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大型溞(Daphnia magna Straus)对不同生物可利用铜浓度的多代驯化。

Multigeneration acclimation of Daphnia magna Straus to different bioavailable copper concentrations.

作者信息

Bossuyt Bart T A, Escobar Yblin R, Janssen Colin R

机构信息

Laboratory of Environmental Toxicology and Aquatic Ecology, Ghent University, J. Plateaustraat 22, B-9000 Ghent, Belgium.

出版信息

Ecotoxicol Environ Saf. 2005 Jul;61(3):327-36. doi: 10.1016/j.ecoenv.2005.03.004.

Abstract

A large acclimation experiment was performed with Daphnia magna in which two different copper bioavailability (as Cu2+) groups (N and M) were used. In the N group the cupric ion activity increased with increasing dissolved copper-acclimation concentration, while in the M group the ion activity decreased with increasing dissolved copper concentration. The activity of copper carbonates and hydroxides was up to an order of magnitude lower than the cupric ion activity. After five generations of acclimation, the acute copper sensitivity (mean +/- SD) of the N group ranged from 193 /- 24 to 296 +/- 50 microg Cu L(-1) and for the M group from 198 +/- 27 to 315 +/- 38 microg Cu L(-1) for daphnids acclimated to 1 and 100 microg Cu L(-1), respectively. The internal copper concentration of the acclimated daphnids also resulted in similar results between the two groups. Acclimation of the two daphnid groups for five consecutive generations to the three dissolved copper concentrations resulted in a shift in the optimal concentration range toward 1 microg Cu L(-1), using energy reserves as an endpoint. Our results suggest that copper acclimation and accumulation are related to the dissolved copper concentration of the culture medium, but not to the copper activity.

摘要

用大型蚤进行了一项大型驯化实验,其中使用了两个不同铜生物有效性(以Cu2+计)的组(N组和M组)。在N组中,随着溶解铜驯化浓度的增加,铜离子活性增加,而在M组中,离子活性随着溶解铜浓度的增加而降低。碳酸铜和氢氧化铜的活性比铜离子活性低一个数量级。经过五代驯化后,对于分别适应1和100μg Cu L(-1)的大型蚤,N组的急性铜敏感性(平均值±标准差)范围为193±24至296±50μg Cu L(-1),M组为198±27至315±38μg Cu L(-1)。驯化后的大型蚤体内铜浓度在两组之间也得出了类似结果。以能量储备为终点,将两个大型蚤组连续五代适应三种溶解铜浓度后,最佳浓度范围向1μg Cu L(-1)偏移。我们的结果表明,铜的驯化和积累与培养基中的溶解铜浓度有关,而与铜活性无关。

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