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首页> 外文期刊>North American Journal of Fisheries Management >Importance of Flood Dynamics versus Intrinsic Physical Habitat inStructuring Fish Communities: Evidence from Two Adjacent EngineeredFloodplains on the Sacramento River, California
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Importance of Flood Dynamics versus Intrinsic Physical Habitat inStructuring Fish Communities: Evidence from Two Adjacent EngineeredFloodplains on the Sacramento River, California

机译:在构造鱼类群落中洪水动态与自然栖息地的重要性:来自加利福尼亚萨克拉曼多河上两个相邻的工程洪泛区的证据

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摘要

We examined the factors structuring fish communities at two adjacent engineered floodplain systems on the Sacramento River, California: Yolo and Sutter bypasses. We intensively sampled fishes at each location during January- June 2002 and 2004 by rotary screw trap, collecting a total of 126,635 fish comprised of 29 species. Nonmetric multidimensional scaling indicated that distinct fish communities persisted between the locations during our study, despite nearly identical hydrographs and water temperature regimes. Regression models evaluated with an information-theoretic approach also indicated that location was an important factor explaining the abundances of selected species. Overall, Yolo Bypass had more species and a greater proportion of native species than did Sutter Bypass. Sutter Bypass had a greater proportion of species classified as freshwater, while Yolo Bypass had a greater proportion of species classified as either estuarine or anadromous. We believe these results are related to substantial differences in the underlying physical habitat within the floodplains, which are primarily associated with connectivity to the adjacent river. Although the dynamic flooding that occurs at both locations appeared unable to override the underlying physical habitat differences in structuring the overall fish communities, it was important in controlling the abundances of two prominent native species, Chinook salmon Oncorhynchus tshawytscha and splittail Pogonichthys macrolepidotus, which represented 79% of all individuals collected; splittails spawn on the inundated floodplains, and age-0 individuals of both species use these areas as rearing habitat. Our results have important restoration implications in that they illustrate the importance of both flood pulse dynamics and underlying physical habitat associated with connectivity in structuring river-floodplain fish communities.
机译:我们研究了在加利福尼亚萨克拉曼多河上两个相邻的工程洪泛区系统中构成鱼类群落的因素:Yolo和Sutter旁路。我们在2002年1月至6月以及2004年1月至2004年6月期间通过旋转螺旋捕集器对每个地点的鱼类进行了密集采样,共收集了126,635条鱼类,其中包括29种。非度量多维标度表明,尽管水文图和水温状况几乎相同,但在我们的研究过程中,不同的鱼类群落仍然存在于这些地点之间。用信息论方法评估的回归模型还表明,位置是解释所选物种丰富度的重要因素。总体而言,与Sutter Bypass相比,Yolo Bypass拥有更多的物种和更多的本地物种。萨特绕道有较大比例的被分类为淡水的物种,而尤洛绕道具有较大的比例被划分为河口或过水的物种。我们认为,这些结果与洪泛区内潜在物理栖息地的实质性差异有关,而这些差异主要与与相邻河流的连通性有关。尽管在这两个地方发生的动态洪水似乎无法克服构造整个鱼类群落时潜在的自然栖息地差异,但对于控制两种主要的本地物种-奇努克鲑Oncorhynchus tshawytscha和裂尾Pogonichthys macrolepidotus的丰度很重要。收集的所有个人的百分比;大量的洪泛平原上产生了裂尾,这两个物种的0岁以下个体都将这些地区用作饲养栖息地。我们的结果具有重要的恢复意义,因为它们说明了洪水脉冲动力学和与连通性相关的潜在物理栖息地在构建河洪平原鱼类群落中的重要性。

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