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首页> 外文期刊>River Research and Applications >ANTHROPOGENIC DISTURBANCE AND ENVIRONMENTAL ASSOCIATIONS WITH FISH ASSEMBLAGE STRUCTURE IN TWO NONWADEABLE RIVERS
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ANTHROPOGENIC DISTURBANCE AND ENVIRONMENTAL ASSOCIATIONS WITH FISH ASSEMBLAGE STRUCTURE IN TWO NONWADEABLE RIVERS

机译:两种不可食河流鱼类组成结构的人为干扰和环境关联

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摘要

Nonwadeable rivers are unique ecosystems that support high levels of aquatic biodiversity, yet they have been greatly altered by human activities. Although riverine fish assemblages have been studied in the past, we still have an incomplete understanding of how fish assemblages respond to both natural and anthropogenic influences in large rivers. The purpose of this study was to evaluate associations between fish assemblage structure and reach-scale habitat, dam, and watershed land use characteristics. In the summers of 2011 and 2012, comprehensive fish and environmental data were collected from 33 reaches in the Iowa and Cedar rivers of eastern-central Iowa. Canonical correspondence analysis (CCA) was used to evaluate environmental relationships with species relative abundance, functional trait abundance (e.g. catch rate of tolerant species), and functional trait composition (e.g. percentage of tolerant species). On the basis of partial CCAs, reach-scale habitat, dam characteristics, and watershed land use features explained 25.0-81.1%, 6.2-25.1%, and 5.8-47.2% of fish assemblage variation, respectively. Although reach-scale, dam, and land use factors contributed to overall assemblage structure, the majority of fish assemblage variation was constrained by reach-scale habitat factors. Specifically, mean annual discharge was consistently selected in nine of the 11 CCA models and accounted for the majority of explained fish assemblage variance by reach-scale habitat. This study provides important insight on the influence of anthropogenic disturbances across multiple spatial scales on fish assemblages in large river systems.
机译:不可灌溉的河流是支持高水平水生生物多样性的独特生态系统,但由于人类活动而大大改变了它们。尽管过去已经研究过河鱼类组合,但是对于大型河流中鱼类组合对自然和人为影响的响应方式,我们仍然不完全了解。这项研究的目的是评估鱼类组合结构与达到范围的栖息地,水坝和流域土地利用特征之间的联系。在2011年和2012年夏季,从爱荷华州中东部的爱荷华州和锡达河的33个河段收集了全面的鱼类和环境数据。典型对应分析(CCA)用于评估与物种相对丰度,功能性状丰度(例如,耐性物种的捕获率)和功能性状组成(例如,耐性物种的百分比)之间的环境关系。根据部分CCA,可触及范围的栖息地,水坝特征和流域土地利用特征分别解释了鱼群变异的25.0-81.1%,6.2-25.1%和5.8-47.2%。尽管影响范围,水坝和土地利用因素影响了总体组合结构,但大多数鱼类组合变化受到影响范围栖息地的限制。具体而言,在11个CCA模型中的9个模型中始终选择了年均排放量,并按解释范围生境说明了解释的鱼群差异的大部分。这项研究为大型河流系统中人为干扰在多个空间尺度上对鱼类种群的影响提供了重要的见识。

著录项

  • 来源
    《River Research and Applications》 |2016年第1期|66-84|共19页
  • 作者单位

    Department of Natural Resource Ecology and Management, Iowa State University, Ames, Iowa, USA,Wisconsin Department of Natural Resources, 810 W. Maple Street, Spooner, Wisconsin 54801, USA;

    US Geological Survey-Idaho Cooperative Fish and Wildlife Research Unit, Department of Fish and Wildlife Resources, University of Idaho, Moscow, Idaho, USA;

    US Geological Survey-Iowa Cooperative Fish and Wildlife Research Unit, Department of Natural Resource Ecology and Management, Iowa State University, Ames, Iowa, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fish assemblage structure; longitudinal patterns; discharge; dams;

    机译:鱼群结构;纵向模式;排出;水坝;

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