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温度对淡水枝角类大型溞体内汞积累与消除的影响。

Temperature influences on the accumulation and elimination of mercury in a freshwater cladoceran, Daphnia magna.

作者信息

Tsui Martin T K, Wang Wen-Xiong

机构信息

Department of Biology, The Hong Kong University of Science and Technology (HKUST), Clear Water Bay, Kowloon, Hong Kong, China.

出版信息

Aquat Toxicol. 2004 Dec 10;70(3):245-56. doi: 10.1016/j.aquatox.2004.09.006.

Abstract

Temperature is an important environmental variable affecting the physiology and metabolism of aquatic invertebrates and can potentially affect the rate and pathway of the uptake and elimination of contaminants. In this study, we studied the effects of the ambient temperature on the uptake (from water and food) and elimination of inorganic mercury [Hg(II)] and methymercury (MeHg) in a freshwater cladoceran, Daphnia magna, in the laboratory. At different temperatures (i.e., 14, 19 and 24 degrees C), the assimilation efficiencies of both Hg species from ingested alga were not significantly different while the dissolved uptake rates were 32 and 73% lower at 14 degrees C than at 24 degrees C for Hg(II) and MeHg, respectively. The reduced uptake rates of Hg(II) at 14 degrees C could be adequately explained by the reduced filtration rate (40% reduction), but for MeHg, the reduced filtration rate could not completely explain reduction in MeHg uptake rate. Despite the elimination rates of both Hg compounds not being affected by the temperature, the relative importance of different routes of Hg loss (i.e., excretion, egestion, molting and reproduction) was significantly different at various temperatures. The relative importance of excretion to MeHg loss increased from 24 to 14 degrees C (i.e., 52 to 85% of Hg loss) while that of reproduction to MeHg loss decreased from 43 to 11% simultaneously. Using a kinetic model, we showed that the fraction of MeHg accumulated in the daphnids coming from the dietary phase was higher at lower temperature, while there was increased accumulation of both Hg(II) and MeHg in the daphnids at higher temperatures. Nevertheless, the trophic transfer potentials for both Hg species in this algae-daphnids food chain were not influenced by the temperature.

摘要

温度是影响水生无脊椎动物生理和代谢的重要环境变量,并且可能影响污染物吸收和消除的速率及途径。在本研究中,我们在实验室中研究了环境温度对淡水枝角类动物大型溞摄取(从水和食物中)和消除无机汞[Hg(II)]及甲基汞(MeHg)的影响。在不同温度(即14、19和24摄氏度)下,两种汞物种从摄入藻类中的同化效率没有显著差异,而对于Hg(II)和MeHg,14摄氏度时的溶解吸收速率分别比24摄氏度时低32%和73%。14摄氏度时Hg(II)吸收速率降低可以通过过滤速率降低(降低40%)得到充分解释,但对于MeHg,过滤速率降低并不能完全解释MeHg吸收速率的降低。尽管两种汞化合物的消除速率不受温度影响,但不同汞损失途径(即排泄、排粪、蜕皮和繁殖)的相对重要性在不同温度下有显著差异。排泄对MeHg损失的相对重要性从24摄氏度到14摄氏度增加(即从汞损失的52%到85%),而繁殖对MeHg损失的相对重要性同时从43%降低到11%。使用动力学模型,我们表明,在较低温度下,大型溞中积累的来自饮食阶段的MeHg比例更高,而在较高温度下,大型溞中Hg(II)和MeHg的积累都增加。然而,在这个藻类-大型溞食物链中,两种汞物种的营养转移潜力不受温度影响。

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