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A Framework for Predicting Impacts on Ecosystem Services From (Sub)Organismal Responses to Chemicals

机译:从(亚)有机物对化学品的响应预测对生态系统服务的影响的框架

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Protection of ecosystem services is increasingly emphasized as a risk-assessment goal, but there are wide gaps between current ecological risk-assessment endpoints and potential effects on services provided by ecosystems. The authors present a framework that links common ecotoxicological endpoints to chemical impacts on populations and communities and the ecosystem services that they provide. This framework builds on considerable advances in mechanistic effects models designed to span multiple levels of biological organization and account for various types of biological interactions and feedbacks. For illustration, the authors introduce 2 case studies that employ well-developed and validated mechanistic effects models: the inSTREAM individual-based model for fish populations and the AQUATOX ecosystem model. They also show how dynamic energy budget theory can provide a common currency for interpreting organism-level toxicity. They suggest that a framework based on mechanistic models that predict impacts on ecosystem services resulting from chemical exposure, combined with economic valuation, can provide a useful approach for informing environmental management. The authors highlight the potential benefits of using this framework as well as the challenges that will need to be addressed in future work. (C) 2017 SETAC.
机译:保护生态系统服务越来越被视为一项风险评估目标,但目前的生态风险评估终点与对生态系统提供的服务的潜在影响之间存在很大差距。作者提出了一个框架,该框架将常见的生态毒理学终点与对人口和社区及其提供的生态系统服务的化学影响联系起来。该框架建立在机械效应模型的显着进步的基础上,该模型旨在跨越多个层次的生物组织并考虑各种类型的生物相互作用和反馈。为说明起见,作者介绍了2个案例研究,这些案例采用了成熟且经过验证的机械效应模型:基于inSTREAM的个体鱼类种群模型和AQUATOX生态系统模型。他们还展示了动态能量收支理论如何为解释生物体毒性提供一种通用货币。他们建议,基于机制模型的框架可以预测化学暴露与经济估值相结合对生态系统服务的影响,可以为告知环境管理提供有用的方法。作者强调了使用此框架的潜在好处以及未来工作中需要解决的挑战。 (C)2017年SETAC。

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