Environment and Human Toxicology Laboratory, Department of Life Science and Bioinformatics, Assam University, Silchar, 788011, India.
Molecular and Cell Biology Laboratory, Department of Life Science and Bioinformatics, Assam University, Silchar, 788011, India.
Environ Sci Pollut Res Int. 2024 Sep;31(42):54873-54886. doi: 10.1007/s11356-024-34832-3. Epub 2024 Aug 31.
Climate change is viewed as one of the important causes of the amphibian population decline. Aspects of climate change like increase in water temperature and drying up of habitats have been underrepresented. The expanding production and usage of metal nanoparticles like silver nanoparticles (AgNPs) make them likely to end up in aquatic ecosystems. To arrive at a realistic assessment of the impact of AgNPs in a warming world, we have investigated the effects of temperature on the acute toxicity of AgNPs in tadpoles of Fejervarya limnocharis at 24, 48, 72 and 96 h of exposure. The various aspects of sub-lethal toxicities of AgNPs with increase in temperature were also investigated. Besides, the effects of habitat desiccation on the sub-lethal toxicities of AgNPs in the tadpoles were analysed. The LC values of AgNPs at four different time points were found to be significantly different between the two different temperatures. Alterations in survival pattern, life history traits, amplifications in genotoxic potential and oxidative stress were observed with increased water temperature following AgNP exposure. The phenomenon of habitat desiccation was also found to significantly affect the toxicity of AgNPs with respect to alterations in mortality rate, time to metamorphosis and morphometric parameters of metamorphosed tadpoles. The findings suggest that changed water regime such as increased water temperature as well as reduction in water level accelerated the toxic effects of AgNPs in F. limnocharis tadpoles which is likely to affect their natural populations.
气候变化被视为导致两栖动物种群减少的重要原因之一。气候变化的各个方面,如水温升高和栖息地干涸,都没有得到充分的体现。金属纳米粒子(如银纳米粒子)的生产和使用不断扩大,这使得它们很有可能进入水生生态系统。为了对在变暖世界中 AgNPs 的影响进行现实评估,我们研究了温度对 Fejervarya limnocharis 蝌蚪在暴露 24、48、72 和 96 小时时 AgNPs 急性毒性的影响。还研究了随着温度升高,AgNPs 的亚致死毒性的各个方面。此外,还分析了栖息地干涸对 AgNPs 对蝌蚪的亚致死毒性的影响。在两个不同温度下,四个不同时间点的 AgNPs 的 LC 值在统计学上存在显著差异。在 AgNP 暴露后,随着水温升高,观察到存活模式、生活史特征、遗传毒性潜力和氧化应激的增强。栖息地干涸的现象也被发现显著影响 AgNPs 的毒性,表现在死亡率、变态时间和变态后蝌蚪的形态参数的变化。研究结果表明,改变的水情,如水温升高和水位降低,加速了 AgNPs 在 F. limnocharis 蝌蚪中的毒性效应,这可能会影响它们的自然种群。