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Genome-wide association study of soybean seed germination under drought stress

机译:干旱胁迫下大豆种子萌发的基因组关联研究

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摘要

Drought stress, which is increasing with climate change, is a serious threat to agricultural sustainability worldwide. Seed germination is an essential growth phase that ensures the successful establishment and productivity of soybean, which can lose substantial productivity in soils with water deficits. However, only limited genetic information is available about how germinating soybean seeds may exert drought tolerance. In this study, we examined the germinating seed drought-tolerance phenotypes and genotypes of a panel of 259 released Chinese soybean cultivars panel. Based on 4616 Single-Nucleotide Polymorphisms (SNPs), we conducted a mixed-linear model GWAS that identified a total of 15 SNPs associated with at least one drought-tolerance index. Notably, three of these SNPs were commonly associated with two drought-tolerance indices. Two of these SNPs are positioned upstream of genes, and 11 of them are located in or near regions where QTLs have been previously mapped by linkage analysis, five of which are drought-related. The SNPs detected in this study can both drive hypothesis-driven research to deepen our understanding of genetic basis of soybean drought tolerance at the germination stage and provide useful genetic resources that can facilitate the selection of drought stress traits via genomic-assisted selection.
机译:随着气候变化,正在增加的干旱压力是对全球农业可持续性的严重威胁。种子萌发是一种基本的生长阶段,可确保大豆的成功建立和生产力,这可能在水赤字中失去土壤中的大量生产力。然而,只有有限的遗传信息可以讨论发芽大豆种子如何施加耐旱性耐受性。在这项研究中,我们检查了259名释放的中国大豆品种小组的发芽种子干旱耐受性表型和基因型。基于4616单核苷酸多态性(SNP),我们进行了一种混合线性模型GWA,其鉴定了与至少一个干旱耐受指数相关的总共15个SNP。值得注意的是,这些SNP中的三个通常与两个耐旱指数相关。这些SNP中的两种位于基因的上游,其中11个位于或附近的区域内或附近的区域,其中QTL已经通过连杆分析映射,其中5个与干旱相关的五个。本研究中检测到的SNP可以推动假设驱动的研究,以加深我们对萌发阶段的大豆耐受耐受性的理解,并提供有用的遗传资源,可以促进通过基因组辅助选择选择干旱应激性状。

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