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Genotoxic Response and Mortality in 3 Marine Copepods Exposed to Waterborne Copper

机译:三种暴露于水性铜的海洋Co足类动物的遗传毒性反应和死亡率

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Copper (Cu) is an essential trace metal, but may also be toxic to aquatic organisms. Although many studies have investigated the cytotoxicity of Cu, little is known about the in vivo genotoxic potential of Cu in marine invertebrates. We investigated the genotoxicity of Cu in 2 pelagic calanoid copepods, Acartia tonsa and Temora longicornis, and the intertidal harpacticoid copepod Tigriopus brevicornis by exposing them for 6 and 72 h to waterborne Cu (0, 6, and 60 mu g Cu/L). A subsequent 24-h period in filtered seawater was used to investigate delayed effects or recovery. Genotoxicity was evaluated as DNA strand breaks in individual copepods using the comet assay. Copper did not increase DNA strand breaks in any of the species at any concentration or time point. The treatment did, however, cause 100% mortality in A. tonsa following exposure to 60 mu g Cu/L. Acartia tonsa and T. longicornis were more susceptible to Cu-induced mortality than the benthic harpacticoid T. brevicornis, which appeared to be unaffected by the treatments. The results show major differences in Cu susceptibility among the 3 copepods and also that acute toxicity of Cu to A. tonsa is not directly associated with genotoxicity. We also show that the comet assay can be used to quantify genotoxicity in individual copepods. Environ Toxicol Chem 2019;38:2224-2232. (c) 2019 SETAC.
机译:铜(Cu)是必不可少的微量金属,但也可能对水生生物有毒。尽管许多研究已经调查了Cu的细胞毒性,但对于海洋无脊椎动物中Cu的体内遗传毒性潜力知之甚少。我们通过将它们暴露于水性铜(0、6和60μg Cu / L)分别在6和72 h内,研究了Cu在2种浮游类co足类co足类动物,tons螨和长吻em以及潮间类类拟co足类短足Tigriopus brevicornis中的铜的遗传毒性。随后在过滤的海水中使用24小时来研究延迟效应或恢复。使用彗星试验评估个体as足类动物的DNA链断裂来评估基因毒性。铜在任何浓度或时间点都不会增加任何物种的DNA链断裂。但是,在暴露于60μgCu / L后,该处理确实导致了A.tonsa的100%死亡率。与底栖类六类拟生物T. brevicornis相比,螨和T. longicornis对Cu致死的敏感性更高,后者似乎不受治疗影响。结果表明,三种co足类动物对铜的敏感性差异很大,而且铜对扁桃体的急性毒性与遗传毒性没有直接关系。我们还表明,彗星试验可用于量化个体individual足类的遗传毒性。 Environ Toxicol Chem 2019; 38:2224-2232。 (c)2019年SETAC。

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