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Two Genomic Regions Contribute Disproportionately to Geographic Differentiation in Wild Barley

机译:两个基因组区域对野生大麦地理分化的贡献不成比例

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摘要

Genetic differentiation in natural populations is driven by geographic distance and by ecological or physical features within and between natural habitats that reduce migration. The primary population structure in wild barley differentiates populations east and west of the Zagros Mountains. Genetic differentiation between eastern and western populations is uneven across the genome and is greatest on linkage groups 2H and 5H. Genetic markers in these two regions demonstrate the largest difference in frequency between the primary populations and have the highest informativeness for assignment to each population. Previous cytological and genetic studies suggest there are chromosomal structural rearrangements (inversions or translocations) in these genomic regions. Environmental association analyses identified an association with both temperature and precipitation variables on 2H and with precipitation variables on 5H.
机译:自然种群的遗传分化是由地理距离以及减少栖息地的自然栖息地之内和之间的生态或物理特征所驱动。野生大麦的主要种群结构区分了扎格罗斯山脉东部和西部的种群。东部和西部人群之间的遗传分化在整个基因组中是不均衡的,在2H和5H连锁群上最大。这两个区域的遗传标记显示出主要人群之间的频率差异最大,并且分配给每个人群的信息量最高。先前的细胞学和遗传学研究表明,在这些基因组区域中存在染色体结构重排(倒位或易位)。环境关联分析确定了与2H的温度和降水变量以及与5H的降水变量都有关联。

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