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在不同的空间尺度上对受威胁的地中海珊瑚 Astroides calycularis(Scleractinia,Dendrophylliidae)的种群结构和连通性进行遗传评估。

Genetic assessment of population structure and connectivity in the threatened Mediterranean coral Astroides calycularis (Scleractinia, Dendrophylliidae) at different spatial scales.

机构信息

Departamento de Biodiversidad y Biología Evolutiva, Museo Nacional de Ciencias Naturales (MNCN-CSIC), Madrid, Spain.

出版信息

Mol Ecol. 2012 Aug;21(15):3671-85. doi: 10.1111/j.1365-294X.2012.05655.x. Epub 2012 May 31.

DOI:10.1111/j.1365-294X.2012.05655.x
PMID:22646530
Abstract

Understanding dispersal patterns, population structure and connectivity among populations is helpful in the management and conservation of threatened species. Molecular markers are useful tools as indirect estimators of these characteristics. In this study, we assess the population genetic structure of the orange coral Astroides calycularis in the Alboran Sea at local and regional scale, and at three localities outside of this basin. Bayesian clustering methods, traditional F-statistics and D(est) statistics were used to determine the patterns of genetic structure. Likelihood and coalescence approaches were used to infer migration patterns and effective population sizes. The results obtained reveal a high level of connectivity among localities separated by as much as 1 km and moderate levels of genetic differentiation among more distant localities, somewhat corresponding with a stepping-stone model of gene flow and connectivity. These data suggest that connectivity among populations of this coral is mainly driven by the biology of the species, with low dispersal abilities; in addition, hydrodynamic processes, oceanographic fronts and the distribution of rocky substrate along the coastline may influence larval dispersal.

摘要

了解扩散模式、种群结构和种群间的连通性有助于受威胁物种的管理和保护。分子标记是间接估计这些特征的有用工具。在这项研究中,我们评估了在阿尔沃兰海以及盆地外三个地点的橙色珊瑚 Astroides calycularis 的种群遗传结构,在局部和区域尺度上进行了评估。贝叶斯聚类方法、传统的 F 统计量和 D(est)统计量用于确定遗传结构模式。似然和合并方法用于推断迁移模式和有效种群大小。所得结果表明,即使在相隔 1 公里的地方,遗传结构也具有高度的连通性,而在更远的地方则存在中度的遗传分化,这与基因流动和连通性的踏脚石模型有些对应。这些数据表明,该珊瑚的种群间的连通性主要是由物种的生物学驱动的,其扩散能力较低;此外,水动力过程、海洋学锋面和沿海岸线的岩石基质分布可能会影响幼虫的扩散。

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