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Dissecting the Genetic Basis of Local Adaptation in Soybean

机译:剖析大豆局部适应的遗传基础

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Soybean (Glycine max) is the most widely grown oilseed in the world and is an important source of protein for both humans and livestock. Soybean is widely adapted to both temperate and tropical regions, but a changing climate demands a better understanding of adaptation to specific environmental conditions. Here, we explore genetic variation in a collection of 3,012 georeferenced, locally adapted landraces from a broad geographical range to help elucidate the genetic basis of local adaptation. We used geographic origin, environmental data and dense genome-wide SNP data to perform an environmental association analysis and discover loci displaying steep gradients in allele frequency across geographical distance and between landrace and modern cultivars. Our combined application of methods in environmental association mapping and detection of selection targets provide a better understanding of how geography and selection may have shaped genetic variation among soybean landraces. Moreover, we identified several important candidate genes related to drought and heat stress, and revealed important genomic regions possibly involved in the geographic divergence of soybean.
机译:大豆(Glycine max)是世界上生长最广泛的油料种子,是人类和牲畜的重要蛋白质来源。大豆广泛适用于温带和热带地区,但气候变化要求人们更好地了解对特定环境条件的适应性。在这里,我们从广泛的地理范围内,收集了3012个经过地理定位的,本地适应的地方品种的集合,探讨了遗传变异,以帮助阐明本地适应的遗传基础。我们使用地理起源,环境数据和全基因组SNP密集数据进行了环境关联分析,并发现了在等位基因频率范围内以及地方品种和现代品种之间等位基因频率显示陡峭梯度的基因座。我们在环境关联制图和选择目标的检测中方法的组合应用提供了对地理和选择如何影响大豆地方品种之间遗传变异的更好理解。此外,我们鉴定了几个与干旱和高温胁迫有关的重要候选基因,并揭示了可能与大豆地理差异有关的重要基因组区域。

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