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难以接受的塑料:浮游桡足类中微塑料的高效味觉辨别。

Unpalatable Plastic: Efficient Taste Discrimination of Microplastics in Planktonic Copepods.

机构信息

State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 200241 Shanghai, China.

National Institute of Aquatic Resource, Technical University of Denmark, Kemitorvet, 2800 Kgs. Lyngby, Denmark.

出版信息

Environ Sci Technol. 2022 May 17;56(10):6455-6465. doi: 10.1021/acs.est.2c00322. Epub 2022 Apr 27.

Abstract

Planktonic copepods are the most abundant animals in the ocean and key players in global biochemical processes. Recent modeling suggests that zooplankton ingestion of microplastics (MPs) can disrupt the biological carbon pump and accelerate a global loss of oceanic oxygen. Here we investigate the behavioral responses and ingestion rates of a model feeding-current generating copepod when exposed to microplastics of different characteristics by small-scale video observations and bottle incubations. We found that copepods rejected 80% of the microplastics after touching them with their mouth parts, in essence exhibiting a kind of taste discrimination. High rejection rates of microplastics were independent of polymer type, shape, presence of biofilms, or sorbed pollutant (pyrene), indicating that microplastics are unpalatable for feeding-current feeding copepods and that post-capture taste discrimination is a main sensorial mechanism in the rejection of microplastics. In an ecological context, taking into account the behaviors of planktonic copepods and the concentrations of microplastics found in marine waters, our results suggest a low risk of microplastic ingestion by zooplankton and a low impact of microplastics on the vertical exportation of fecal pellets.

摘要

浮游桡足类是海洋中最丰富的动物,也是全球生化过程的关键参与者。最近的模型表明,浮游动物摄食微塑料(MPs)会破坏生物碳泵,并加速全球海洋氧气的丧失。在这里,我们通过小规模视频观察和瓶孵育来研究当暴露于具有不同特征的微塑料时,模型摄食流产生桡足类的行为反应和摄食率。我们发现桡足类在用口部触碰微塑料后会拒绝 80%的微塑料,实质上表现出一种味觉辨别。对微塑料的高拒绝率与聚合物类型、形状、生物膜的存在或吸附污染物(芘)无关,表明微塑料对摄食流的桡足类来说是不可口的,并且摄食后味觉辨别是拒绝微塑料的主要感觉机制。在生态背景下,考虑到浮游桡足类的行为和海洋水中发现的微塑料浓度,我们的结果表明,浮游动物摄入微塑料的风险较低,微塑料对粪粒垂直输出的影响较低。

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