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AN INEXPENSIVE, TEMPORALLY INTEGRATED SYSTEM FOR MONITORING OCCURRENCE AND BIOLOGICAL EFFECTS OF AQUATIC CONTAMINANTS IN THE FIELD

机译:一种用于监测水田中水生污染物的发生和生物效应的一种无差别的,时间上综合的系统

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摘要

Assessment of potential risks of complex contaminant mixtures in the environment requires integrated chemical and biological approaches. In support of the US Great Lakes Restoration Initiative, the US Environmental Protection Agency lab in Duluth, MN, is developing these types of methods for assessing possible risks of aquatic contaminants in near-shore Great Lakes (USA) sites. One component involves an exposure system for caged fathead minnow (Pimephales promelas) adults suitable for the wide range of habitat and deployment situations encountered in and around the Great Lakes. To complement the fish exposure system, the authors developed an automated device for collection of composite water samples that could be simultaneously deployed with the cages and reflect a temporally integrated exposure of the animals. The present study describes methodological details of the design, construction, and deployment of a flexible yet comparatively inexpensive (\u3c600 \u3eUSD) caged-fish/autosampler system. The utility and performance of the system were demonstrated with data collected from deployments at several Great Lakes sites. For example, over 3 field seasons, only 2 of 130 deployed cages were lost, and approximately 99% of successfully deployed adult fish were recovered after exposures of 4 d or longer. A number of molecular, biochemical, and apical endpoints were successfully measured in recovered animals, changes in which reflected known characteristics of the study sites (e.g., upregulation of hepatic genes involved in xenobiotic metabolism in fish held in the vicinity of wastewater treatment plants). The automated composite samplers proved robust with regard to successful water collection (\u3e95% of deployed units in the latest field season), and low within- and among-unit variations were found relative to programmed collection volumes. Overall, the test system has excellent potential for integrated chemical–biological monitoring of contaminants in a variety of field settings
机译:评估环境中复杂污染物混合物的潜在风险需要综合的化学和生物方法。为了支持美国大湖区恢复计划,美国环境保护局位于明尼苏达州德卢斯的实验室正在开发这些类型的方法,用于评估近岸大湖区(美国)站点中水生污染物的可能风险。一个组成部分涉及适合笼养的黑头fat鱼(Pimephales promelas)成虫的暴露系统,适合在五大湖及其周边地区遇到的各种生境和部署情况。为了补充鱼类暴露系统,作者开发了一种自动设备,用于收集复合水样本,该样本可以与网箱同时部署,并反映动物在时间上的整体暴露情况。本研究描述了灵活,相对便宜的网箱鱼/自动进样器系统的设计,构建和部署的方法学细节。该系统的实用性和性能通过从大湖区几个站点的部署收集的数据进行了演示。例如,在3个田间季节中,在130个已部署网箱中只有2个丢失,暴露4天或更长时间后,成功部署的成年鱼中约有99%被恢复。在恢复的动物中成功地测量了许多分子,生化和顶端终点,这些变化反映了研究地点的已知特征(例如,废水处理厂附近鱼体内异种生物代谢中涉及的肝基因的上调)。事实证明,自动复合采样器在成功进行水收集方面(在最近的田间季节中已部署单位的95%)是可靠的,并且相对于计划的收集量,单位内部和单位之间的变化较小。总体而言,该测试系统具有在各种现场设置中对污染物进行综合化学-生物监测的巨大潜力

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