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Low-head dams facilitate Round Goby Neogobius melanostomus invasion

机译:低头坝有助于圆形血管<重点类型=“斜体”> Neogobius melanostomus 入侵

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Abstract Round Goby Neogobius melanostomus invasion of the Grand River (Ontario, Canada) presents an opportunity to assess the role of abiotic gradients in mediating the establishment and impact of nonnative benthic fishes in rivers. In this system, sequential low-head dams delineate uninvaded and invaded river reaches and create upstream gradients of increasing water velocity. We hypothesized that flow refugia created by impounded reservoirs above low-head dams enhance local Round Goby abundance. Round Goby influence on the native fish community was determined by variance partitioning, and we used generalized additive models to identify small-bodied benthic fish species most likely to be impacted by Round Goby invasion. Round Goby abundance declined as the degree of reservoir effect decreased upstream. The distributions of four species (including the endangered Eastern Sand Darter Ammocrypta pellucida ) in invaded reaches were best explained by inclusion of both reservoir-associated abiotic variables and Round Goby abundance as model terms. To determine establishment potential of the uninvaded reach immediately upstream, four environmental habitat characteristics were used in discriminant function analysis (DFA) to predict three potential outcomes of introduction: non-invaded and either lower or higher Round Goby abundance (low and high invasion status, respectively) than the median number of Round Goby at invaded sites. Our DFA function correctly classified non-invaded and high-abundance invasion status sites >?85% of the time, with lower (73%) success in classifying low-abundance invasion status sites, and the spatial pattern of our results suggest that likelihood of establishment is greatest in impounded habitat.
机译:摘要圆形Goby Neogobius Melanostomus入侵大河(加拿大安大略省)提出了一个有机会评估非生物学梯度在中河内非健康鱼类的建立和影响方面的作用。在该系统中,序贯的低压坝描绘了未进入和入侵的河流,创造了增加水速度的上游梯度。我们假设由低头坝上的被扣押的储层产生的流动避难所增强了局部圆形丰富。对当地鱼群的圆形血糖影响由方差分配确定,我们使用广泛的添加剂模型来识别最有可能受到圆形曲面入侵影响的小体内底栖鱼类。随着储层效应程度下游减少,圆形曲面丰富下降。通过将储层相关的非生物变量和圆形曲面列为模型术语,最好通过将四种物种(包括濒临灭绝的东部砂Darter Ammocrypta Pellucida)的分布作为模型术语。要确定未丧失的达到的建立潜力立即上游,四种环境栖息地特征用于判别函数分析(DFA),以预测三种潜在的引言结果:非入侵和较低或更高的圆形大量(低侵入状态,分别比入侵地点的圆形曲面中位数。我们的DFA功能正确归类为非入侵和高丰富的入侵状态站点>?在被扣押的栖息地,建立最大。

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