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首页> 外文期刊>The American Midland Naturalist >Assessing Predation Risks for Small Fish in a Large River Ecosystem between Contrasting Habitats and Turbidity Conditions
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Assessing Predation Risks for Small Fish in a Large River Ecosystem between Contrasting Habitats and Turbidity Conditions

机译:评估生境和浊度条件之间相反的大型河流生态系统中小鱼的捕食风险

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摘要

This study examined predation risk for juvenile native fish between two riverine shoreline habitats, backwater and debris fan, across three discrete turbidity levels (low, intermediate, high) to understand environmental risks associated with habitat use in a section of the Colorado River in Grand Canyon, AZ. Inferences are particularly important to juvenile native fish, including the federally endangered humpback chub Gila cypha. This species uses a variety of habitats including backwaters which are often considered important rearing areas. Densities of two likely predators, adult rainbow trout Oncorhynchus mykiss and adult humpback chub, were estimated between habitats using binomial mixture models to examine whether higher predator density was associated with patterns of predation risk. Tethering experiments were used to quantify relative predation risk between habitats and turbidity conditions. Under low and intermediate turbidity conditions, debris fan habitat showed higher relative predation risk compared to backwaters. In both habitats the highest predation risk was observed during intermediate turbidity conditions. Density of likely predators did not significantly differ between these habitats. This information can help managers in Grand Canyon weigh flow policy options designed to increase backwater availability or extant turbidity conditions.
机译:这项研究调查了两个离散浊度水平(低,中,高)在两个河岸海岸线生境,回水和碎屑扇之间对幼年原生鱼的捕食风险,以了解与大峡谷科罗拉多河段的生境使用相关的环境风险,AZ。推论对于幼体本地鱼类尤其重要,其中包括联邦濒临灭绝的座头鲸吉拉小。该物种利用各种栖息地,包括通常被视为重要饲养区的死水。使用二项式混合模型估算了栖息地之间两个可能的捕食者密度,即成年虹鳟Onkihynchus mykiss和成年座头鲸,以检查更高的捕食者密度是否与捕食风险模式相关。系留实验用于量化生境和浊度条件之间的相对捕食风险。在低浊和中等浊度条件下,与死水相比,杂物扇栖息地显示出更高的相对捕食风险。在这两个生境中,在中等浊度条件下均观察到最高的捕食风险。这些栖息地之间的食肉动物密度没有显着差异。这些信息可以帮助大峡谷的管理者权衡旨在增加回水利用率或现有浊度条件的流量政策选择。

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