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Coastal pollution limits pelagic larval dispersal

机译:沿海污染限制了上层幼体的扩散

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The ecological impact of large coastal human populations on marine ecosystems remains relatively unknown. Here, we examine the population structure of Patiria miniata, the bat star, and correlate genetic distances with a model based on flow rates and proximity to P. miniata populations for the four major stormwater runoff and wastewater effluent sources of the Southern California Bight. We show that overall genetic connectivity is high (FST~0.005); however, multivariate analyses show that genetic structure is highly correlated with anthropogenic inputs. The best models included both stormwater and wastewater variables and explained between 26.55 and 93.69% of the observed structure. Additionally, regressions between allelic richness and distance to sources show that populations near anthropogenic pollution have reduced genetic diversity. Our results indicate that anthropogenic runoff and effluent are acting as barriers to larval dispersal, effectively isolating a high gene flow species that is virtually free of direct human impact.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:沿海人口众多对海洋生态系统的生态影响仍然相对未知。在这里,我们检查了蝙蝠星Patiria miniata的种群结构,并将遗传距离与基于流量的模型以及南加州湾的四个主要雨水径流和废水排放源的对P. miniata种群的接近程度进行了关联。结果表明,总体遗传连通性较高(F ST 〜0.005);然而,多变量分析表明,遗传结构与人为输入高度相关。最佳模型包括雨水和废水变量,并解释了观测结构的26.55%至93.69%。此外,等位基因丰富度与到源的距离之间的回归表明,接近人为污染的种群减少了遗传多样性。我们的结果表明,人为径流和污水是幼虫扩散的障碍,有效地隔离了几乎不受人类直接影响的高基因流物种。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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