CIM, CONICET, Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, La Plata, Buenos Aires, Argentina.
CITAAC, CONICET, IBAC, Facultad de Ciencias Agrarias, Universidad Nacional del Comahue, Cinco Saltos, Río Negro, Argentina.
Environ Toxicol Chem. 2020 Apr;39(4):834-841. doi: 10.1002/etc.4664. Epub 2020 Mar 22.
We report sublethal effects of environmentally relevant concentrations of chlorpyrifos at the individual (swimming alterations) and biochemical (esterase activities and antioxidant enzymes) levels in the Montevideo tree frog Boana pulchella larvae. The 50% lethal concentration at 96 h (LC50-96h) for chlorpyrifos in stage-29 B. pulchella tadpoles was 0.98 mg/L, which was close to the 65th percentile of published anuran species sensitivity. In B. pulchella, chlorpyrifos disrupted biochemical processes: tadpoles showed a significant inhibition of esterase activity and a significant induction of antioxidant enzymes, indicating a response to an environmental challenge causing oxidative stress. Using principal components analysis, we could associate chlorpyrifos reduction in esterase activity with swimming alterations at 0.5 mg/L of the toxicant. The biochemical biomarkers reported in the present study respond at levels 20 times lower than the LC50-96h and were associated with a biologically important response-swimming behavior. The link of responses across different levels of biological organization was demonstrated. The species is suitable as a model for ecotoxicological studies at different levels, including the individual and biochemical levels, and may be considered a good reference organism in environmental control programs. Environ Toxicol Chem 2020;39:834-841. © 2020 SETAC.
我们报告了环境相关浓度的毒死蜱对蒙得维的亚树蛙(Boana pulchella)幼虫个体(游泳行为改变)和生化水平(酯酶活性和抗氧化酶)的亚致死效应。第 29 期 B. pulchella 蝌蚪的 96 小时半数致死浓度(LC50-96h)为 0.98mg/L,接近公布的两栖动物物种敏感性的第 65 个百分位数。在 B. pulchella 中,毒死蜱扰乱了生化过程:蝌蚪的酯酶活性显著受到抑制,抗氧化酶显著诱导,表明对环境挑战造成的氧化应激有反应。通过主成分分析,我们可以将酯酶活性降低与毒性物质 0.5mg/L 下的游泳行为改变联系起来。本研究中报告的生化生物标志物在比 LC50-96h 低 20 倍的水平上作出响应,与具有生物学重要意义的反应-游泳行为相关。证明了不同层次的生物组织的反应之间的联系。该物种适合作为不同层次的生态毒理学研究的模型,包括个体和生化水平,并且可以被认为是环境控制计划中的一个良好的参考生物。环境毒理化学 2020;39:834-841。2020 年 SETAC 版权所有。