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The Role of Biomarkers in the Assessment of Aquatic Ecosystem Health

机译:生物标志物在水生生态系统健康评估中的作用

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摘要

Ensuring the health of aquatic ecosystems and identifying species at risk from the detrimental effects of environmental contaminants can be facilitated by integrating analytical chemical analysis with carefully selected biological endpoints measured in tissues of species of concern. These biological endpoints include molecular, biochemical, and physiological markers (i.e., biomarkers) that when integrated, can clarify issues of contaminant bioavailability, bioaccumulation, and ecological effects while enabling a better understanding of the effects of nonchemical stressors. In the case of contaminant stressors, an understanding of chemical modes of toxicity can be incorporated with diagnostic markers of aquatic animal physiology to help understand the health status of aquatic organisms in the field. Furthermore, new approaches in functional genomicsand bioinformatics can help discriminate individual chemicals, or groups of chemicals among complex mixtures that may contribute to adverse biological effects. Although the use of biomarkers is not a new paradigm, such approaches have been underused in the context of ecological risk assessment and natural resource damage assessment. From a regulatory standpoint, these approaches can help better assess the complex effects from coastal development activities to assessing ecosystem integrity pre- and post development or site remediation.
机译:通过将分析化学分析与在相关物种组织中测量的经过精心选择的生物学终点相结合,可以促进确保水生生态系统的健康并从环境污染物的有害影响中识别处于危险中的物种。这些生物学终点包括分子标记,生化标记和生理标记(即生物标记),这些标记整合后可以阐明污染物的生物利用度,生物蓄积和生态效应,同时可以更好地理解非化学应激源的作用。对于污染物胁迫源,可以将对化学毒性模式的理解与水生动物生理学的诊断标志物结合在一起,以帮助了解野外水生生物的健康状况。此外,功能基因组学和生物信息学的新方法可以帮助区分可能对生物造成不利影响的复杂混合物中的个别化学药品或化学药品组。尽管使用生物标志物并不是一个新的范例,但在生态风险评估和自然资源破坏评估的背景下,这种方法并未得到充分利用。从监管的角度来看,这些方法可以帮助更好地评估沿海开发活动的复杂影响,以及评估开发前后或场地整治之前的生态系统完整性。

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