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Oxidative stress induced by glyphosate-based herbicide on freshwater turtles

机译:草甘膦基除草剂对淡水龟的氧化胁迫

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Freshwater ecosystems face very strong anthropogenic pressures, among which overexploitation, habitat degradation, flow modification, species invasion, and water pollution lead to growing threats on biodiversity. Urbanization through wastewater treatment, industry through the release of inorganic and organic chemicals, and agriculture through the use of pesticides and herbicides are the main factors involved in water pollution. In France, more precisely in the Pyrenees-Orientales department, the poor quality of the watercourses is attributable overall to the use of glyphosate-based herbicides in agricultural activities. Because these chemicals can impact individuals, populations, and biodiversity, we investigated, under experimental conditions, the physiological response of animals facing abiotic contaminants. We selected as a model, juveniles of the freshwater turtle Trachemys scripta elegans. We measured the gene expression and activity of the catalase and superoxide dismutase enzymes as well as the levels of lipid peroxidation, which are all oxidative stress biomarkers, in turtles challenged with high concentrations of glyphosate-based herbicides, on the one hand, and with degraded waters collected from a local watercourse, on the other. We also measured the acetylcholinesterase activity across the same animals. We showed through variations in gene expression and enzyme activity that a glyphosate commercial formulation induced a stress in turtles. A similar outcome was obtained when turtles faced degraded waters. The results indicated that the poor quality of regional waters could be a real threat for animal health. Because turtles are globally less sensitive to contaminants than amphibians, which are lacking in the degraded waters of the Pyrenees-Orientales department, they could constitute an excellent model to follow the evolution of water quality through the study of oxidative stress biomarkers. Environ Toxicol Chem 2017;36:3343-3350. (c) 2017 SETAC
机译:淡水生态系统面临着很强的人为压力,其中过度开发,栖息地退化,水流变化,物种入侵和水污染导致对生物多样性的威胁日益增加。涉及水污染的主要因素是通过废水处理实现城市化,通过释放无机和有机化学物质实现工业化以及通过使用农药和除草剂实现农业化。在法国,更确切地说,在比利牛斯省-东方省,水道质量较差的总体原因是在农业活动中使用了基于草甘膦的除草剂。由于这些化学物质会影响个人,种群和生物多样性,因此我们在实验条件下调查了面临非生物污染物的动物的生理反应。我们选择了淡水龟Trachemys scripta elegans的幼鱼作为模型。一方面,我们在高浓度草甘膦基除草剂挑战的海龟中,测量了过氧化氢酶和超氧化物歧化酶的基因表达和活性,以及​​脂质过氧化的水平,它们都是氧化应激生物标志物。另一方面是从当地河道收集的水。我们还测量了相同动物的乙酰胆碱酯酶活性。通过基因表达和酶活性的变化,我们发现草甘膦商业制剂在海龟中引起了压力。当乌龟面对退化的水域时,也获得了类似的结果。结果表明,区域水质差可能对动物健康构成真正威胁。由于乌龟对污染物的敏感性不如两栖动物(在比利牛斯-东方省的退化水域中缺少),因此它们可以通过研究氧化应激生物标记物而成为追踪水质变化的绝佳模型。 Environ Toxicol Chem 2017; 36:3343-3350。 (c)2017年SETAC

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