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从全球到红柳珊瑚 Paramuricea clavata 的局部遗传结构:海洋条件和有限的幼虫扩散之间的相互作用。

From global to local genetic structuring in the red gorgonian Paramuricea clavata: the interplay between oceanographic conditions and limited larval dispersal.

机构信息

Aix-Marseille Université, CNRS UMR 6540 DIMAR, Centre d'Océanologie de Marseille, Station Marine d'Endoume, Chemin de la Batterie des Lions, 13007 Marseille, France.

出版信息

Mol Ecol. 2011 Aug;20(16):3291-305. doi: 10.1111/j.1365-294X.2011.05176.x. Epub 2011 Jul 18.

Abstract

Defining the scale of connectivity among marine populations and identifying the barriers to gene flow are tasks of fundamental importance for understanding the genetic structure of populations and for the design of marine reserves. Here, we investigated the population genetic structure at three spatial scales of the red gorgonian Paramuricea clavata (Cnidaria, Octocorallia), a key species dwelling in the coralligenous assemblages of the Mediterranean Sea. Colonies of P. clavata were collected from 39 locations across the Mediterranean Sea from Morocco to Turkey and analysed using microsatellite loci. Within three regions (Medes, Marseille and North Corsica), sampling was obtained from multiple locations and at different depths. Three different approaches (measures of genetic differentiation, Bayesian clustering and spatially explicit maximum-difference algorithm) were used to determine the pattern of genetic structure. We identified genetic breaks in the spatial distribution of genetic diversity, which were concordant with oceanographic conditions in the Mediterranean Sea. We revealed a high level of genetic differentiation among populations and a pattern of isolation by distance across the studied area and within the three regions, underlining short effective larval dispersal in this species. We observed genetic differentiation among populations in the same locality dwelling at different depths, which may be explained by local oceanographic conditions and which may allow a process of local adaptation of the populations to their environment. We discuss the implications of our results for the conservation of the species, which is exposed to various threats.

摘要

定义海洋种群之间的连通性规模并确定基因流动的障碍是理解种群遗传结构和设计海洋保护区的基本任务。在这里,我们研究了地中海红柳珊瑚(Paramuricea clavata)(刺胞动物门,八放珊瑚亚纲)的三个空间尺度的种群遗传结构,该物种是地中海珊瑚群集的关键物种。从摩洛哥到土耳其的地中海范围内的 39 个地点采集了 P. clavata 的殖民地,并使用微卫星基因座进行了分析。在三个地区(梅德斯、马赛和北科西嘉),从多个地点和不同深度进行了采样。使用三种不同的方法(遗传分化测量、贝叶斯聚类和空间显式最大差异算法)来确定遗传结构模式。我们确定了遗传多样性的空间分布中的遗传断裂,这与地中海的海洋条件一致。我们发现,在所研究的区域和三个地区内,种群之间存在高水平的遗传分化和距离隔离模式,这突出了该物种的幼虫有效扩散能力较短。我们观察到在同一地点不同深度栖息的种群之间存在遗传分化,这可能是由当地的海洋条件引起的,并且可能允许种群对其环境进行局部适应。我们讨论了我们的研究结果对面临各种威胁的物种保护的影响。

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