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首页> 外文期刊>Transactions of the American Fisheries Society >Factors Influencing Stream Fish Species Composition and Functional Properties at Multiple Spatial Scales in the Sand Hills of the Southeastern United States
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Factors Influencing Stream Fish Species Composition and Functional Properties at Multiple Spatial Scales in the Sand Hills of the Southeastern United States

机译:在美国东南部沙丘的多个空间尺度上影响流鱼种类组成和功能特性的因素

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摘要

An understanding of how fish communities differ among river basin, watershed, and stream reach spatial scales and the factors that influence these differences can help in the design of effective conservation programs and the development of reference models that appropriately represent biota under relatively undisturbed conditions. We assessed the heterogeneity among fish assemblages in first-to fourth-order stream sites from four river basins ( Savannah, Chattahoochee, Cape Fear, and Pee Dee rivers) within the Sand Hills ecoregion of the southeastern USA and compared it with the heterogeneity associated with watershed and stream reach spatial scales. Fifty-five species of fish representing 15 families were collected by electrofishing, with the most speciose families being Cyprinidae, Centrarchidae, Percidae, Ictaluridae, and Catostomidae. Constrained ordination identified clearly demarcated species assemblages among river basins as well as subbasin environmental variables that affected fish species composition; the amounts of variance attributable to basin, watershed, and stream reach spatial scales were roughly equivalent. Prominent differences occurred between Gulf of Mexico coast and Atlantic coast river basins, but differences among Atlantic coast basins were also apparent. Key variables at the watershed scale included watershed size, relief, extent of anthropogenic disturbance, and forest cover; key variables at the stream reach scale included instream habitat quality, proximity to a larger stream, and stream width. Fish assemblage collective and functional properties were more strongly influenced by variables acting at watershed and stream reach spatial scales than by differences among basins. Species richness peaked at intermediate levels of habitat quality as a likely result of biotic homogenization, indicating that the least disturbed sites within the region do not necessarily possess the highest species richness. Failure to consider this may lead to the overrating of moderately disturbed sites and the underrating of minimally disturbed sites, thus contributing to false conclusions about fish assemblage integrity.
机译:了解河流流域,流域和河流之间的鱼类群落如何不同,达到空间尺度,影响这些差异的因素可以帮助设计有效的保护计划,并开发出在相对不受干扰的条件下适当代表生物群的参考模型。我们评估了美国东南部Sand Hills生态区内四个河流域(萨凡纳,查塔胡奇,Cape Fear和Pee Dee河)一到四阶流域鱼群之间的异质性,并将其与相关的异质性进行了比较。分水岭和河流达到空间尺度。通过电捕鱼收集了代表15个科的55种鱼类,其中最特异的科是Cy科,Centr科,Per科,科和科。受约束的排序确定了在流域之间清楚划分的物种组合以及影响鱼类物种组成的亚盆地环境变量;流域,流域和河流达到空间尺度的方差量大致相等。墨西哥湾沿岸流域和大西洋沿岸流域之间存在显着差异,但大西洋沿岸流域之间也存在明显差异。分水岭规模的关键变量包括分水岭的大小,缓解程度,人为干扰的程度和森林覆盖率;河流达到规模的关键变量包括河流栖息地质量,与较大河流的接近程度和河流宽度。鱼群的集体和功能特性受流域和河流达到空间尺度的变量的影响比受流域差异的影响更大。生物均质化的结果可能是物种丰富度达到栖息地质量的中间水平,这表明该地区受干扰最少的地区不一定具有最高物种丰富度。如果不考虑这一点,可能会导致中度受干扰的地点被高估,而受轻微干扰的地点则被低估,从而导致有关鱼类组合完整性的错误结论。

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