首页> 外文期刊>Frontiers in Marine Science >A genome-wide approach to the phylogeography of the mussel Mytilus galloprovincialis in the Adriatic and the Black Seas
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A genome-wide approach to the phylogeography of the mussel Mytilus galloprovincialis in the Adriatic and the Black Seas

机译:全基因组方法对亚得里亚海和黑海贻贝Mytilus galloprovincialis的系统地理学研究

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Connectivity between populations shapes the genetic structure of species being crucial for an effective management of environmental resources. Genetic approaches can provide indirect measures of connectivity, allowing the identification of genetically differentiated - unconnected - populations. In this study, we applied a 2b-RAD approach based on hundreds of polymorphic loci to provide the first detailed insight into the population genomics of the Mediterranean mussel Mytilus galloprovincialis in part of its native geographical range. We sampled 19 localities within the Mediterranean and Black Seas, and analyzed a total of 478 samples. We detected strong differences between the two seas, whereas no differences were found between samples from the Western and Central Mediterranean and within Western Mediterranean samples. In the Central Mediterranean a significant differentiation emerged comparing Central Adriatic samples with those from South Adriatic and Ionian Seas. Furthermore, an East-to-West genetic structuring was found in the Central Adriatic Sea, which was not present in the Southern Adriatic and Ionian Seas. These results possibly reflect the local oceanography, with a Middle Adriatic gyre unable to prevent genetic differentiation in this species, and a Southern Adriatic gyre that effectively mixes propagules in Southern areas. In the Black Sea, no signal of genetic structure was found, although samples were spaced at similar distances as in the Adriatic-Ionian area. Genetic connectivity patterns of M. galloprovincialis reveal peculiar species-specific features respect to other species with similar larval duration, suggesting caution in using genetic connectivity data of single species in defining conservation units. We recommend of using genetic connectivity data of many species representing a variety of life history traits, and we call for new investigations using high resolution population genomics, particularly in the Black Sea, to understand if areas separated by hundreds of kilometers can be considered genetically connected as mussels’ data suggest. This information will be critical to ensure “a well-connected system of protected areas” according to Aichi Target 11 of the Convention on Biological Diversity.
机译:种群之间的连通性塑造了物种的遗传结构,对有效管理环境资源至关重要。遗传方法可以提供间接的连通性度量,从而可以识别出遗传分化的非关联种群。在这项研究中,我们应用了基于数百个多态性位点的2b-RAD方法,以了解地中海贻贝Mytilus galloprovincialis在其本地自然地理范围内的种群基因组学,这是第一个详细的见识。我们对地中海和黑海地区的19个地区进行了采样,总共分析了478个样本。我们检测到两个海域之间存在强烈差异,而在西地中海和中地中海以及西地中海内部的样本之间未发现差异。在地中海中部,将中亚得里亚海的样本与南亚得里亚海和爱奥尼亚海的样本相比较,出现了显着差异。此外,在亚得里亚海中部发现了东西方的遗传结构,而在亚得里亚海南部和爱奥尼亚海中则没有这种结构。这些结果可能反映了当地的海洋学,中亚得里亚海的回旋无法阻止该物种的遗传分化,而南亚得里亚海的回旋有效地混合了南部地区的繁殖体。在黑海,没有发现遗传结构的信号,尽管样品的间距与亚得里亚海-爱奥尼亚地区相似。 M. galloprovincialis的遗传连通性模式揭示了相对于其他具有相似幼虫持续时间的物种的特殊物种特定特征,这建议在定义保护单位时使用单个物种的遗传连通性数据要谨慎。我们建议使用代表各种生活史特征的许多物种的遗传连通性数据,并呼吁使用高分辨率种群基因组学(尤其是在黑海地区)进行新的研究,以了解是否可以将相隔数百公里的地区视为具有遗传联系的地区正如贻贝的数据表明的那样。根据《生物多样性公约》爱知指标11,这些信息对于确保“保护区系统互联”至关重要。

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