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Water quality and fish size affect toxicity of endosulfan, an organochlorine pesticide, to rainbow trout

机译:水质和鱼的大小影响有机氯农药硫丹对虹鳟鱼的毒性

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The acute toxicity of endosulfan in juvenile rainbow trout (Oncorhynchus mykiss, 10.61 +/- 1.69 g) was evaluated in glass aquaria under static conditions. Nominal concentrations of endosulfan in the toxicity test ranged from 1.3 mu g l(-1) to 29 mu g l(-1). The concentrations of endosulfan that killed 50% of the rainbow trout within 24-h (24-h LC50), 48-h LC50, 72-h LC50, and 96-h LC50 were 19.78, 8.89, 5.28, and 1.75 mu g l(-1), respectively. None of the unexposed control fish died, and the first fish died 4 h after exposure to 26.3 mu g l(-1) of endosulfan. Survival of fish was significantly increased with increasing fish size and decreased with decreased fish size at the same temperature (p < 0.001). Temperature also had a significant effect on survival of fish. Alkalinity at levels above 20 mg l(-1) as CaCO3 significantly increased survival of fish at 19.78 mu g l(-1) of endosulfan. Increasing alkalinity from 20 mg l(-1) as CaCO3 to 42 or higher concentrations tested in this study (121 mg L-1 as CaCO3) significantly increased survival of fish (p < 0.01). Total hardness ranging from 55 mg l(-1) as CaCO3 to 126 mg l(-1) as CaCO3 did not affect survival of fish exposed to endosulfan. Endosulfan toxicity was found to be irreversible when fish were exposed to minimum concentrations of endosulfan tested. Histologically, fish gills had lamellar edema, separation of epithelium from lamellae, lamellar fusion, and swelling of the epithelial cells. Melanomacrophage centers were scattered throughout the trunk kidney, head kidney, and spleen. The liver of endosulfan-exposed fish had severe focal necrosis. None of these lesions were seen in unexposed control fish. Results indicate that alkalinity, temperature, and fish size affect endosulfan toxicity of rainbow trout. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在静态条件下,在玻璃水族箱中评估了硫丹在虹鳟鱼中的急性毒性(Oncorhynchus mykiss,10.61 +/- 1.69 g)。毒性试验中硫丹的标称浓度为1.3μg l(-1)至29μg l(-1)。在24小时内(24小时LC50),48小时LC50、72小时LC50和96小时LC50杀死50%虹鳟鱼的硫丹浓度为19.78、8.89、5.28和1.75μggl( -1)。未暴露的对照鱼均未死亡,第一条鱼在暴露于26.3微克l(-1)硫丹后4小时死亡。在相同温度下,鱼的存活率随着鱼尺寸的增加而显着增加,而随着鱼尺寸的减小而降低(p <0.001)。温度对鱼类的存活也有重要影响。碱度高于20 mg l(-1)的CaCO3会显着提高鱼的生存率,硫丹含量为19.78μg l(-1)。将碱度从20 mg l(-1)作为CaCO3增加到本试验中测试的42或更高浓度(121 mg L-1作为CaCO3)可显着提高鱼类的存活率(p <0.01)。总硬度范围从55 mg l(-1)作为CaCO3到126 mg l(-1)作为CaCO3不会影响暴露于硫丹的鱼的生存。当鱼暴露于最低浓度的硫丹时,发现硫丹的毒性是不可逆的。从组织学的角度看,鱼la具有片状水肿,上皮与片状分离,层状融合以及上皮细胞肿胀。黑色素巨噬细胞中心散布在躯干肾脏,头部肾脏和脾脏中。暴露于硫丹的鱼的肝脏严重局灶性坏死。在未暴露的对照鱼中没有发现这些损伤。结果表明,碱度,温度和鱼的大小会影响虹鳟鱼的硫丹毒性。 (c)2005 Elsevier Ltd.保留所有权利。

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