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聚酯微塑料纤维的实际浓度对淡水浮游动物群落无影响。

No Effect of Realistic Concentrations of Polyester Microplastic Fibers on Freshwater Zooplankton Communities.

机构信息

Department of Zoology, Biodiversity Research Centre, University of British Columbia, Vancouver, British Columbia, Canada.

Department of Botany, Biodiversity Research Centre, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

Environ Toxicol Chem. 2024 Feb;43(2):418-428. doi: 10.1002/etc.5797. Epub 2024 Jan 10.

Abstract

Zooplankton are a conduit of energy from autotrophic phytoplankton to higher trophic levels, and they can be a primary point of entry of microplastics into the aquatic food chain. Investigating how zooplankton communities are affected by microplastic pollution is thus a key step toward understanding ecosystem-level effects of these global and ubiquitous contaminants. Although the number of studies investigating the biological effects of microplastics has grown exponentially in the last decade, the majority have used controlled laboratory experiments to quantify the impacts of microplastics on individual species. Given that all organisms live in multispecies communities in nature, we used an outdoor 1130-L mesocosm experiment to investigate the effects of microplastic exposure on natural assemblages of zooplankton. We endeavored to simulate an environmentally relevant exposure scenario by manually creating approximately 270 000 0.015 × 1- to 1.5-mm polyester fibers and inoculating mesocosms with zero, low (10 particles/L), and high (50 particles/L) concentrations. We recorded zooplankton abundance and community composition three times throughout the 12-week study. We found no effect of microplastics on zooplankton abundance, Shannon diversity, or Pielou's evenness. Nonmetric multidimensional scaling plots also revealed no effects of microplastics on zooplankton community composition. Our study provides a necessary and realistic baseline on which future studies can build. Because numerous other stressors faced by zooplankton (e.g., food limitation, eutrophication, warming temperatures, pesticides) are likely to exacerbate the effects of microplastics, we caution against concluding that polyester microfibers will always have no effect on zooplankton communities. Instead, we encourage future studies to investigate the triple threats of habitat degradation, climate warming, and microplastic pollution on zooplankton community health. Environ Toxicol Chem 2024;43:418-428. © 2023 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

浮游动物是自养浮游植物向更高营养级传递能量的渠道,它们可能是微塑料进入水生食物链的主要入口之一。因此,研究浮游动物群落如何受到微塑料污染的影响是理解这些全球性和普遍存在的污染物对生态系统水平影响的关键步骤。尽管在过去十年中,研究微塑料生物效应的研究数量呈指数级增长,但大多数研究都使用受控实验室实验来量化微塑料对单个物种的影响。鉴于所有生物在自然界中都生活在多物种群落中,我们使用户外 1130-L 中观实验来研究微塑料暴露对浮游动物自然群落的影响。我们努力通过手动创建大约 270000 个 0.015×1 至 1.5 毫米的聚酯纤维,并在中观实验中接种零、低(10 个/升)和高(50 个/升)浓度的微塑料,来模拟一个具有环境相关性的暴露场景。我们在整个 12 周的研究中三次记录了浮游动物的丰度和群落组成。我们没有发现微塑料对浮游动物丰度、香农多样性或皮耶罗均匀度有影响。非度量多维标度图也显示微塑料对浮游动物群落组成没有影响。我们的研究提供了一个必要的和现实的基线,未来的研究可以在此基础上进行。因为浮游动物面临的许多其他胁迫因素(例如,食物限制、富营养化、温度升高、农药)可能会加剧微塑料的影响,所以我们警告不要得出聚酯微纤维对浮游动物群落总是没有影响的结论。相反,我们鼓励未来的研究调查栖息地退化、气候变暖以及微塑料污染对浮游动物群落健康的三重威胁。环境毒理学与化学 2024;43:418-428。©2023 作者。环境毒理学与化学由 Wiley 期刊公司代表 SETAC 出版。

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