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阿克泰25%水分散粒剂杀虫剂对鲤鱼和泽蛙作用的生态毒理学研究

Ecotoxicological Studies on the Action of Actara 25 WG Insecticide on Prussian Carp () and Marsh Frog ().

作者信息

Paunescu Alina, Soare Liliana Cristina, Fierascu Irina, Fierascu Radu Claudiu, Mihaescu Cristina Florina, Tofan Lucica, Ponepal Cristina Maria

机构信息

Natural Science Department, Faculty of Sciences, Physical Education and Informatics, University of Pitesti, 110040 Pitesti, Romania.

National Research and Development Institute for Chemistry and Petrochemistry-ICECHIM, 060021 Bucharest, Romania.

出版信息

Toxics. 2022 Feb 27;10(3):114. doi: 10.3390/toxics10030114.

Abstract

The toxic action of the Actara 25 WG insecticide (it contains 25% thiamethoxam as an active substance) in non-lethal doses was studied in two species of aquatic organisms-the Prussian carp () and the marsh frog ()-at two thermal levels, 6-8 °C (low temperature) and 18-20 °C (room temperature), respectively. In the Prussian carp, we recorded decreases in oxygen consumption and stimulation of the respiratory rhythm, changes that were more pronounced in the case of intoxicated fish and when the species were kept at room temperature. The histopathology of the lung in the frog illustrated the thickening of the conjunctival septum, an increase in the number of mucous cells, and an increase in the ratio between the diameter of the nucleus and the diameter of the pneumocyte. All of these changes were more pronounced in the animals kept at higher temperature. Our study looks at the extent to which temperature changes can influence the ability of poikilothermic organisms to withstand the presence of toxic substances in the environment as a result of the impact of the use of insecticides in agriculture. The two tested organisms are a common presence for the study area, which was affected in the last decade by climate change.

摘要

研究了阿克泰25%WG杀虫剂(活性成分噻虫嗪含量为25%)在非致死剂量下对两种水生生物——鲫鱼()和泽蛙()的毒性作用,分别在6 - 8°C(低温)和18 - 20°C(室温)两个温度水平下进行。在鲫鱼中,我们记录到耗氧量下降和呼吸节律受到刺激,这些变化在中毒鱼以及物种处于室温时更为明显。青蛙肺部的组织病理学显示结膜间隔增厚、黏液细胞数量增加以及细胞核直径与肺细胞直径之比增加。所有这些变化在温度较高的动物中更为明显。我们的研究探讨了温度变化在多大程度上会因农业中使用杀虫剂的影响,而影响变温生物耐受环境中有毒物质存在的能力。这两种受试生物在研究区域很常见,该区域在过去十年受到气候变化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e937/8949032/da11ab7adde4/toxics-10-00114-g001.jpg

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