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Stoichiometric controls of mercury dilution by growth

机译:化学计量控制生长的汞稀释

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Rapid growth could significantly reduce methylmercury (MeHg) concentrations in aquatic organisms by causing a greater than proportional gain in biomass relative to MeHg (somatic growth dilution). We hypothesized that rapid growth from the consumption of high-quality algae, defined by algal nutrient stoichiometry, reduces MeHg concentrations in zooplankton, a major source of MeHg for lake fish. Using a MeHg radiotracer, we measured changes in MeHg concentrations, growth and ingestion rates in juvenile Daphnia pulex fed either high (C:P = 139) or low-quality (C:P =1317) algae (Ankistrodesmus falcatus) for 5 d. We estimated Daphnia steady-state MeHg concentrations, using a biokinetic model parameterized with experimental rates. Daphnia MeHg assimilation efficiencies (≈95%) and release rates (0.04 d~(-1)) were unaffected by algal nutrient quality. However, Daphnia growth rate was 3.5 times greater when fed high-quality algae, resulting in pronounced somatic growth dilution. Steady-state MeHg concentrations in Daphnia that consumed high-quality algae were one-third those of Daphnia that consumed low-quality algae due to higher growth and slightly lower ingestion rates. Our findings show that rapid growth from high-quality food consumption can significantly reduce the accumulation and trophic transfer of MeHg in freshwater food webs.
机译:相对于MeHg(体细胞生长稀释),生物量的快速增长可能会导致生物量的增加大于比例,从而显着降低水生生物中甲基汞(MeHg)的浓度。我们假设藻类营养物化学计量法定义的高质量藻类的消费量的快速增长会降低浮游动物中的甲基汞浓度,而浮游动物是湖泊鱼类甲基汞的主要来源。我们使用MeHg放射性示踪剂测量了高(C:P = 139)或低质量(C:P = 1317)藻类(Ankistrodesmus falcatus)喂养5 d的幼蚤Daphnia pulex的MeHg浓度,生长和摄入速率的变化。我们使用实验速率参数化的生物动力学模型估算了水蚤的稳态MeHg浓度。藻营养质量对水蚤MeHg同化效率(≈95%)和释放率(0.04 d〜(-1))没有影响。但是,喂食优质藻类后,水蚤的生长速度提高了3.5倍,导致体细胞生长明显稀释。食入优质藻类的水蚤的稳态MeHg浓度是食入劣质藻类的水蚤的三分之一,这是由于其生长速度加快且摄入速率略低。我们的研究结果表明,高质量食品消费的快速增长可以显着减少淡水食物网中MeHg的积累和营养转移。

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