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RADseq analyses reveal concordant Indian Ocean biogeographic and phylogeographic boundaries in the reef fish Dascyllus trimaculatus

机译:RADseq分析揭示了礁鱼Dascyllus trimaculatus中印度洋的生物地理学和地理学界限一致

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摘要

Population genetic analysis is an important tool for estimating the degree of evolutionary connectivity in marine organisms. Here, we investigate the population structure of the three-spot damselfish Dascyllus trimaculatus in the Red Sea, Arabian Sea and Western Indian Ocean, using 1174 single nucleotide polymorphisms (SNPs). Neutral loci revealed a signature of weak genetic differentiation between the Northwestern (Red Sea and Arabian Sea) and Western Indian Ocean biogeographic provinces. Loci potentially under selection (outlier loci) revealed a similar pattern but with a much stronger signal of genetic structure between regions. The Oman population appears to be genetically distinct from all other populations included in the analysis. While we could not clearly identify the mechanisms driving these patterns (isolation, adaptation or both), the datasets indicate that population-level divergences are largely concordant with biogeographic boundaries based on species composition. Our data can be used along with genetic connectivity of other species to identify the common genetic breaks that need to be considered for the conservation of biodiversity and evolutionary processes in the poorly studied Western Indian Ocean region.
机译:种群遗传分析是评估海洋生物进化连通性程度的重要工具。在这里,我们使用1174个单核苷酸多态性(SNPs)研究了红海,阿拉伯海和西印度洋上三点雀鲷Dascyllus trimaculatus的种群结构。中性位点揭示了西北地区(红海和阿拉伯海)与印度洋西部生物地理省份之间弱遗传分化的特征。可能处于选择状态的基因座(异常基因座)显示出相似的模式,但区域之间的遗传结构信号强得多。阿曼种群似乎在遗传上不同于分析中包括的所有其他种群。虽然我们无法清楚地确定驱动这些模式(隔离,适应或两者)的机制,但数据集表明,种群水平的差异与基于物种组成的生物地理边界在很大程度上是一致的。我们的数据可以与其他物种的遗传连通性一起使用,以识别在印度洋研究较少的地区,为保护生物多样性和进化过程需要考虑的常见遗传断裂。

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