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Experimental Exposure of Lumbricus terrestris to Microplastics

机译:Lumbricus Terrestris对微塑料的实验暴露

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摘要

The effects of microplastic exposure in aquatic organisms have been widely reported. Nonetheless, there is limited evidence of the effects of exposure in soil systems. Thus, the objective of this study was to evaluate the effects of microplastic exposure using as a bioindicator the speciesLumbricus terrestris, exposed to different concentrations of microplastic (2.5%; 5%, and 7% w/w). Avoidance bioassays were carried out for 48 h in soil with and without microplastic; the gastrointestinal tract-crop/gizzard, foregut, and midgut-was dissected and acetylcholinesterase (AChE) was used as a biomarker of neurotoxicity stress. In parallel, bioassays of microplastic ingestion were carried out, and after 48 h of initiating the ingestion assay, using a stereo and fluorescence microscope, the microplastic distribution was observed in the different earthworm segments. The results obtained in the avoidance assay indicated a lack of preference for either soil type; however, upon moving, the earthworms lost surface mucus, resulting in burns and lesions on their bodies, which were reflected in the increase in AChE enzyme levels, which was not directly related to microplastic ingestion, but rather likely acts as an external physical stress agent. The results of the ingestion bioassay showed that microplastic was present in all the earthworm segments, with a higher number of particles in the hindgut. TheLumbricus terrestrisdid not distinguish microplastics from soil particles, and given the high exposure concentrations, microplastics produced physical lesions on the mucus membranes of earthworms.Lumbricus terrestrisshowed to be a suitable bioindicator for testing the exposure to microplastic contamination in soil.
机译:众所周知,微塑性暴露在水生生物中的影响。尽管如此,存在有限的土壤系统曝光效果的证据。因此,本研究的目的是评估微塑性暴露的效果,用作生物吲哚氏物,暴露于不同浓度的微塑料(2.5%; 5%和7%w / w)。避免生物测定在具有和没有微塑料的土壤中进行48小时;胃肠道作物/八颗,前述和中肠 - 被解剖和乙酰胆碱酯酶(ACHE)用作神经毒性应激的生物标志物。同时,进行微塑性摄入的生物测定,并在使用立体和荧光显微镜开始摄取测定后48小时,在不同蚯蚓段中观察到微塑性分布。在避免测定中获得的结果表明对土壤类型缺乏偏好;然而,在移动时,蚯蚓丢失的表面粘液,导致它们的体上烧伤和病变,这反映在疼痛酶水平的增加中,这与微塑性摄入没有直接相关,而是可能作为外部物理应激剂。摄入生物测定的结果表明,在所有蚯蚓段中存在微塑料,在后肠中具有较高数量的颗粒。 Thelumbricus Terrestsdid没有区分从土壤颗粒的微塑料,并且鉴于高曝光浓度,微薄的浓度在蚯蚓的粘液膜上产生了物理病变.Lumbricus HerstrisoShowed是一种合适的生物indicator,用于测试土壤中的微塑性污染的暴露。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2020年第6期|308.1-308.10|共10页
  • 作者单位

    Univ Concepcion EULA Chile Ctr Fac Environm Sci Dept Environm Engn Box 160-C Concepcion 4070386 Chile;

    Univ Concepcion EULA Chile Ctr Fac Environm Sci Dept Environm Engn Box 160-C Concepcion 4070386 Chile;

    Univ Concepcion EULA Chile Ctr Fac Environm Sci Dept Environm Engn Box 160-C Concepcion 4070386 Chile;

    Univ Concepcion EULA Chile Ctr Fac Environm Sci Dept Aquat Syst Box 160-C Concepcion 4070386 Chile;

    Univ Concepcion EULA Chile Ctr Fac Environm Sci Dept Aquat Syst Box 160-C Concepcion 4070386 Chile;

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

    Microplastic; Terrestrial ecosystem; Lumbricus terrestris; Acetylcholinesterase (AChE);

    机译:微塑料;陆地生态系统;Lumbricus Terrestris;乙酰胆碱酯酶(疼痛);

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