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多方面评估聚乙烯微塑料对幼年金头鲷(Sparus aurata)的影响。

A multifaceted assessment of the effects of polyethylene microplastics on juvenile gilthead seabreams (Sparus aurata).

机构信息

PSL Research University, EPHE-UPVD-CNRS, USR 3278 CRIOBE BP 1013, Moorea, Papetoai 98729, French Polynesia.

School of Biological Sciences, University of Bristol, United Kingdom.

出版信息

Aquat Toxicol. 2021 Dec;241:106004. doi: 10.1016/j.aquatox.2021.106004. Epub 2021 Oct 22.

Abstract

Plastic pollution has become a major environmental and societal concern in the last decade. From larger debris to microplastics (MP), this pollution is ubiquitous and particularly affects aquatic ecosystems. MP can be directly or inadvertently ingested by organisms, transferred along the trophic chain, and sometimes translocated into tissues. However, the impacts of such MP exposure on organisms' biological functions are yet to be fully understood. Here, we used a multi-diagnostic approach at multiple levels of biological organization (from atoms to organisms) to determine how MP affect the biology of a marine fish, the gilthead seabream, Sparus aurata. We exposed juvenile seabreams for 35 days to spherical 10-20 µm polyethylene primary MP through food (Artemia salina pre-exposed to MP) at a concentration of 5 ± 1 µg of MP per gram of fish per day. MP-exposed fish experienced higher mortality, increased abundance of several brain and liver primary metabolites, hepatic and intestinal histological defects, higher assimilation of an essential element (Zn), and lower assimilation of a non-essential element (Ag). In contrast, growth and muscle C/N isotopic profiles were similar between control and MP-exposed fish, while variable patterns were observed for the intestinal microbiome. This comprehensive analysis of biological responses to MP exposure reveals how MP ingestion can cause negligible to profound effects in a fish species and contributes towards a better understanding of the causal mechanisms of its toxicity.

摘要

在过去的十年中,塑料污染已成为一个主要的环境和社会问题。从较大的碎片到微塑料(MP),这种污染无处不在,尤其会影响水生生态系统。MP 可以被生物直接或间接地摄入,通过食物链传递,并在某些情况下转移到组织中。然而,这种 MP 暴露对生物的生物学功能的影响还没有被完全理解。在这里,我们使用了一种多诊断方法,在多个生物组织层次(从原子到生物体)上,确定了 MP 如何影响海洋鱼类金头鲷 Sparus aurata 的生物学。我们通过食物(事先暴露于 MP 的丰年虾)将直径 10-20µm 的球形聚乙烯初级 MP 以每天每克鱼 5±1µg 的浓度暴露给幼鱼 35 天。暴露于 MP 的鱼死亡率更高,大脑和肝脏的几种初级代谢物的丰度增加,肝脏和肠道组织学缺陷,对必需元素(Zn)的同化作用更高,对非必需元素(Ag)的同化作用更低。相比之下,控制组和 MP 暴露组的鱼的生长和肌肉 C/N 同位素谱相似,而肠道微生物组则表现出不同的模式。这种对 MP 暴露的生物学反应的综合分析揭示了 MP 摄入如何在鱼类物种中引起轻微至严重的影响,并有助于更好地理解其毒性的因果机制。

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