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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Influence of plankton mercury dynamics and trophic pathways on mercury concentrations of top predator fish of a mining-impacted reservoir
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Influence of plankton mercury dynamics and trophic pathways on mercury concentrations of top predator fish of a mining-impacted reservoir

机译:浮游生物汞动力学和营养路径对受采矿影响的水库中顶级捕食鱼汞含量的影响

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Physical and biogeochemical characteristics of the aquatic environment that affect growth dynamics of phytoplankton and the zooplankton communities that depend on them may also affect uptake of methylmercury (MeHg) into the pelagic food web of oligotrophic reservoirs. We evaluated changes in the quality and quantity of suspended particulate material, zooplankton taxonomy, and MeHg concentrations coincident with seasonal changes in water storage of a mining-impacted reservoir in northern California, USA. MeHg concentrations in bulk zooplankton increased from 4 ng.g(-1) at low water to 77 +/- 6.1 ng.g(-1) at high water and were positively correlated with cladoceran biomass (r = 0.66) and negatively correlated with rotifer biomass (r = -0.65). Stable isotope analysis revealed overall higher MeHg concentrations in the pelagic-based food web relative to the benthic-based food web. Statistically similar patterns of trophic enrichment of MeHg ( slopes) for the pelagic and benthic food webs and slightly higher MeHg concentrations in zooplankton than in benthic invertebrates suggest that the difference in MeHg bioaccumulation among trophic pathways is set at the base of the food webs. These results suggest an important role for plankton dynamics in driving the MeHg content of zooplankton and ultimately MeHg bioaccumulation in top predators in pelagic-based food webs.
机译:影响浮游植物生长动态的水生环境的物理和生物地球化学特征以及依赖于浮游植物的浮游动物群落也可能影响甲基营养盐(MeHg)进入贫营养性水库的中上层食物网。我们评估了悬浮颗粒物的质量和数量,浮游动物分类学和MeHg浓度的变化,这些变化与美国北部加利福尼亚受采矿影响的水库的储水量的季节性变化一致。浮游生物体中的MeHg浓度从低水位时的4 ng.g(-1)增加到高水位时的77 +/- 6.1 ng.g(-1),并且与枝角类生物量呈正相关(r = 0.66),而与枝状角藻生物量呈负相关。轮虫生物量(r = -0.65)。稳定的同位素分析显示,与基于底栖生物的食物网相比,基于浮游生物的食物网中的总体MeHg浓度更高。浮游食物和底栖食物网中MeHg(斜坡)的营养富集统计上相似的模式,浮游动物中MeHg的浓度略高于底栖无脊椎动物,这表明营养途径之间MeHg生物积累的差异是食物网的基础。这些结果表明浮游生物动力学在驱动浮游生物的MeHg含量以及最终在基于中上层食物网的顶级捕食者中MeHg生物蓄积中起重要作用。

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