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Response of Stream Fish Assemblages to Local-Scale Habitat as Influenced by Landscape: A Mechanistic Investigation of Stream Fish Assemblages

机译:景观影响物流鱼类组合对局部规模栖息地的反应:流鱼组合的机制调查

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Stream fish assemblages are influenced indirectly by natural and anthropogenic landscape features acting through intermediate factors like flow and temperature regimes, water quality, and physical habitat. These relationships affect distributions andabundances of individual species and also frame potential interactions among different types of fishes. This hierarchical influence of environmental factors, also known as the landscape perspective, is a widely accepted view of fluvial systems. However,few studies have attempted to quantify the complex mechanistic relationships among landscape variables, intermediate factors, and fish, a gap due partially to limitations of traditional analytical techniques for devolving such relationships. Using covariance structure analysis (CSA), we attempt to quantify the influence of natural and anthropogenic land uses on stream fish assemblages through indirect effects on fluvial physical habitat, including descriptors of habitat complexity, flow stability, and channel size, for 46 streams of southeastern Michigan. CSA was selected for this investigation because of its ability to quantify indirect effects of variables through intermediate factors and to account for intercorrelations among related measures. For analysis, fish assemblages were summarized by their richness and diversity and also according to functional groups that included trophic guilds and preferences for stream size, substrate, and geomorphological units, such as riffles and pools. Our analysisshowed that, when acting through habitat factors, assemblages were more strongly influenced by natural landscape features, including catchment area and geology, than by anthropogenic land uses of our study region. Further, the analyses revealed that different aspects of fish assemblages varied with different habitat variables. While diversity and richness increased with habitat complexity and channel size, numbers of carnivores decreased with flow stability, possibly due to the link between flow and stream temperature regimes of our study region. Diversity and richness, however, were not affected by human land uses. Numbers of invertivores, fish preferring fine substrate, and fish preferring pool/ run habitat all increased with agriculture while numbers of detritivores increased with both agriculture and urban land use. These results emphasize complex effects of landscape features on stream fishes through intermediate factors and underscore the importance of understanding the varied response of different aspects offish assemblages to environmental influences for improved conservation and restoration opportunities.
机译:流鱼组件受到通过流动和温度制度,水质和物理栖息地等中间因素的自然和人为景观特征间接影响。这些关系影响各种物种的分布和造成不同类型的鱼类的潜在相互作用。环境因素的这种层次影响,也称为景观观点,是河流系统的广泛观察。然而,很少有研究已经试图量化景观变量,中间因素和鱼类之间的复杂机制关系,部分地占据了传统分析技术的局限性,用于促使这种关系的传统分析技术。使用协方差结构分析(CSA),我们试图通过对河流物理栖息地的间接影响来量化自然和人为土地对流鱼组合的影响,包括栖息地复杂性,流量稳定性和渠道大小的描述符,为46辆东南部密歇根州。选择了CSA,为这项调查选择了通过中间因素量化变量的间接影响,并考虑相关措施之间的互相关性。对于分析,通过其丰富和多样性总结了鱼组合,以及根据包括营养公会和用于流尺寸,基材和地貌单元的偏好,例如Riffles和Pools的功能组。我们的分析是,在通过栖息地因素行事时,大会受到自然景观特征的影响,包括集水区和地质,而不是我们研究区域的人为土地利用。此外,分析显示,鱼组合的不同方面随着不同的栖息地变量而变化。虽然多样性和丰富性随着栖息地的复杂性和渠道大小而增加,但由于我们研究区域的流动和流温度方案之间的联系,因此肉食病变数量随着流动稳定而减少。然而,多样性和丰富性不受人类土地使用的影响。无障碍,鱼类偏爱细基质的数量,以及鱼类偏爱游泳池/运行栖息地随着农业的增加,而Debritivores的数量随着农业和城市土地利用而增加。这些结果强调了通过中间因素对溪流的景观特征的复杂影响,并强调了了解不同方面的不同响应的重要性,从而改善保护和恢复机会的环境影响。

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