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Population genetic structure of common bottlenose dolphins (Tursiops truncatus) in the Adriatic Sea and contiguous regions: implications for international conservation

机译:亚得里亚海及邻近地区的普通宽吻海豚(Tursiops truncatus)的种群遗传结构:对国际保护的影响

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1. Habitat diversity plays a significant role in shaping the genetic structure of cetacean populations. However, the processes involved in defining the genetic differentiation of these highly mobile marine mammals are still largely unknown. 2. Levels of genetic differentiation and dispersal patterns of common bottlenose dolphins (Tursiops truncatus) were assessed in the north-eastern Mediterranean Sea, with a focus on the Adriatic Sea. This is a region characterized by diverse marine ecosystems and high levels of human-induced habitat degradation. 3. Although this species seems almost uniformly distributed throughout the Adriatic Basin, genetic evidence rejected the hypothesis of a single stock. Pairwise estimates of genetic differentiation at 12 microsatellite loci, and mitochondrial DNA (entire control region, 920bp), revealed diverse levels of genetic differentiation among five putative populations from the Tyrrhenian Sea to the Aegean Sea. 4. A fine-scale genetic structure was recorded within the Adriatic Sea, where females appear to be the principal gene flow mediators. The assessment of recent migration rates indicates a relatively high level of gene flow from the North Adriatic towards adjacent areas. 5. Indication of a fine-scale population structure across the Adriatic Sea is a factor to be carefully considered in the emerging marine management scenario set by the implementation of the EU Marine Strategy Framework Directive (2008/56/CE), particularly when it comes to assessing and managing direct mortality caused by human activities (e.g. fisheries or maritime traffic). A good knowledge of population structure at the basin level is also fundamental for the identification of potential Adriatic Special Areas of Conservation for the bottlenose dolphin under the Habitats Directive (Council Directive 92/43/EEC). Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:1.栖息地多样性在塑造鲸类种群的遗传结构中起重要作用。然而,在很大程度上仍然不清楚涉及定义这些高度活动的海洋哺乳动物的遗传分化的过程。 2.在东北地中海,以亚得里亚海为重点,对普通宽吻海豚(Tursiops truncatus)的遗传分化水平和分布模式进行了评估。这个地区的特点是海洋生态系统多样,人类造成的栖息地退化程度很高。 3.尽管该物种似乎在整个亚得里亚海盆中几乎是均匀分布的,但遗传证据拒绝了单一种群的假说。对在12个微卫星基因座和线粒体DNA(整个控制区,920bp)处的遗传分化的成对估计,揭示了从第勒尼安海到爱琴海的五个假定种群的遗传分化水平不同。 4.在亚得里亚海内记录了精细的遗传结构,其中雌性似乎是主要的基因流介体。对最近迁移率的评估表明,从北亚得里亚海流向邻近地区的基因流水平相对较高。 5.在执行《欧盟海洋战略框架指令》(2008/56 / CE)制定的新兴海洋管理方案中,特别是在涉及到亚得里亚海的情况下,要仔细考虑整个亚得里亚海人口结构的一个因素。评估和管理由人类活动(例如渔业或海上交通)造成的直接死亡率。对流域一级的人口结构有充分的了解对于确定栖息地指令(理事会指令92/43 / EEC)中的宽吻海豚潜在的亚得里亚海特别保护区也是至关重要的。版权所有(c)2013 John Wiley&Sons,Ltd.

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