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进化毒理学:对化学应激源响应中进化事件的荟萃分析。

Evolutionary toxicology: Meta-analysis of evolutionary events in response to chemical stressors.

作者信息

M Oziolor Elias, De Schamphelaere Karel, Matson Cole W

机构信息

Department of Environmental Science, Center for Reservoir and Aquatic Systems Research (CRASR), Institute for Biomedical Studies, Baylor University, Waco, TX, 76798, USA.

Laboratory of Environmental Toxicology and Aquatic Ecology, GhEnToxLab unit, Ghent University, Jozef Plateaustraat 22, Gent, B-9000, Belgium.

出版信息

Ecotoxicology. 2016 Dec;25(10):1858-1866. doi: 10.1007/s10646-016-1735-6. Epub 2016 Oct 3.

Abstract

The regulatory decision-making process regarding chemical safety is most often informed by evidence based on ecotoxicity tests that consider growth, reproduction and survival as end-points, which can be quantitatively linked to short-term population outcomes. Changes in these end-points resulting from chemical exposure can cause alterations in micro-evolutionary forces (mutation, drift, selection and gene flow) that control the genetic composition of populations. With multi-generation exposures, anthropogenic contamination can lead to a population with an altered genetic composition, which may respond differently to future stressors. These evolutionary changes are rarely discussed in regulatory or risk assessment frameworks, but the growing body of literature that documents their existence suggests that these important population-level impacts should be considered. In this meta-analysis we have compared existing contamination levels of polychlorinated biphenyls (PCBs) and polycyclic aromatic hydrocarbons (PAHs) that have been documented to be associated with evolutionary changes in resident aquatic organisms to regulatory benchmarks for these contaminants. The original intent of this project was to perform a meta-analysis on evolutionary events associated with PCB and PAH contamination. However, this effort was hindered by a lack of consistency in congener selection for "total" PCB or PAH measurements. We expanded this manuscript to include a discussion of methods used to determine PCB and PAH total contamination in addition to comparing regulatory guidelines and contamination that has caused evolutionary effects. Micro-evolutionary responses often lead populations onto unique and unpredictable trajectories. Therefore, to better understand the risk of population-wide alterations occurring, we need to improve comparisons of chemical contamination between affected locations. In this manuscript we offer several possibilities to unify chemical comparisons for PCBs and PAHs that would improve comparability among evolutionary toxicology investigations, and with regulatory guidelines. In addition, we identify studies documenting evolutionary change in the presence of PCB and PAH contamination levels below applicable regulatory benchmarks.

摘要

关于化学物质安全性的监管决策过程,大多依据基于生态毒性测试的证据,这些测试将生长、繁殖和生存作为终点指标,而这些终点指标可与短期种群结果进行定量关联。化学物质暴露导致的这些终点指标变化,会引起控制种群遗传组成的微观进化力量(突变、漂变、选择和基因流动)的改变。经过多代暴露后,人为污染可能导致种群的遗传组成发生变化,这可能使其对未来的压力源产生不同反应。这些进化变化在监管或风险评估框架中很少被讨论,但越来越多记录其存在的文献表明,这些重要的种群层面影响应予以考虑。在这项荟萃分析中,我们将已记录的与水生生物进化变化相关的多氯联苯(PCBs)和多环芳烃(PAHs)的现有污染水平,与这些污染物的监管基准进行了比较。该项目的最初意图是对与PCBs和PAH污染相关的进化事件进行荟萃分析。然而,由于“总”PCBs或PAHs测量中同系物选择缺乏一致性,这项工作受到了阻碍。我们扩展了这份手稿,除了比较监管指南和已造成进化影响的污染外,还纳入了用于确定PCBs和PAHs总污染的方法讨论。微观进化反应常常使种群走上独特且不可预测的轨迹。因此,为了更好地理解发生全种群改变的风险,我们需要改进受影响地点之间化学污染的比较。在这份手稿中,我们提供了几种统一PCBs和PAHs化学比较的可能性,这将提高进化毒理学研究之间以及与监管指南之间的可比性。此外,我们还确定了一些研究,这些研究记录了在PCBs和PAHs污染水平低于适用监管基准的情况下的进化变化。

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