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Unravelling population genetic structure with mitochondrial DNA in a notional panmictic coastal crab species: sample size makes the difference

机译:名义上的沿海大闸蟹物种的线粒体DNA揭示了种群遗传结构:样本量使差异

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摘要

BackgroundThe extent of genetic structure of a species is determined by the amount of current gene flow and the impact of historical and demographic factors. Most marine invertebrates have planktonic larvae and consequently wide potential dispersal, so that genetic uniformity should be common. However, phylogeographic investigations reveal that panmixia is rare in the marine realm. Phylogeographic patterns commonly coincide with geographic transitions acting as barriers to gene flow. In the Mediterranean Sea and adjoining areas, the best known barriers are the Atlantic-Mediterranean transition, the Siculo-Tunisian Strait and the boundary between Aegean and Black seas. Here, we perform the so far broadest phylogeographic analysis of the crab Pachygrapsus marmoratus, common across the north-eastern Atlantic Ocean, Mediterranean and Black seas. Previous studies revealed no or weak genetic structuring at meso-geographic scale based on mtDNA, while genetic heterogeneity at local scale was recorded with microsatellites, even if without clear geographic patterns. Continuing the search for phylogeographic signal, we here enlarge the mtDNA dataset including 51 populations and covering most of the species’ distribution range.
机译:背景技术一个物种的遗传结构范围取决于当前的基因流量以及历史和人口因素的影响。大多数海洋无脊椎动物具有浮游性幼虫,因此潜在的扩散范围很广,因此遗传均匀性应该很普遍。但是,植物学研究表明,在海洋领域中,全民混血症很少见。系谱学模式通常与地理转变相吻合,成为基因流动的障碍。在地中海及其毗邻地区,最著名的障碍是大西洋-地中海过渡,西库洛-突尼斯海峡以及爱琴海和黑海之间的边界。在这里,我们对东北大西洋,地中海和黑海常见的蟹Pachygrapsus marmoratus进行了迄今为止最广泛的系统地理学分析。先前的研究表明,基于mtDNA的中地理尺度上没有或没有较弱的遗传结构,而即使没有明确的地理模式,也有微小卫星记录了局部尺度的遗传异质性。继续寻找植物地理信号,我们在这里扩大了mtDNA数据集,包括51个种群,涵盖了大多数物种的分布范围。

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