Hagopian-Schlekat T, Chandler G T, Shaw T J
Department of Environmental Health Sciences, School of Public Health, University of South Carolina, Columbia, SC 29208, USA.
Mar Environ Res. 2001 Apr;51(3):247-64. doi: 10.1016/s0141-1136(00)00102-1.
The acute effects of many individual, seawater-solubilized metals on meiobenthic copepods and nematodes are well known. In sediments, however, metals most often occur as mixtures, and it is not known whether such mixtures exhibit simple additive toxicity to meiobenthos. The estuarine meiobenthic copepod Amphiascus tenuiremis was tested in four acute (96-h) sediment bioassays to determine sediment and pore-water LC50s for single-metal exposures to copper (Cu), lead (Pb), nickel (Ni) and zinc (Zn). Laboratory-cultured copepods were exposed to clean 98% silt:clay sediments spiked with metal chloride solutions to yield five exposure concentrations plus a control. Trimmed Spearman-Karber analysis gave sediment 96-h LC50 values of 4.4 mumole Cu/g, 5.7 mumole Ni/g, 11.9 mumole Pb/g, 10.3 mumole Zn/g, and pore-water 96-h LC50 values of 2 mumole/l, 11.7 mumole/l, and 5.7 mumole/l for Cu, Ni, and Zn, respectively. Male survival after exposure to Cu, Pb, and Ni was significantly less than female survival (alpha = 0.05). Toxicity of a combined USEPA priority metal mixture to A. tenuiremis was assessed using sediment spiked equitoxically with Cd, Cu, Ni, Pb, and Zn. The sum toxic unit that produced a median lethal dose was 0.72. The mixture had a significantly greater than additive effect on A. tenuiremis survival, with the mixture being 1.4x more toxic than that expected by simple additivity.
许多单独的、可溶于海水的金属对小型底栖桡足类动物和线虫的急性影响是众所周知的。然而,在沉积物中,金属最常以混合物的形式存在,目前尚不清楚这种混合物对小型底栖生物是否具有简单的加和毒性。在四项急性(96小时)沉积物生物测定中,对河口小型底栖桡足类动物细弱海哲水蚤进行了测试,以确定单一金属铜(Cu)、铅(Pb)、镍(Ni)和锌(Zn)暴露的沉积物和孔隙水半数致死浓度(LC50)。将实验室培养的桡足类动物暴露于添加了金属氯化物溶液的清洁98%粉砂:粘土沉积物中,以产生五个暴露浓度加一个对照。经修正的Spearman-Karber分析得出,沉积物96小时LC50值为4.4微摩尔铜/克、5.7微摩尔镍/克、11.9微摩尔铅/克、10.3微摩尔锌/克,铜、镍和锌的孔隙水96小时LC50值分别为2微摩尔/升、11.7微摩尔/升和5.7微摩尔/升。暴露于铜、铅和镍后的雄性存活率显著低于雌性存活率(α = 0.05)。使用等毒性添加镉、铜、镍、铅和锌的沉积物评估了美国环境保护局(USEPA)优先金属混合物对细弱海哲水蚤的毒性。产生半数致死剂量的总毒性单位为0.72。该混合物对细弱海哲水蚤的存活率具有显著大于加和效应的影响,其毒性比简单加和预期的毒性高1.4倍。