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首页> 外文期刊>Science of the total environment >The thermal regime modifies the response of aquatic keystone species Daphnia to microplastics: Evidence from population fitness, accumulation, histopathological analysis and candidate gene expression
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The thermal regime modifies the response of aquatic keystone species Daphnia to microplastics: Evidence from population fitness, accumulation, histopathological analysis and candidate gene expression

机译:热量制度改变水生骨石物种Daphnia对微薄的响应:来自人口健康,积累,组织病理学分析和候选基因表达的证据

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摘要

The water bodies are greatly influenced by chemical contamination and global increasing temperature. As an emerging pollutant, microplastics are widely distributed in the freshwater environment, raising concerns regarding their potential toxicity to organisms. Especially for zooplankton filter feeders, many of microplastics are in similar size as their food. Individually, both microplastics and temperature have profound effects on zooplankton populations and their function in ecosystems. However, the strength and direction of their interactive effects are still not clear. Here, we performed a comprehensive biotoxicity assessment providing empirical evidence that the temperature played a key role in shaping the sensitivity of the zooplankter, Daphnia magna, against microplastic toxicity. We found that exposure to microplastics generally caused negative effects on Daphnia individual fitness, such as increased lethality, declined fecundity and reduced population growth rate. This microplastic toxicity was more prominent at 30 °C than at 20 °C, and was rather minor at 15 °C. Moreover, the warming accelerated the ingestion of microplastics, and triggered abnormal ultrastructure of intestinal epithelial cells. In addition, the expression profiling of candidate genes revealed oxidative damage, fecundity impairment and energy retardation by microplastics were amplified with increasing temperature, which may contribute to the enhancement of microplastic toxicity under warming. Given that high temperature fluctuations are becoming more common and difficult to predict, the interactive effects of microplastics and climate warming on Daphnia population dynamics and biomass production may become increasingly aggravated in nature. Collectively, extrapolation for environmental risk assessment studies conducted under different temperature contexts may broaden our knowledge microplastic toxicity on aquatic organism fitness.
机译:水体受到化学污染和全球升高的影响。作为一种新兴污染物,微塑料塑料广泛分布在淡水环境中,提高了对生物体潜在毒性的担忧。特别是对于Zooplankton过滤器进纸器,许多微塑料均为与其食物相似。单独地,微塑料和温度都对浮游动物群体的影响及其在生态系统中的功能产生了深远的影响。然而,他们的交互式效果的力量和方向仍然尚不清楚。在这里,我们进行了全面的生物毒性评估,提供了经验证据表明温度在塑造浮游生物Daphnia Magna的敏感度方面对微塑性毒性进行了关键作用。我们发现暴露于微塑料塑料,通常对Daphnia个人健身产生负面影响,例如致死性增加,繁殖,繁殖力降低和人口增长率降低。该微塑性毒性在30℃下比20℃更突出,并且在15℃下较小。此外,变暖加速了对微薄的摄入,并引发了肠上皮细胞的异常超微结构。此外,候选基因的表达分析显示出氧化损伤,繁殖力损伤和微薄的能量延迟随着温度的增加而扩增,这可能有助于提高变暖的微塑性毒性。鉴于高温波动变得越来越普遍且难以预测,微薄和气候变暖对Daphnia种群动态和生物质生产的互动影响可能在自然中越来越加重。共同地,在不同温度背景下进行的环境风险评估研究的外推可能会扩大我们对水生物体健身的知识微塑性毒性。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|147154.1-147154.12|共12页
  • 作者单位

    Jiangsu Key Laboratory for Biodiversity and Biotechnology School of Biological Sciences Nanjing Normal University Nanjing 210023 China;

    School of Marine Science and Engineering Nanjing Normal University Nanjing 210023 China;

    Jiangsu Key Laboratory for Biodiversity and Biotechnology School of Biological Sciences Nanjing Normal University Nanjing 210023 China;

    Jiangsu Key Laboratory for Biodiversity and Biotechnology School of Biological Sciences Nanjing Normal University Nanjing 210023 China;

    Jiangsu Key Laboratory for Biodiversity and Biotechnology School of Biological Sciences Nanjing Normal University Nanjing 210023 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plastic pollution; Zooplankton; Climate warming; Population fitness; Molecular toxicology;

    机译:塑料污染;浮游动物;气候变暖;人口健康;分子毒理学;

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