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首页> 外文期刊>Marine & freshwater research >Genetic analyses reveal limited dispersal and recovery potential in the large freshwater crayfish Euastacus armatus from the southern Murray-Darling Basin
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Genetic analyses reveal limited dispersal and recovery potential in the large freshwater crayfish Euastacus armatus from the southern Murray-Darling Basin

机译:遗传分析揭示了来自南部穆雷 - 达令盆地的大型淡水小龙虾Euastacus Armatus中的有限分散和恢复潜力

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摘要

Understanding dispersal traits and adaptive potential is critically important when assessing the vulnerability of freshwater species in highly modified ecosystems. The present study investigates the population genetic structure of the Murray crayfish Euastacus armatus in the southern Murray-Darling Basin. This species has suffered significant population declines in sections of the Murray River in recent years, prompting the need for information on natural recruitment processes to help guide conservation. We assessed allele frequencies from 10 polymorphic microsatellite loci across 20 sites encompassing the majority of the species' range. Low levels of gene flow were observed throughout hydrologically connected waterways, but significant spatial autocorrelation and low migration rate estimates reflect local genetic structuring and dispersal limitations, with home ranges limited to distances <50-km. Significant genetic differentiation of headwater populations upstream of barriers imposed by impoundments were also observed; however, population simulations demonstrate that these patterns likely reflect historical limitations to gene flow rather than contemporary anthropogenic impacts. Dispersal limitations, coupled with its biological traits, suggest that local populations are vulnerable to environmental disturbance with limited potential for natural recolonisation following population decline. We discuss the implications of these findings in the context of managing the recovery of the species.
机译:在评估高度修饰的生态系统中,在评估淡水种类的脆弱性时,了解分散性状和自适应潜力是至关重要的。本研究调查了南部默里达令盆地南部默里小龙虾Euastacus Armatus的遗传结构。近年来,该物种遭受了默里河的一节遭受了大幅度的下降,促使需要有关自然招聘流程的信息,以帮助引导保护。我们评估了来自10个网站的10个多态性微卫星基因座的等位基因频率,包括大部分物种范围的地点。在整个水文连接的水路中观察到低水平的基因流动,但是显着的空间自相关和低迁移率估计反映了局部遗传结构和分散局限性,其归属范围仅限于距离<50公里。还观察到蓄水污染屏障上游的下游血液群的显着遗传分化;然而,人口模拟表明,这些模式可能反映了基因流动而不是当代人为影响的历史局限性。与其生物学特性相结合的分散局限性表明,在人口下降后,当地人群容易受到环境干扰的影响有限的自然重新激发。我们在管理恢复物种的背景下讨论这些发现的影响。

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