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首页> 外文期刊>PLoS One >Coupled fish-hydrogeomorphic responses to urbanization in streams of Columbus, Ohio, USA
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Coupled fish-hydrogeomorphic responses to urbanization in streams of Columbus, Ohio, USA

机译:对俄亥俄州哥伦布溪流中的城市化耦合耦合鱼 - 水电响应

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Despite a developing literature on urban streams, few studies have addressed the timing and mechanisms of urban-induced stream hydrogeomorphic adjustment on biotic assemblages. Here, we investigated the relationships between urbanization-driven annual changes in fluvial geomorphic characteristics and fish assemblages in 12 headwater streams in the Columbus Metropolitan Area (CMA), Ohio (USA) over 3–5 years. Multiple stream hydrogeomorphic characteristics changed over time including slope (0.1% decrease on average), discharge (39% decrease), and shear stress (29% decrease), some in concert with one another (e.g., slope and shear stress). Species-specific fish associations with hydrogeomorphic associations varied in nature and strength by year and thus were somewhat equivocal. At the assemblage level, we observed a negative relationship between D 50 (median sediment particle size) and % tolerant individuals as well as a positive trend between incision ratio and % generalists over study years. Study reaches with higher total catchment imperviousness were associated with both finer median sediment size ( R 2 = 0.19) and lower assemblage diversity ( R 2 = 0.55). These results contribute to current understanding of the drivers of fish assemblages in urbanizing catchments, and point to urban-induced hydrogeomorphic alterations as one mechanism through which land-use changes influence in-channel characteristics important to aquatic biota.
机译:尽管在城市溪流上发展了文学,但很少有研究已经解决了城市诱导的生物组合物的城市诱导的流水文态调整的时序和机制。在这里,我们调查了在哥伦布大都市区(CMA),俄亥俄州(USA)的12个下水流中的城市化推动年度变化与鱼组合的关系。3-5岁。多流式水文晶形特性随时间变化,包括斜率(平均下降0.1%),放电(减少39%),剪切应力(29%降低),彼此一致(例如,斜坡和剪切应力)。特定的鱼类缔合与水力后科协会的性质和强度在一年变化,因此有些等离现体。在组合水平,我们观察到D 50(中位数沉积物粒度)和%耐受性的负面关系以及切口比和在研究年度上的总通用之间的正趋势。具有更高的总集水区的研究与细胞中值沉积物大小(R 2 = 0.19)和更低的组装分集(R 2 = 0.55)相关。这些结果有助于目前对城市化集水区的鱼群驱动程序的理解,并指向城市诱导的水力晶形改变作为一种机制,通过该机制,土地利用变化影响到水生生物群至关重要。

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