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首页> 外文期刊>Environmental Science & Technology Letters >Mercury Elevator in Lakes: A Novel Vector of Methylmercury Transfer to Fish via Migratory Invertebrates
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Mercury Elevator in Lakes: A Novel Vector of Methylmercury Transfer to Fish via Migratory Invertebrates

机译:湖泊中的汞电梯:通过迁移无脊椎动物将甲基汞转移的新型甲基汞载体

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摘要

Fisheries in highly productive prairie lakes of Canada and the United States frequently have fish consumption advisories due to elevated mercury concentrations. This occurrence is unexpected because such alkaline lakes often exhibit lower methylmercury (MeHg) concentrations in basal trophic levels than those expected in less productive basins with circumneutral pH. As sources of MeHg to fish are largely dietary, components of the food web are expected to be critical controls of the transfer of MeHg to fish. Here, we investigated how Leptodora kindtii, a large (1.5 cm) translucent predatory invertebrate that exhibits pronounced diel vertical migration (in sediments by day, upper water column by night), plays a key role in regulating the contamination of fish with MeHg in a well-studied, eutrophic, prairie lake in western Canada. Estimates of diel fluxes of invertebrate biomass and MeHg revealed that migratory adult Leptodora, but not other adult zooplankton or juvenile Leptodora, acted as a vector, uniquely transferring MeHg from presumptive deepwater sites of methylation to pelagic fish communities. This cryptic process suggests that piscivorous fish may experience greatly elevated exposure to MeHg even in circumstances when biogeochemical features, MeHg sources, and daytime food-web configuration suggest that trophic transfers should be minimal.
机译:由于汞浓度升高,加拿大高产大草原湖泊的渔业经常有鱼类消费咨询。这种情况是出乎意料的,因为这种碱性湖泊通常在基础营养水平中表现出低于基础营养水平的较低的甲基汞(MeHg)浓度,而不是在循环pH下较低的生产性盆地中的预期。随着Mehg到Fish的来源在很大程度上是膳食,预计食品网的组成部分将成为MEHG转移到鱼类的关键控制。在这里,我们调查了瘦藤瘤,一种大(1.5厘米)半透明的掠食性无脊椎动物,其表现出明显的Diel垂直迁移(在沉积物中,上水列在夜间的沉积物中),在调节用Mehg中的鱼类污染了一个关键作用学习,富养的,加拿大西部的草原土拨湖。无脊椎动物生物量和MEHG的DIEL助焊剂的估计显示,迁移的成人百叶菌,但不是其他成年浮游植物或少年leptodora作用为载体,从甲基化的推定深水位点上独特地转移MEHG。这种隐秘过程表明,即使在生物地球化学特征,MEHG源和白天食品网络配置表明营养转移应该是最小的情况下,仍然在环境中可能会经历大大提高对MEHG的暴露升高。

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