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Genetic structure in the Mediterranean seagrass Posidonia oceanica: disentangling past vicariance events from contemporary patterns of gene flow

机译:地中海海草波塞冬海洋中的遗传结构:从当代的基因流模式中解脱过去的变异事件

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摘要

The Mediterranean Sea is a two-basin system, with the boundary zone restricted to the Strait of Sicily and the narrow Strait of Messina. Two main population groups are recognized in the Mediterranean endemic seagrass Posidonia oceanica, corresponding to the Western and the Eastern basins. To address the nature of the East-West cleavage in P. oceanica, the main aims of this study were: (i) to define the genetic structure within the potential contact zone (i. e. the Strait of Sicily) and clarify the extent of gene flow between the two population groups, and (ii) to investigate the role of present water circulation patterns vs. past evolutionary events on the observed genetic pattern. To achieve these goals, we utilized SSR markers and we simulated, with respect to current regime, the possible present-day dispersal pattern of Posidonia floating fruits using 28-day numerical Lagrangian trajectories. The results obtained confirm the presence of the two main population groups, without any indices of reproductive isolation, with the break zone located at the level of the Southern tip of Calabria. The populations in the Strait of Sicily showed higher affinity with Western than with Eastern populations. This pattern of genetic structure probably reflects historical avenues of recolonization from relict glacial areas and past vicariance events, but seems to persist as a result of the low connectivity among populations via marine currents, as suggested by our dispersal simulation analysis.
机译:地中海是一个由两个盆地组成的系统,其边界区域仅限于西西里海峡和墨西拿狭窄海峡。地中海地区特有的海草波西多尼亚大洋洲有两个主要的种群,分别对应于西部和东部盆地。为了解决海洋体育中东西裂的性质,本研究的主要目的是:(i)定义潜在接触区(即西西里海峡)内的遗传结构,并阐明基因流动的程度两个种群之间的关系;(ii)调查当前水循环模式与过去的进化事件在观察到的遗传模式中的作用。为了实现这些目标,我们利用了SSR标记,并针对当前的情况,使用28天的数值拉格朗日轨迹模拟了波西多尼亚漂浮水果的当前可能的扩散模式。获得的结果证实了这两个主要种群的存在,没有任何生殖隔离指数,其断裂带位于卡拉布里亚南端的水平。西西里海峡的人口对西方的亲和力高于对东方的亲和力。这种遗传结构模式可能反映了遗迹冰河地区重新定殖的历史途径和过去的破坏事件,但由于我们的离散模拟分析表明,由于洋流引起的种群之间的连通性低,这种遗传结构仍然存在。

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