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Multigenerational Exposure of Populations of Oppia nitens to Zinc under Pulse and Continuous Exposure Scenarios

机译:脉冲和连续暴露情景下乌贼种群对锌的多代暴露

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Current soil remediation guidelines for metals reflect single-generation laboratory studies, but in the field, organisms are exposed to metals for more than one generation. The present study assessed the multigenerational effect of zinc (Zn) on Oppia nitens under a pulse or continuous exposure scenario. Synchronized adult mites (parents) were exposed to 6 concentrations of Zn in a field soil. For the pulse exposure, juveniles of parent mites from 3 of the 6 concentrations (105, 158, 237, 335, 553, and 800 mg/kg) were kept in clean media and reared until the third generation. At every generation, the sensitivity of the mites to Zn was tested in a dose-response manner. For the continuous exposure, the mites produced from the parents were re-exposed to the same concentration as their parents. According to critical-level estimates like the median effect concentration, all populations of the F2 and F3 generation mites in the pulse exposure were less sensitive to Zn than the parents and were protected at 250 mg/kg of Zn (Canadian Council of Ministers of the Environment [2018] soil quality guideline). However, the mite generations of the continuous exposure remained as sensitive as the parent generation and were not protected by the Zn guideline level. The Zn niche width narrowed considerably for all continuously exposed mite populations, indicating that they were more sensitive than the parent. Our results show that Zn has a deleterious multigenerational effect on continuously exposed populations of mites. Environ Toxicol Chem 2019;38:896-904. (c) 2019 SETAC
机译:当前的金属土壤修复指南反映了单代实验室研究,但是在现场,生物体暴露于金属的时间超过了一代。本研究评估了脉冲或连续暴露情况下锌(Zn)对Oppia nitens的多代影响。同步成年螨(父母)在田间土壤中暴露于6种浓度的Zn。对于脉冲暴露,将6种浓度中的3种(105、158、237、335、553和800 mg / kg)的幼体螨保存在干净的培养基中,并饲养到第三代。在每一代中,以剂量响应方式测试螨对Zn的敏感性。为了连续暴露,将父母产生的螨再次暴露于与其父母相同的浓度下。根据临界浓度估计值(例如中值效应浓度),脉冲暴露中所有F2和F3代螨虫对锌的敏感性均低于其母体,并以250 mg / kg的Zn受到保护(加拿大部长会议)。环境[2018]土壤质量指南)。但是,连续暴露的螨虫世代仍然与父代一样敏感,并且不受锌准则水平的保护。对于所有连续暴露的螨类种群,锌生态位宽度均显着缩小,表明它们比亲本更为敏感。我们的结果表明,锌对连续暴露的螨虫种群具有有害的多代效应。 Environ Toxicol Chem 2019; 38:896-904。 (c)2019年SETAC

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