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海洋生物中微塑料的生物积累和生物放大:当前数据的综述和荟萃分析。

Bioaccumulation and biomagnification of microplastics in marine organisms: A review and meta-analysis of current data.

机构信息

Australian Institute of Marine Science (AIMS), Townsville, Queensland, Australia.

Division of Research and Innovation, AIMS@JCU, James Cook University, Townsville, Queensland, Australia.

出版信息

PLoS One. 2020 Oct 16;15(10):e0240792. doi: 10.1371/journal.pone.0240792. eCollection 2020.

Abstract

Microplastic (MP) contamination has been well documented across a range of habitats and for a large number of organisms in the marine environment. Consequently, bioaccumulation, and in particular biomagnification of MPs and associated chemical additives, are often inferred to occur in marine food webs. Presented here are the results of a systematic literature review to examine whether current, published findings support the premise that MPs and associated chemical additives bioaccumulate and biomagnify across a general marine food web. First, field and laboratory-derived contamination data on marine species were standardised by sample size from a total of 116 publications. Second, following assignment of each species to one of five main trophic levels, the average uptake of MPs and of associated chemical additives was estimated across all species within each level. These uptake data within and across the five trophic levels were then critically examined for any evidence of bioaccumulation and biomagnification. Findings corroborate previous studies that MP bioaccumulation occurs within each trophic level, while current evidence around bioaccumulation of associated chemical additives is much more ambiguous. In contrast, MP biomagnification across a general marine food web is not supported by current field observations, while results from the few laboratory studies supporting trophic transfer are hampered by using unrealistic exposure conditions. Further, a lack of both field and laboratory data precludes an examination of potential trophic transfer and biomagnification of chemical additives associated with MPs. Combined, these findings indicate that, although bioaccumulation of MPs occurs within trophic levels, no clear sign of MP biomagnification in situ was observed at the higher trophic levels. Recommendations for future studies to focus on investigating ingestion, retention and depuration rates for MPs and chemical additives under environmentally realistic conditions, and on examining the potential of multi-level trophic transfer for MPs and chemical additives have been made.

摘要

微塑料 (MP) 污染在各种生境中和海洋环境中的大量生物中都有很好的记录。因此,通常推断 MP 和相关化学添加剂会在海洋食物网中发生生物积累,特别是生物放大。这里介绍的是一项系统文献综述的结果,旨在检验当前已发表的研究结果是否支持 MP 和相关化学添加剂在一般海洋食物网中发生生物积累和生物放大的前提。首先,通过从总共 116 篇出版物中按样本大小对海洋物种的实地和实验室获得的污染数据进行标准化。其次,在将每个物种分配到五个主要营养级之一后,估计了每个营养级内所有物种对 MP 和相关化学添加剂的平均吸收量。然后,对这五个营养级内和跨级别的摄取数据进行了严格审查,以寻找任何生物积累和生物放大的证据。研究结果证实了先前的研究,即 MP 在每个营养级内都发生生物积累,而有关相关化学添加剂生物积累的当前证据则更加模糊。相比之下,当前的实地观察结果并不支持 MP 在一般海洋食物网中的生物放大,而少数支持营养级转移的实验室研究结果因使用不切实际的暴露条件而受到阻碍。此外,缺乏实地和实验室数据使得无法检查与 MP 相关的化学添加剂的潜在营养级转移和生物放大。综合来看,这些研究结果表明,尽管 MP 在营养级内发生生物积累,但在较高营养级别的现场没有观察到 MP 生物放大的明显迹象。建议未来的研究集中在调查在环境现实条件下 MP 和化学添加剂的摄入、保留和清除率,以及检查 MP 和化学添加剂的多营养级转移的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4847/7567360/3efc55fa4f9b/pone.0240792.g001.jpg

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