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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Barriers to upstream passage by two migratory sculpins, prickly sculpin (Cottus asper) and coastrange sculpin (Cottus aleuticus), in northern Puget Sound lowland streams
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Barriers to upstream passage by two migratory sculpins, prickly sculpin (Cottus asper) and coastrange sculpin (Cottus aleuticus), in northern Puget Sound lowland streams

机译:在北部普吉特海湾低地溪流中,两个迁徙的杜鹃(多刺的杜鹃(Cottus asper)和沿海的杜鹃(Cottus aleuticus))在上游通过的障碍

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摘要

We identified and characterized barriers to the upstream distribution by prickly sculpin (Cottus asper) and coastrange sculpin (Cottus aleuticus), based on their longitudinal distribution in 11 streams in the Puget Sound lowlands of Washington State. Eight streams had upstream limits associated with particular instream structures, and these were compared to distinguish features of barriers and non-barriers. In seven streams perch height greater than 15 cm resulted in a complete barrier. In one stream water velocity >4 m.s(-1) created a partial barrier. Five of the eight barriers were one-or two-step fish ladders installed to facilitate upstream passage of Pacific salmon and trout. Water quality, physical habitat, and the presence of other fishes were not related to the presence or absence of sculpin species. Fish passage criteria in western North American streams are based on the swimming abilities of Pacific salmon and trout, without consideration for other, less motile native fishes. Structures installed to surmount previously identified impediments to upstream migration continue to inhibit sculpin movement, resulting in loss of upstream habitats for adults, with potential consequences to population size and trophic dynamics.
机译:基于华盛顿州普吉特海湾低地的11条溪流的纵向分布,我们确定了刺p(Cottus asper)和海岸range(Cottus aleuticus)上游分布的障碍,并对其进行了表征。八股河流的上游限制与特定的河道结构相关,并进行了比较以区分障碍和非障碍的特征。在七个溪流中,栖息高度超过15厘米会形成完全的屏障。在一条水流中,水速> 4 m.s(-1)形成了部分屏障。八个障碍中的五个是安装一到两步的鱼梯,以促进太平洋鲑鱼和鳟鱼的上游通过。水质,自然栖息地和其他鱼类的存在与否与否是否与cul类物种有关。北美西部溪流的鱼类通过标准是基于太平洋鲑鱼和鳟鱼的游泳能力,而不考虑其他活动性较差的本地鱼类。为克服先前发现的上游迁徙障碍而安装的结构继续抑制的移动,导致成年人上游栖息地的丧失,对人口规模和营养动态产生潜在影响。

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