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理想的微塑料效应研究蓝图:当前实验方法的关键问题及未来发展方向。

Blueprint for the ideal microplastic effect study: Critical issues of current experimental approaches and envisioning a path forward.

机构信息

Estonian Marine Institute, University of Tartu, Mäealuse 14, EE-12618 Tallinn, Estonia.

GEOMAR, Helmholtz Centre for Ocean Research Kiel, Marine Ecology Department, Düsternbrooker Weg 20, 24105 Kiel, Germany.

出版信息

Sci Total Environ. 2022 Sep 10;838(Pt 4):156610. doi: 10.1016/j.scitotenv.2022.156610. Epub 2022 Jun 9.

DOI:10.1016/j.scitotenv.2022.156610
PMID:35690216
Abstract

This article presents a novel conceptual blueprint for an 'ideal', i.e., ecologically relevant, microplastic effect study. The blueprint considers how microplastics should be characterized and applied in laboratory experiments, and how biological responses should be measured to assure unbiased data that reliably reflect the effects of microplastics on aquatic biota. This 'ideal' experiment, although practically unachievable, serves as a backdrop to improve specific aspects of experimental research on microplastic effects. In addition, a systematic and quantitative literature review identified and quantified departures of published experiments from the proposed 'ideal' design. These departures are related mainly to the experimental design of microplastic effect studies failing to mimic natural environments, and experiments with limited potential to be scaled-up to ecosystem level. To produce a valid and generalizable assessment of the effect of microplastics on biota, a quantitative meta-analysis was performed that incorporated the departure of studies from the 'ideal' experiment (a measure of experimental quality) and inverse variance (a measure of the study precision) as weighting coefficients. Greater weights were assigned to experiments with higher quality and/or with lower variance in the response variables. This double-weighting captures jointly the technical quality, ecological relevance and precision of estimates provided in each study. The blueprint and associated meta-analysis provide an improved baseline for the design of ecologically relevant and technically sound experiments to understand the effects of microplastics on single species, populations and, ultimately, entire ecosystems.

摘要

本文提出了一个新颖的概念蓝图,用于进行“理想”的、即具有生态相关性的微塑料效应研究。该蓝图考虑了如何对微塑料进行特征描述并将其应用于实验室实验,以及如何测量生物响应,以确保数据无偏,可靠地反映微塑料对水生生物群的影响。虽然这种“理想”实验在实践中难以实现,但它可以作为背景,改进微塑料效应实验研究的具体方面。此外,系统的定量文献综述确定并量化了已发表的实验与所提出的“理想”设计之间的偏离。这些偏离主要与未能模拟自然环境的微塑料效应研究的实验设计以及难以扩展到生态系统水平的实验有关。为了对微塑料对生物群的影响进行有效且可推广的评估,进行了定量荟萃分析,该分析将研究偏离“理想”实验(实验质量的度量)和逆方差(响应变量的研究精度的度量)作为权重系数。具有更高质量和/或响应变量方差更低的实验被赋予更高的权重。这种双重加权共同捕获了每个研究中提供的估计值的技术质量、生态相关性和精度。该蓝图和相关的荟萃分析为设计具有生态相关性和技术合理性的实验提供了改进的基准,以了解微塑料对单一物种、种群以及最终整个生态系统的影响。

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