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Microplastics in the Terrestrial Ecosystem: Implications for Lumbricus terrestris (Oligochaeta, Lumbricidae)

机译:陆地生态系统中的微塑料:对Lu虫的影响(Oligochaeta,Lu虫科)

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摘要

Plastic debris is widespread in the environment, but information on the effects of microplastics on terrestrial fauna is completely lacking. Here, we studied the survival and fitness of the earthworm Lumbricus terrestris (Oligochaeta, Lumbricidae) exposed to microplastics (Polyethylene, <150 μm) in litter at concentrations of 7, 28, 45, and 60% dry weight, percentages that, after bioturbation, translate to 0.2 to 1.2% in bulk soil. Mortality after 60 days was higher at 28, 45, and 60% of microplastics in the litter than at 7% w/w and in the control (0%). Growth rate was significantly reduced at 28, 45, and 60% w/w microplastics, compared to the 7% and control treatments. Due to the digestion of ingested organic matter, microplastic was concentrated in cast, especially at the lowest dose (i.e., 7% in litter) because that dose had the highest proportion of digestible organic matter. Whereas 50 percent of the microplastics had a size of <50 μm in the original litter, 90 percent of the microplastics in the casts was <50 μm in all treatments, which suggests size-selective egestion by the earthworms. These concentration-transport and size-selection mechanisms may have important implications for rate and risk of microplastic in terrestrial ecosystems.
机译:塑料碎片广泛存在于环境中,但完全缺乏有关微塑料对陆地动物区系影响的信息。在这里,我们研究了Lu在7%,28%,45%和60%干重的浓度下暴露于微塑料(聚乙烯,<150μm)中的Lu藜(O蝶,Lu科)的存活和适应性。 ,换算成散装土壤的0.2到1.2%。 60天后,垫料中分别有28%,45%和60%的微塑料死亡率高于7%w / w和对照组(0%)。与7%和对照处理相比,在28、45和60%w / w的微塑料中,生长速率显着降低。由于消化了所摄入的有机物,微塑料集中在铸模中,特别是在最低剂量下(即在垃圾中占7%),因为该剂量的可消化有机物比例最高。在所有处理中,有50%的微塑料在原始垃圾中的尺寸小于50μm,而在铸模中,有90%的微塑料在所有处理中的尺寸均小于50μm,这表明size有选择性地进行节食。这些浓度转移和大小选择机制可能对陆生生态系统中微塑性的发生率和风险具有重要意义。

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  • 来源
    《Environmental Science & Technology》 |2016年第5期|2685-2691|共7页
  • 作者单位

    Agroecologia, El Colegio de la Frontcra Sur, Unidad Campeche, Av Poligono s, Ciudad Industrial, Lerma, Campeche Mexico,Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

    Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

    Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

    Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

    Soil Quality Department, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

    Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

    Aquatic Ecology and Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47, 6700 AA Wageningen, The Netherlands,IMARES - Institute for Marine Resources & Ecosystem Studies, Wageningen UR, P.O. Box 68, 1970 AB IJmuiden, The Netherlands;

    Aquatic Ecology and Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47, 6700 AA Wageningen, The Netherlands,IMARES - Institute for Marine Resources & Ecosystem Studies, Wageningen UR, P.O. Box 68, 1970 AB IJmuiden, The Netherlands;

    Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4, 6708PB Wageningen, The Netherlands;

  • 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);
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