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Phylogeography, historical demography and habitat suitability modelling of freshwater fishes inhabiting seasonally fluctuating Mediterranean river systems: a case study using the Iberian cyprinid Squalius valentinus

机译:居住在季节性波动的地中海河流系统中的淡水鱼类的植物地理学,历史人口学和栖息地适宜性模型:使用伊比利亚鲤科鱼类Squalius valentinus的案例研究

摘要

The Mediterranean freshwater fish fauna has evolved under constraints imposed by the seasonal weather/hydrological patterns that define the Mediterranean climate. These conditions have influenced the genetic and demographic structure of aquatic communities since their origins in the Mid-Pliocene. Freshwater species in Mediterranean-type climates will likely constitute genetically well-differentiated populations, to varying extents depending on basin size, as a consequence of fragmentation resulting from drought/flood cycles. We developed an integrative framework to study the spatial patterns in genetic diversity, demographic trends, habitat suitability modelling and landscape genetics, to evaluate the evolutionary response of Mediterranean-type freshwater fish to seasonal fluctuations in weather. To test this evolutionary response, the model species used was Squalius valentinus, an endemic cyprinid of the Spanish Levantine area, where seasonal weather fluctuations are extreme, although our findings may be extrapolated to other Mediterranean-type species. Our results underscore the significant role of the Mediterranean climate, along with Pleistocene glaciations, in diversification of S. valentinus. We found higher nuclear diversity in larger drainage basins, but higher mitochondrial diversity correlated to habitat suitability rather than basin size. We also found strong correlation between genetic structure and climatic factors associated with Mediterranean seasonality. Demographic and migration analyses suggested population expansion during glacial periods that also contributed to the current genetic structure of S. valentinus populations. The inferred models support the significant contribution of precipitation and temperature to S. valentinus habitat suitability and allow recognizing areas of habitat stability. We highlight the importance of stable habitat conditions, fostered by typical karstic springs found on the Mediterranean littoral coasts, for the preservation of freshwater species inhabiting seasonally fluctuating river systems.
机译:地中海淡水鱼类动物群是在限定地中海气候的季节性天气/水文模式所施加的限制下进化的。自从它们起源于上新世中期以来,这些条件已经影响了水生群落的遗传和人口结构。由于干旱/洪水周期造成的破碎化,地中海型气候中的淡水物种很可能构成遗传上高度分化的种群,在不同程度上取决于流域的大小。我们开发了一个综合框架来研究遗传多样性,人口趋势,栖息地适应性建模和景观遗传学中的空间格局,以评估地中海型淡水鱼对天气季节性波动的进化响应。为了测试这种进化反应,使用的模型物种是西班牙黎凡特地区的特有塞浦路斯鲨鱼Squalius valentinus,该地区的季节性天气波动非常剧烈,尽管我们的发现可能推断为其他地中海型物种。我们的结果强调了地中海气候以及更新世的冰川作用在瓦伦丁链球菌的多样化中的重要作用。我们发现较大流域的核多样性较高,但线粒体多样性与栖息地的适宜性而不是流域大小有关。我们还发现,遗传结构与与地中海季节性相关的气候因素之间具有很强的相关性。人口统计学和迁徙分析表明,冰河时期的人口扩张,这也为目前的华氏链球菌种群遗传结构做出了贡献。推断的模型支持降水和温度对华伦泰链球菌栖息地适应性的重要贡献,并能够识别栖息地稳定性的区域。我们强调由地中海沿岸沿海典型的岩溶泉水培育的稳定栖息地条件对于保护生活在季节性波动的河流系统中的淡水物种的重要性。

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