 snps)直译为39个拟南芥开花时间基因。这些结果支持新型大规模SNP数据生成的实用和科学价值在揭示B. Napus的农艺性状的遗传控制中,还为油菜籽中的分子标记辅助选择的分子标记辅助选择提供了理论依据。

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