School of Veterinary Medicine, Department of Anatomy, Physiology and Cell Biology, University of California, Davis, CA 95616, USA.
Sensors (Basel). 2012;12(9):12741-71. doi: 10.3390/s120912741. Epub 2012 Sep 18.
Ecotoxicology faces the challenge of assessing and predicting the effects of an increasing number of chemical stressors on aquatic species and ecosystems. Herein we review currently applied tools in ecological risk assessment, combining information on exposure with expected biological effects or environmental water quality standards; currently applied effect-based tools are presented based on whether exposure occurs in a controlled laboratory environment or in the field. With increasing ecological relevance the reproducibility, specificity and thus suitability for standardisation of methods tends to diminish. We discuss the use of biomarkers in ecotoxicology including ecotoxicogenomics-based endpoints, which are becoming increasingly important for the detection of sublethal effects. Carefully selected sets of biomarkers allow an assessment of exposure to and effects of toxic chemicals, as well as the health status of organisms and, when combined with chemical analysis, identification of toxicant(s). The promising concept of "adverse outcome pathways (AOP)" links mechanistic responses on the cellular level with whole organism, population, community and potentially ecosystem effects and services. For most toxic mechanisms, however, practical application of AOPs will require more information and the identification of key links between responses, as well as key indicators, at different levels of biological organization, ecosystem functioning and ecosystem services.
生态毒理学面临着评估和预测越来越多的化学胁迫因子对水生物种和生态系统影响的挑战。本文综述了目前应用于生态风险评估的工具,将暴露信息与预期的生物学效应或环境水质标准相结合;根据暴露是发生在受控的实验室环境还是野外环境,介绍了目前应用的基于效应的工具。随着生态相关性的增加,方法的重现性、特异性和标准化适用性趋于降低。本文讨论了生态毒理学中生物标志物的应用,包括基于生态毒理学基因组学的终点,这些终点对于检测亚致死效应变得越来越重要。精心选择的生物标志物集可用于评估有毒化学物质的暴露和效应,以及生物体的健康状况,并且当与化学分析相结合时,可用于识别有毒物质。有前途的“不良结局途径 (AOP)”概念将细胞水平的机制反应与整个生物体、种群、群落以及潜在的生态系统效应和服务联系起来。然而,对于大多数毒性机制,AOP 的实际应用需要更多的信息以及在不同的生物组织、生态系统功能和生态系统服务水平之间的反应、关键环节和关键指标的识别。