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首页> 外文期刊>Biological Conservation >The role of life-history and location of barriers to migration in the spatial distribution and conservation of fish assemblages in a coastal river system
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The role of life-history and location of barriers to migration in the spatial distribution and conservation of fish assemblages in a coastal river system

机译:生活史和迁徙障碍的位置在沿海河流系统中鱼类种群的空间分布和保护中的作用

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Water resource development in coastal river catchments contributes to poor fish assemblage health due to the effects of barriers to migration and altered flow regimes. Impacts of migration barriers on fish assemblages depend primarily on the location of each barrier within the river network and migration needs of regional fish fauna. This study examined how temporal and spatial patterns in the distribution and composition of fish assemblages was associated with varying estuarine connectivity and migration barriers in higher altitude reaches in the eastern Hunter River catchment, temperate Australia. Species richness and abundances of diadromous species were expected to be greater in a tributary catchment with unrestricted connectivity to the Hunter River estuary when compared to a neighbouring tributary catchment with restricted connectivity. Six diadromous species were sampled only, or in greater abundances, in the unrestricted tributary when compared to the restricted tributary. As a consequence, assemblage composition in the restricted tributary was dominated by non-diadromous species. Greater abundances of the amphidromous Cox's gudgeon (Gobiomorphus coxii) were sampled in the unrestricted tributary following their estuarine-freshwater upstream juvenile migration period when compared to the restricted tributary. Differences in the accumulations of migratory species immediately downstream of upland barriers between the two levels of estuary connectivity indicate that migration barriers in lowland reaches have significant effects throughout the entire catchment. Results of this study indicate that the location of each barrier to migration within river networks has varying consequences for catchment-scale connectivity loss and assessing the impacts of multiple barriers. Determining the effects and most appropriate management of migration barriers requires that all obstructions within a river network are recognised, as multiple barriers can have cumulative and interacting consequences for freshwater fish fauna, especially diadromous species.
机译:由于移民壁垒和水流变化的影响,沿海河流集水区的水资源开发导致鱼群健康状况恶化。迁徙障碍对鱼类种群的影响主要取决于每个障碍在河网内的位置以及区域鱼类区系的迁徙需求。这项研究调查了澳大利亚温带地区东部亨特河流域高海拔地区鱼群的分布和组成的时空格局如何与变化的河口连通性和迁徙障碍相关。与邻近的具有限制连通性的支流集水区相比,在与亨特河河口连通性不受限制的支流集水区中,缺铁物种的物种丰富度和丰富度预计将更高。与限制性支流相比,仅在非限制性支流中采样了六种铁锈菌物种,或者以更大的数量采样了该物种。结果,受限制的支流中的组合物成分主要由非透水物种组成。与限制支流相比,在河口-淡水上游幼鱼迁移期之后,在非限制支流采样了更多数量的两栖性考克斯氏g(Gobiomorphus coxii)。在两个河口连通性水平之间,高地屏障下游紧邻的迁徙物种的积累差异表明,低地河段的迁徙屏障在整个集水区都有重要影响。这项研究的结果表明,河流网络中每个迁移障碍的位置对流域规模的连通性损失以及评估多个障碍的影响都有不同的后果。确定迁移壁垒的影响并采取最适当的管理措施,必须认识到河网内的所有障碍物,因为多种壁垒可能对淡水鱼类动物特别是二线鱼类产生累积和相互作用的后果。

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