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如何在农药环境风险评估中使用机理效应模型:SETAC研讨会MODELINK的案例研究与建议

How to use mechanistic effect models in environmental risk assessment of pesticides: Case studies and recommendations from the SETAC workshop MODELINK.

作者信息

Hommen Udo, Forbes Valery, Grimm Volker, Preuss Thomas G, Thorbek Pernille, Ducrot Virginie

机构信息

Fraunhofer Institute for Molecular Biology and Applied Ecology IME, Schmallenberg, Germany.

School of Biological Sciences, University of Nebraska, Lincoln, Nebraska, USA.

出版信息

Integr Environ Assess Manag. 2016 Jan;12(1):21-31. doi: 10.1002/ieam.1704. Epub 2015 Oct 29.

Abstract

Mechanistic effect models (MEMs) are useful tools for ecological risk assessment of chemicals to complement experimentation. However, currently no recommendations exist for how to use them in risk assessments. Therefore, the Society of Environmental Toxicology and Chemistry (SETAC) MODELINK workshop aimed at providing guidance for when and how to apply MEMs in regulatory risk assessments. The workshop focused on risk assessment of plant protection products under Regulation (EC) No 1107/2009 using MEMs at the organism and population levels. Realistic applications of MEMs were demonstrated in 6 case studies covering assessments for plants, invertebrates, and vertebrates in aquatic and terrestrial habitats. From the case studies and their evaluation, 12 recommendations on the future use of MEMs were formulated, addressing the issues of how to translate specific protection goals into workable questions, how to select species and scenarios to be modeled, and where and how to fit MEMs into current and future risk assessment schemes. The most important recommendations are that protection goals should be made more quantitative; the species to be modeled must be vulnerable not only regarding toxic effects but also regarding their life history and dispersal traits; the models should be as realistic as possible for a specific risk assessment question, and the level of conservatism required for a specific risk assessment should be reached by designing appropriately conservative environmental and exposure scenarios; scenarios should include different regions of the European Union (EU) and different crops; in the long run, generic MEMs covering relevant species based on representative scenarios should be developed, which will require EU-level joint initiatives of all stakeholders involved. The main conclusion from the MODELINK workshop is that the considerable effort required for making MEMs an integral part of environmental risk assessment of pesticides is worthwhile, because it will make risk assessments not only more ecologically relevant and less uncertain but also more comprehensive, coherent, and cost effective.

摘要

机理效应模型(MEMs)是用于化学品生态风险评估以补充实验研究的有用工具。然而,目前对于如何在风险评估中使用这些模型尚无相关建议。因此,环境毒理学与化学学会(SETAC)的MODELINK研讨会旨在为在监管风险评估中何时以及如何应用MEMs提供指导。该研讨会聚焦于依据欧盟法规(EC)No 1107/2009,在生物体和种群水平上使用MEMs对植物保护产品进行风险评估。在6个案例研究中展示了MEMs在水生和陆地生境中对植物、无脊椎动物和脊椎动物评估的实际应用。通过这些案例研究及其评估,制定了12条关于MEMs未来使用的建议,涉及如何将特定保护目标转化为可行问题、如何选择要建模的物种和情景,以及在何处和如何将MEMs纳入当前及未来风险评估方案等问题。最重要的建议包括:保护目标应更加量化;要建模的物种不仅在毒性效应方面,而且在其生活史和扩散特征方面都必须是易受影响的;对于特定风险评估问题,模型应尽可能真实,并且应通过设计适当保守的环境和暴露情景来达到特定风险评估所需的保守程度;情景应包括欧盟不同地区和不同作物;从长远来看,应基于代表性情景开发涵盖相关物种的通用MEMs,这将需要所有相关利益攸关方在欧盟层面开展联合行动。MODELINK研讨会的主要结论是,使MEMs成为农药环境风险评估不可或缺的一部分所需付出的巨大努力是值得的,因为这将使风险评估不仅在生态上更具相关性、不确定性更低,而且更全面、连贯且具有成本效益。

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