首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >The role of anthropogenic vs. natural in-stream structures in determining connectivity and genetic diversity in an endangered freshwater fish Macquarie perch (Macquaria australasica)
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The role of anthropogenic vs. natural in-stream structures in determining connectivity and genetic diversity in an endangered freshwater fish Macquarie perch (Macquaria australasica)

机译:人为与自然河流结构在确定濒危淡水鱼麦格理鲈(Macquaria australasica)的连通性和遗传多样性中的作用

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摘要

Habitat fragmentation is one of the leading causes of population declines, threatening ecosystems worldwide. Freshwater taxa may be particularly sensitive to habitat loss as connectivity between suitable patches of habitat is restricted not only by the natural stream network but also by anthropogenic factors. Using a landscape genetics approach, we assessed the impact of habitat availability on population genetic diversity and connectivity of an endangered Australian freshwater fish Macquarie perch, Macquaria australasica (Percichthyidae). The relative contribution of anthropogenic versus natural in-stream habitat structures in shaping genetic structure and diversity in M. australasica was quite striking. Genetic diversity was significantly higher in locations with a higher river slope, a correlate of the species preferred habitat – riffles. On the other hand, barriers degrade preferred habitat and impede dispersal, contributing to the degree of genetic differentiation among populations. Our results highlight the importance of landscape genetics to understanding the environmental factors affecting freshwater fish populations and the potential practical application of this approach to conservation management of other freshwater organisms.
机译:生境破碎化是人口减少的主要原因之一,威胁着全世界的生态系统。淡水类群可能对生境丧失特别敏感,因为合适的生境斑块之间的连通性不仅受到自然河流网络的限制,还受到人为因素的限制。使用景观遗传学方法,我们评估了栖息地的可利用性对濒危的澳大利亚淡水鱼类麦格理鲈(Macquaria australasica)(Percichthyidae)种群遗传多样性和连通性的影响。人为与自然流域栖息地结构在塑造南美洲莫拉氏菌的遗传结构和多样性方面的相对贡献是惊人的。在河坡较高的地区,遗传多样性显着较高,这与物种偏爱的栖息地-浅滩有关。另一方面,壁垒会降低首选栖息地的质量并阻碍其扩散,从而加剧了人群之间的遗传分化程度。我们的结果强调了景观遗传学对于理解影响淡水鱼种群的环境因素的重要性,以及这种方法在其他淡水生物保护管理中的潜在实际应用。

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