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Evidence of Microplastic Translocation in Wild-Caught Fish and Implications for Microplastic Accumulation Dynamics in Food Webs

机译:野生捕捞鱼类的微塑性易位证据及食品网中微型累积动力学的影响

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摘要

The presence of microplastics within the gut of animals is well documented. Whether microplastics bioaccumulate in organisms and biomagnify in food webs remains unclear and relies on the ability of microplastics to translocate to other tissues. Here, we demonstrate the widespread presence of microplastics and other anthropogenic microparticles in the gastrointestinal tract, fillet, and livers of seven species of sportfish from Lake Simcoe, Ontario, Canada. Larger fish had a higher microplastic load compared to smaller fish, but the opposite trend was observed with translocated microplastics standardized by fish mass (i.e., smaller fish contained more translocated particles per gram wet weight than larger fish). Moreover, we observed no evidence of biomagnification as there was no significant relationship between the trophic level and total or translocated microplastics per individual. Overall, this suggests that microplastics are translocating, but that excretion of translocated particles or growth dilution may be occurring rather than bioaccumulation and biomagnification. Moreover, the assemblages of shapes and material types varied among tissues, suggesting that particle characteristics may predict biological fate. Our findings highlight the need for further work to understand the mechanisms of microplastic translocation and excretion and the implications for the dynamics of microplastics accumulation in food webs and human exposure.
机译:肠道内的微塑料的存在良好记录。在食物网中生物体和生物染色中的微塑料生物累积是否仍然尚不清楚,并依赖于微薄塑料堆放到其他组织的能力。在这里,我们证明了从加拿大安大略省伊达奥湖的胃肠道,柳叶群,七种运动鱼的胃肠道,圆角和肝脏肝脏中的广泛存在。与较小的鱼相比,较大的鱼类具有更高的微塑性载荷,但是通过鱼质量标准化的易位微薄塑料观察到相反的趋势(即,较小的鱼类含有比较大的鱼类多的旋转颗粒更有垂直的颗粒)。此外,我们没有观察到生物镀金的证据,因为营养水平与每个人的总体或漂移的微塑料之间没有显着关系。总体而言,这表明微塑料塑料是易转化的,但是可以发生兼容颗粒或生长稀释的排泄而不是生物累积和生物涂布。此外,组织中变化的形状和材料类型的组装,表明颗粒特征可以预测生物命运。我们的研究结果强调了需要进一步的工作,了解微塑性易位和排泄的机制以及对食物网和人类暴露中微型塑料积累的动态的影响。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第18期|12372-12382|共11页
  • 作者单位

    Department of Ecology and Evolutionary Biology University of Toronto Toronto Ontario M5S 3B2 Canada;

    Department of Ecology and Evolutionary Biology University of Toronto Toronto Ontario M5S 3B2 Canada;

    Environmental Monitoring & Reporting Branch Ontario Ministry of the Environment Conservation and Parks Toronto Ontario M9P 3V6 Canada School of the Environment University of Toronto Toronto Ontario M5S 3E8 Canada;

    Environmental Monitoring & Reporting Branch Ontario Ministry of the Environment Conservation and Parks Toronto Ontario M9P 3V6 Canada School of the Environment University of Toronto Toronto Ontario M5S 3E8 Canada;

    Environmental Monitoring & Reporting Branch Ontario Ministry of the Environment Conservation and Parks Toronto Ontario M9P 3V6 Canada;

    Department of Ecology and Evolutionary Biology University of Toronto Toronto Ontario M5S 3B2 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    plastic; translocation; bioaccumulation; growth dilution; biomagnification; freshwater fish;

    机译:塑料;易位;生物累积;生长稀释;生物磁化;淡水鱼;

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