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生物降解测试方法的改进和新微生物生态学技术的应用。

Refinement of biodegradation tests methodologies and the proposed utility of new microbial ecology techniques.

机构信息

School of Life Sciences, University of Warwick, Coventry CV4 7AL, United Kingdom.

School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne NE1 7RU, United Kingdom.

出版信息

Ecotoxicol Environ Saf. 2015 Jan;111:9-22. doi: 10.1016/j.ecoenv.2014.09.021. Epub 2014 Oct 15.

Abstract

Society's reliance upon chemicals over the last few decades has led to their increased production, application and release into the environment. Determination of chemical persistence is crucial for risk assessment and management of chemicals. Current established OECD biodegradation guidelines enable testing of chemicals under laboratory conditions but with an incomplete consideration of factors that can impact on chemical persistence in the environment. The suite of OECD biodegradation tests do not characterise microbial inoculum and often provide little insight into pathways of degradation. The present review considers limitations with the current OECD biodegradation tests and highlights novel scientific approaches to chemical fate studies. We demonstrate how the incorporation of molecular microbial ecology methods (i.e., 'omics') may improve the underlying mechanistic understanding of biodegradation processes, and enable better extrapolation of data from laboratory based test systems to the relevant environment, which would potentially improve chemical risk assessment and decision making. We outline future challenges for relevant stakeholders to modernise OECD biodegradation tests and put the 'bio' back into biodegradation.

摘要

几十年来,社会对化学物质的依赖导致了它们的产量、应用和释放到环境中的增加。化学物质持久性的确定对于化学品风险评估和管理至关重要。目前,经合组织制定的生物降解性指南使我们能够在实验室条件下测试化学品,但对可能影响化学物质在环境中持久性的因素考虑不完整。经合组织的一系列生物降解性测试并不能描述微生物接种物,而且往往对降解途径提供的信息很少。本综述考虑了当前经合组织生物降解性测试的局限性,并强调了化学物质命运研究的新科学方法。我们展示了如何将分子微生物生态学方法(即“组学”)纳入其中,以提高对生物降解过程的基础机制理解,并能够更好地将基于实验室的测试系统的数据外推到相关环境中,这将有可能改善化学品风险评估和决策制定。我们概述了相关利益相关者在使经合组织生物降解性测试现代化和使生物降解性回归“生物”方面的未来挑战。

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