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首页> 外文期刊>PLoS One >Multilocus Bayesian Estimates of Intra-Oceanic Genetic Differentiation, Connectivity, and Admixture in Atlantic Swordfish (Xiphias gladius L.)
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Multilocus Bayesian Estimates of Intra-Oceanic Genetic Differentiation, Connectivity, and Admixture in Atlantic Swordfish (Xiphias gladius L.)

机译:大西洋剑鱼(Xiphias gladius L.)大洋内遗传分化,连通性和混合的贝叶斯估计。

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Previous genetic studies of Atlantic swordfish (Xiphias gladius L.) revealed significant differentiation among Mediterranean, North Atlantic and South Atlantic populations using both mitochondrial and nuclear DNA data. However, limitations in geographic sampling coverage, and the use of single loci, precluded an accurate placement of boundaries and of estimates of admixture. In this study, we present multilocus analyses of 26 single nucleotide polymorphisms (SNPs) within 10 nuclear genes to estimate population differentiation and admixture based on the characterization of 774 individuals representing North Atlantic, South Atlantic, and Mediterranean swordfish populations. Pairwise FST values, AMOVA, PCoA, and Bayesian individual assignments support the differentiation of swordfish inhabiting these three basins, but not the current placement of the boundaries that separate them. Specifically, the range of the South Atlantic population extends beyond 5°N management boundary to 20°N-25°N from 45°W. Likewise the Mediterranean population extends beyond the current management boundary at the Strait of Gibraltar to approximately 10°W. Further, admixture zones, characterized by asymmetric contributions of adjacent populations within samples, are confined to the Northeast Atlantic. While South Atlantic and Mediterranean migrants were identified within these Northeast Atlantic admixture zones no North Atlantic migrants were identified respectively in these two neighboring basins. Owing to both, the characterization of larger number of loci and a more ample spatial sampling coverage, it was possible to provide a finer resolution of the boundaries separating Atlantic swordfish populations than previous studies. Finally, the patterns of population structure and admixture are discussed in the light of the reproductive biology, the known patterns of dispersal, and oceanographic features that may act as barriers to gene flow to Atlantic swordfish.
机译:以前对大西洋箭鱼(Xiphias gladius L.)的遗传研究表明,利用线粒体和核DNA数据,地中海,北大西洋和南大西洋种群之间存在显着差异。但是,由于地理采样范围的限制以及单个位点的使用,使得边界和掺混物估计值的准确放置成为可能。在这项研究中,我们基于10个核基因中的26个单核苷酸多态性(SNP)进行多基因座分析,以基于代表北大西洋,南大西洋和地中海箭鱼种群的774个人的特征估计种群分化和混合。成对的FST值,AMOVA,PCoA和贝叶斯个体分配支持居住在这三个盆地中的旗鱼的区分,但不支持分隔它们的边界的当前位置。具体而言,南大西洋的人口范围从45°W扩展到5°N的管理边界之外,扩展到20°N-25°N。同样,地中海人口超出了直布罗陀海峡目前的管理范围,达到约10°W。此外,以样品中相邻种群的不对称贡献为特征的混合带区域被限制在东北大西洋。虽然在这些东北大西洋混合带内发现了南大西洋和地中海移民,但在这两个相邻盆地中却没有分别发现北大西洋移民。归因于这两个特征,即特征是数量更多的位点和更大的空间采样覆盖范围,与以前的研究相比,有可能为分离大西洋箭鱼种群的边界提供更好的分辨率。最后,根据生殖生物学,已知的传播模式以及可能成为阻碍基因流向大西洋箭鱼的海洋学特征,讨论了种群结构和混合模式。

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