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首页> 外文期刊>Chemosphere >Microplastics accumulate on pores in seed capsule and delay germination and root growth of the terrestrial vascular plant Lepidium sativum
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Microplastics accumulate on pores in seed capsule and delay germination and root growth of the terrestrial vascular plant Lepidium sativum

机译:微塑料积聚在种子胶囊中的毛孔和陆地血管植物羊皮梨座的延迟萌发和根系生长

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摘要

The impacts of nano- and microplastics (100 nm and 5 mm, respectively) on terrestrial systems is to the present largely unexplored. Plastic particles are likely to accumulate in these systems primarily by the application of sewage sludge. The aim of the current study was to investigate the effects of three sizes of plastic particles (50, 500, and 4800 nm) on a terrestrial plant (cress; Lepidium sativum), using a standardized 72 h bioassay. Cress seeds were exposed to five different concentrations of plastics, ranging from 10(3) to 10(7) particles mL(-1). Germination rate was significantly reduced after 8 h of exposure for all three sizes of plastics, with increased adverse effect with increasing plastic sizes. Seeds exposed to 4800 nm microplastics showed a germination rate decline from 78% in control to 17% in the highest exposure. No difference in germination rate occurred after 24 h of exposure, regardless of the size of the plastic used. Significant differences in root growth were observed after 24 h, but not after 48 or 72 h of exposure. Impacts on germination are likely due to physical blockage of the pores in the seed capsule by microplastics as shown by confocal microscopy of fluorescent microplastics. In later stages, the microplastics particularly accumulated on the root hairs. This is the first detailed study on the effect of nano- and microplastics on a vascular, terrestrial plant, and our results indicate short-term and transient adverse effects. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:纳米和微塑料(<100nm和<5mm)对陆地系统的影响是目前大部分未探索的。塑料颗粒可能主要通过污水污泥的应用在这些系统中积累。目前研究的目的是使用标准化的72小时生物测定来研究三种尺寸的塑料颗粒(50,500和4800nm)的塑料颗粒(50,500和4800nm)的影响。水芹籽暴露于五种不同浓度的塑料,范围为10(3)至10(7)颗颗粒ml(-1)。所有三种尺寸的塑料暴露后8小时后发芽率明显减少,随着塑料尺寸的增加而增加的不良反应。暴露于4800nm微塑料的种子显示出萌发率从78%的萌发率下降到最高曝光中的17%。不管使用的塑料的尺寸如何,24小时后发生萌发率的差异。在24小时后观察到根生长的显着差异,但在48或72小时后不会出现。由于荧光微塑料的共聚焦显微镜所示,对种子胶囊中孔的物理堵塞的影响可能是由于种子胶囊中的孔的物理堵塞。在以后的阶段,微塑料特别积聚在根毛上。这是第一次详细研究纳米和微塑料对血管,陆生植物的影响,以及我们的结果表明短期和短暂的不良反应。 (c)2019年作者。 elsevier有限公司出版

著录项

  • 来源
    《Chemosphere》 |2019年第7期|774-781|共8页
  • 作者单位

    Leiden Univ Leiden Univ Coll POB 13228 NL-2501 EE The Hague Netherlands|Leiden Univ Inst Environm Sci POB 9518 NL-2300 RA Leiden Netherlands;

    Leiden Univ Leiden Univ Coll POB 13228 NL-2501 EE The Hague Netherlands;

    Leiden Univ Inst Environm Sci POB 9518 NL-2300 RA Leiden Netherlands|Woods Hole Oceanog Inst Dept Biol Woods Hole MA 02543 USA;

    Leiden Univ Leiden Univ Coll POB 13228 NL-2501 EE The Hague Netherlands|Leiden Univ Inst Environm Sci POB 9518 NL-2300 RA Leiden Netherlands;

    Leiden Univ Inst Environm Sci POB 9518 NL-2300 RA Leiden Netherlands;

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

    Nano- and micron-sized plastics; Terrestrial systems; Vascular plant; Cress (Lepidium sativum); Sublethal impacts;

    机译:纳米和微米尺寸的塑料;陆地系统;血管植物;水芹(Lepidium sativum);亚致致命的影响;

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