Kunwar Prabesh Singh, Basaula Rajendra, Sinha Amit Kumar, De Boeck Gudrun, Sapkota Kumar
Central Department of Zoology, Tribhuvan University, Kirtipur, Kathmandu, Nepal; Central Fisheries Promotion and Conservation Centre, Balaju, Kathmandu, Nepal.
Central Department of Zoology, Tribhuvan University, Kirtipur, Kathmandu, Nepal.
Comp Biochem Physiol C Toxicol Pharmacol. 2021 Aug;246:108975. doi: 10.1016/j.cbpc.2021.108975. Epub 2021 Jan 16.
Common carp (Cyprinus carpio) is an important aquaculture species. However, their production and health is sometimes threatened by pesticides. In common carp, extensive studies have been done for exposures of single pesticides, but effects of mixtures such as those of the commonly used chlorpyrifos and dichlorvos, are still unknown for this species. In the first phase of this work, an acute lethal exposure experiment was conducted to estimate 24 h to 96 h lethal concentrations (LC) of chlorpyrifos, dichlorvos and their mixture. Compared to dichlorvos, chlorpyrifos was found to be highly toxic to the tested species. Joint toxicity assessment of these pesticides in binary mixtures was dominated by synergism. In the second experimental phase, common carp were exposed to sub-lethal concentrations (LD-10% and HD-50% 96 h-LC) of individual pesticides and their mixture. General fish behaviors, buccal movements and feeding attempts by fish were recorded after 1 h, 24 h, 48 h, 72 h and 96 h whereas aerobic metabolism of fish was recorded for 0-24 h, 24-48 h 48-72 h and 72-96 h of exposure. All pesticide treatments elevated buccal movements and oxygen uptake in a dose dependent manner. Feeding depression was also observed by pesticide exposure. The augmented deleterious effect of these pesticides in a mixture suggests that joint toxicity assessment is critical to develop more realistic water quality standards and monitoring guidelines.
鲤鱼(Cyprinus carpio)是一种重要的水产养殖品种。然而,它们的产量和健康有时会受到农药的威胁。在鲤鱼中,已经对单一农药的暴露进行了广泛研究,但对于常用的毒死蜱和敌敌畏等混合物对该物种的影响仍然未知。在这项工作的第一阶段,进行了急性致死暴露实验,以估计毒死蜱、敌敌畏及其混合物在24小时至96小时的致死浓度(LC)。与敌敌畏相比,发现毒死蜱对受试物种具有高毒性。这些农药二元混合物的联合毒性评估以协同作用为主。在第二个实验阶段,将鲤鱼暴露于单个农药及其混合物的亚致死浓度(96小时LC的LD-10%和HD-50%)。在1小时、24小时、48小时、72小时和96小时后记录鱼类的一般行为、口腔运动和摄食尝试,而在暴露的0-24小时、24-48小时、48-72小时和72-96小时记录鱼类的有氧代谢。所有农药处理均以剂量依赖方式提高了口腔运动和氧气摄取。农药暴露也观察到摄食抑制。这些农药在混合物中的增强有害作用表明,联合毒性评估对于制定更现实的水质标准和监测指南至关重要。