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孔雀鱼(Poecilia reticulata)在长期亚致死镉暴露期间的生化组成、生长和存活情况。

Biochemical composition, growth, and survival of the guppy, poecilia reticulata, during chronic sublethal exposure to cadmium.

作者信息

Miliou H, Zaboukas N, Moraitou-Apostolopoulou M

机构信息

Section of Zoology-Marine Biology, University of Athens, Athens 157 84, Greece.

出版信息

Arch Environ Contam Toxicol. 1998 Jul;35(1):58-63. doi: 10.1007/s002449900349.

DOI:10.1007/s002449900349
PMID:9601920
Abstract

The survival, growth, and biochemical composition (protein, total lipid, total carbohydrate, free reducing sugars, RNA, DNA) of the guppy, Poecilia reticulata, exposed to low sublethal concentrations of cadmium throughout its life cycle (beginning with 5-day-old juveniles) was studied. The purpose was to get some insight on the cause of metal toxic effects and evaluate the utility of monitoring levels of biomolecules as bioindicators of chronic toxicant effects on fish. The LC50 (48 h) of cadmium for 5-day-old Poecilia was 56.77 mg/L. The median lethal times (LT50) of Poecilia exposed to low cadmium concentrations (0.5-5 mg/L) ranged from 7.65 to 72.51 days, and could be accurately predicted by the mortality observed after 20 days of exposure. The whole-body dry weight increase of cadmium-exposed guppies presented a decline from that of the controls. These declines were statistically significant after 20 days of exposure to concentrations higher than 1 mg/L and after 30 days to concentrations higher than 0.5 mg/L. The percentage content in RNA was the only variable from the studied macrobiomolecules that significantly decreased when guppies were exposed to Cd concentrations higher than 0.5 mg/L for 30 days. The same trend was apparent in the ratio RNA/DNA. However, the ratio protein/RNA/DNA significantly increased after 10 days of growth to 1.5 mg/L and after 20 days to concentrations higher than 0.5 mg/L, thus having a predictive value for early-life history stages of Poecilia exposed to Cd.

摘要

研究了孔雀鱼(Poecilia reticulata)在其整个生命周期(从5日龄幼鱼开始)暴露于低亚致死浓度镉后的存活、生长及生化组成(蛋白质、总脂质、总碳水化合物、游离还原糖、RNA、DNA)情况。目的是深入了解金属毒性效应的原因,并评估监测生物分子水平作为鱼类慢性毒物效应生物指标的实用性。5日龄孔雀鱼对镉的LC50(48小时)为56.77毫克/升。暴露于低镉浓度(0.5 - 5毫克/升)的孔雀鱼的半数致死时间(LT50)为7.65至72.51天,且可通过暴露20天后观察到的死亡率准确预测。暴露于镉的孔雀鱼的全身干重增长相较于对照组有所下降。在暴露于高于1毫克/升的浓度20天后以及暴露于高于0.5毫克/升的浓度30天后,这些下降具有统计学意义。当孔雀鱼暴露于高于0.5毫克/升的镉浓度30天时,所研究的大分子生物分子中唯一显著下降的变量是RNA的百分比含量。RNA/DNA比值也呈现相同趋势。然而,在生长至1.5毫克/升10天后以及生长至高于0.5毫克/升的浓度20天后,蛋白质/RNA/DNA比值显著增加,因此对暴露于镉的孔雀鱼的早期生命阶段具有预测价值。

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