Impact of Lamda-Cyhalothrin on the Biochemical Parameters of Clarias gariepinus

Ogbonna Obiageli Annastesia, Nwamba Helen Ogochukwu, Anukwu John Uchenna
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Abstract

Background: Widespread applications of pesticides such as Lambda cyhalothrin to boost crops production have frequently led to contamination of the fresh water ecosystem in Nigeria. Materials and Methods: In this study, Clarias gariepinus were exposed to sub-lethal concentrations of Lambda-cyhalothrin pesticide. The 96 h LC50 of lambda cyhalothrin to the fish was estimated at 3.98mgl-1. Mortality of 100% and 10% were observed in fish exposed to 12.00 mg l-1 and 1.25 mg l-1 of Lambda cyhalothrin respectively as compared to no mortality recorded in the control group. Varying degrees of abnormal behaviours like air gulping, hyperactivity, erratic movement, skin discoloration and jerky movements were observed during the 96 hrs exposure period of the fish to Lambda compared to the control. Exposure to sub-lethal concentrations of Lambda cyhalothrin at 0, 0.25, 0.50 and 1.00 mgl-1 and for 15 days at 5 days intervals that is 5, 10 and 15days led to changes in the biochemical parameters. Results: In the Biochemical parameters analysed, there was significant (P<0.5) increase in the mean values of Albumin, Aspartate Amino Transfarase (AST), Alanine Amino Transaferase (ALT), Alkaline Phosphate (ALP) and Creatinine compares to the control group. There was no significant difference (p>0.05) between the values of water quality assays in control and treated group. Conclusion: The biomarkers measured could be useful tools for monitoring effects of other pesticides on aquatic organisms. However, further studies could be done to investigate their mode of action to strike a balance between protection of aquatic biota and discharges of these pesticides and their metabolites to aquatic environments.
高效氯氟氰菊酯对加里宾克拉蝇生化指标的影响
背景:为提高作物产量而广泛使用杀虫剂(如Lambda cyhalothrin)经常导致尼日利亚淡水生态系统受到污染。材料与方法:采用亚致死浓度的高效氯氟氰菊酯农药对异色瓢虫进行处理。氯氟氰菊酯对鱼的96 h LC50为3.98mg -1。暴露于12.00 mg l-1和1.25 mg l-1氯氟氰菊酯的鱼类死亡率分别为100%和10%,而对照组没有记录死亡率。与对照组相比,在暴露于Lambda的96小时期间,观察到不同程度的异常行为,如吸气,多动,不稳定运动,皮肤变色和抽搐运动。在0、0.25、0.50和1.00 mg -1亚致死浓度下,以5天间隔(5天、10天和15天)暴露15天,导致生化参数发生变化。结果:在生化指标分析中,对照组与处理组水质指标差异有统计学意义(P0.05)。结论:测定的生物标志物可作为监测其他农药对水生生物影响的有效工具。然而,还需要进一步研究它们的作用方式,以在保护水生生物与将这些农药及其代谢物排放到水生环境之间取得平衡。
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