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首页> 外文期刊>Northeastern Naturalist >Fish Assemblages in the Upper Esopus Creek, NY: Current Status, Variability, and Controlling Factors
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Fish Assemblages in the Upper Esopus Creek, NY: Current Status, Variability, and Controlling Factors

机译:纽约州上埃索斯普斯克里克的鱼群:现状,变异性和控制因素

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The Upper Esopus Creek receives water diversions from a neighboring basin through the Shandaken Tunnel (the portal) from the Schoharie Reservoir. Although the portal is closed during floods, mean flows and turbidity of portal waters are generally greater than in Esopus Creek above their confluence. These conditions could potentially affect local fish assemblages, yet such effects have not been assessed in this highly regulated stream. We studied water quality, hydrology, temperature, and fish assemblages at 18 sites in the Upper Esopus Creek during 2009-2011 to characterize the effects of the portal input on resident-fish assemblages and to document the status of the fishery resource. In general, fish-community richness increased by 2-3 species at mainstem sites near the portal, and median density and biomass of fish communities at sites downstream of the portal were significantly lower than they were at sites upstream of the portal. Median densities of Salmo trutta (Brown Trout) and all trout species were significantly lower than at mainstem sites downstream from the portal-25.1 fish/0.1 ha and 148.9 fish/0.1 ha, respectively-than at mainstem sites upstream from the portal-68.8 fish/0.1 ha and 357.7 fish/0.1 ha, respectively-yet median biomass for Brown Trout and all trout did not differ between sites from both reaches. The median density of young-of-year Brown Trout at downstream sites (9.3 fish/0.1 ha) was significantly lower than at upstream sites (33.9 fish/0.1 ha). Waters from the portal appeared to adversely affect the density and biomass of young-of-year Brown Trout, but lower temperatures and increased flows also improved habitat quality for mature trout at downstream sites during summer. These findings, and those from companion studies, indicate that moderately turbid waters from the portal had few if any adverse impacts on trout populations and overall fish communities in the Upper Esopus Creek during this study.
机译:Esopus上游河流通过Schoharie水库通过Shandaken隧道(入口)从附近的盆地接受引水。尽管在洪灾期间关闭了门户,但门户水域的平均流量和浊度通常比汇合处上方的Esopus Creek大。这些条件可能会影响当地鱼类的聚集,但尚未在这种高度管制的河流中评估这种影响。我们在2009-2011年期间研究了Esopus Creek上游18个地点的水质,水文,温度和鱼类种群,以表征门户输入对居民鱼类种群的影响并记录渔业资源的状况。一般而言,在门户附近的主干地点,鱼类群落的丰富度增加了2-3种,并且门户下游的鱼类群落的中位密度和生物量显着低于门户上游的鱼类。鳟(鳟鱼)和所有鳟鱼种类的中值密度分别低于门户25.1鱼类/0.1公顷和148.9鱼类/0.1公顷下游的主干部位,而低于门户68.8鱼类上游的主干部位。 /鳟鱼的中位生物量分别为/0.1公顷和357.7鱼类/0.1公顷,但两个地区之间的鳟鱼中位生物量没有差异。下游地点年幼幼鳟的中密度(9.3鱼类/0.1公顷)显着低于上游地点(33.9鱼类/0.1公顷)。入口处的水似乎对年幼的鳟鱼的密度和生物量产生不利影响,但是在夏季,较低的温度和增加的流量也改善了下游鳟鱼的生境质量。这些发现以及相关研究的结果表明,在此研究期间,来自门户的适度混浊水对鳟鱼种群和整个Esopus Creek的总体鱼类群落几乎没有不利影响。

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