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首页> 外文期刊>The Journal of Applied Ecology >Coho salmon spawner mortality in western US urban watersheds: bioinfiltration prevents lethal storm water impacts
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Coho salmon spawner mortality in western US urban watersheds: bioinfiltration prevents lethal storm water impacts

机译:银鲑鱼产卵鱼死亡率在美国西部城市分水岭:bioinfiltration防止致命的风暴水的影响

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Adult coho salmon Oncorhynchus kisutch return each autumn to freshwater spawning habitats throughout western North America. The migration coincides with increasing seasonal rainfall, which in turn increases storm water run-off, particularly in urban watersheds with extensive impervious land cover. Previous field assessments in urban stream networks have shown that adult coho are dying prematurely at high rates (>50%). Despite significant management concerns for the long-term conservation of threatened wild coho populations, a causal role for toxic run-off in the mortality syndrome has not been demonstrated. We exposed otherwise healthy coho spawners to: (i) artificial storm water containing mixtures of metals and petroleum hydrocarbons, at or above concentrations previously measured in urban run-off; (ii) undiluted storm water collected from a high traffic volume urban arterial road (i.e. highway run-off); and (iii) highway run-off that was first pre-treated via bioinfiltration through experimental soil columns to remove pollutants. We find that mixtures of metals and petroleum hydrocarbons - conventional toxic constituents in urban storm water - are not sufficient to cause the spawner mortality syndrome. By contrast, untreated highway run-off collected during nine distinct storm events was universally lethal to adult coho relative to unexposed controls. Lastly, the mortality syndrome was prevented when highway run-off was pretreated by soil infiltration, a conventional green storm water infrastructure technology. Our results are the first direct evidence that: (i) toxic run-off is killing adult coho in urban watersheds, and (ii) inexpensive mitigation measures can improve water quality and promote salmon survival.Synthesis and applications. Coho salmon, an iconic species with exceptional economic and cultural significance, are an ecological sentinel for the harmful effects of untreated urban run-off. Wild coho populations cannot withstand the high rates of mortality that are now regularly occurring in urban spawning habitats. Green storm water infrastructure or similar pollution prevention methods should be incorporated to the maximal extent practicable, at the watershed scale, for all future development and redevelopment projects, particularly those involving transportation infrastructure.
机译:每个成年银鲑鱼雄kisutch返回秋天到淡水产卵栖息地北美西部。随着季节性降雨,反过来雨水径流增加,特别是在城市水域拥有丰富土地无动于衷封面。网络显示,成年银死亡过早的在高(> 50%)。长期的重大管理问题保护濒危野生银大马哈鱼的数量,因果角色有毒径流的死亡率综合症还没有被证明。原本健康的银已成熟的雌鱼:(i)人工雨水含有的混合物金属和石油碳氢化合物,以上以前浓度测量在城市径流;从城市主干路交通量(即公路径流);这是第一次通过bioinfiltration预处理通过实验土壤列移除污染物。石油碳氢化合物——传统有毒选民在城市雨水——不是足以导致死亡率已成熟的雌鱼并发症状九个不同的风暴期间收集的事件对于成年银相对于普遍致命未曝光的控制。综合征时防止公路径流土壤渗透预处理的传统绿色雨水基础设施技术。结果的第一个直接证据:(i)有毒的流失是造成成人银在城市分水岭,(ii)便宜的缓解可以改善水的质量和促进措施鲑鱼的生存。鲑鱼,一个标志性物种例外经济和文化的意义,是一个生态前哨的有害影响未经处理的城市径流。不能承受高的死亡率现在经常发生在城市产卵栖息地。应该是类似的污染防治方法将在最大程度上可行,在流域范围内,对所有的未来开发和再开发项目,特别是那些涉及运输基础设施。

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