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Resolving species identification problems in the genus Sebastes using nuclear genetic markers

机译:利用核遗传标记解决塞巴斯蒂斯属的物种识别问题

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The identification of North Atlantic redfish has been controversial and remains a difficult task due to overlapping of meristic and morphological characters. Here we used nine microsatellite loci to assess the level of genetic differentiation among these species and assess the resolution power of these microsatellite loci for individual assignment-based analyses. Conventional analyses as well as individual Bayesian assignment methods clearly separated the four species of North Atlantic redfish as well as the giant form of Sebastes marinus and the so-called ''oceanic'' and ''deep-sea'' types of Sebastes mentella. Locus-by-locus analyses revealed that only five microsatellite loci out of nine used could discriminate the concerned species. The advantage of the Bayesian methods relies in the individual information retrieved. It therefore gave additional information on the interrelationship among species. Indeed, we provide evidence of potential hybridization among species as well as individual misclassification based on morphological identification. We provide a powerful tool to discriminate North Atlantic redfish species, which might be useful for legal issues such as poaching, unintentional harvesting and control label.
机译:北大西洋红鱼的鉴定一直是有争议的,由于meristic和形态特征的重叠,仍然是一项艰巨的任务。在这里,我们使用了9个微卫星基因座来评估这些物种之间的遗传分化水平,并评估这些微卫星基因座的分辨率,以进行基于个体分配的分析。常规分析以及单个贝叶斯分配方法清楚地将北大西洋红鱼的四种种类以及巨大的海鲈(Sebastes marinus)以及所谓的“海洋”和“深海”型海鲈进行了分离。按位点进行的分析表明,在使用的九个微卫星基因座中,只有五个可以区分相关物种。贝叶斯方法的优势在于检索到的单个信息。因此,它提供了有关物种之间相互关系的更多信息。实际上,我们提供了物种间潜在杂交以及基于形态学识别的个体错误分类的证据。我们提供了一个强大的工具来区分北大西洋红鱼物种,这可能对诸如偷猎,无意捕捞和控制标签等法律问题很有用。

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