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首页> 外文期刊>The Science of the Total Environment >Polyethylene microplastics adhere to Lemna minor (L.), yet have no effects on plant growth or feeding by Gammarus duebeni (Lillj.)
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Polyethylene microplastics adhere to Lemna minor (L.), yet have no effects on plant growth or feeding by Gammarus duebeni (Lillj.)

机译:聚乙烯微塑料附着在次要Lemna(L.)上,但对植物生长或Gammarus Duebeni(Lillj。)的取食没有影响。

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摘要

Microplastics (1-1000 tim) are ubiquitous in the marine, freshwater and terrestrial environments. These microsized plastics arc considered freshwater pollutants of emerging concern, although the impacts on organisms and ecosystems arc nut yet clear. In particular, effects of microplastics on freshwater aquatic plank and the fate of microplastics in the freshwater trophic chain remain largely unexplored. Here we demonstrate that 10-45 pm polyethylene (PE) microplastics can strongly adsorb to all surfaces of the duckweed species Lemno minor. Despite adsorbance of up to 7 PE microplastics per mm2, seven day exposure experiments showed that photosynthetic efficiency and plant growth are not affected by microplastics. Rather, dense surface coverage suggests L. minor as a potential vector for the trophic transfer of microplastics. Here we show that the freshwater amphipod Gammarus duebeni can ingest 10-45 pm PE microplastics by feeding on contaminated L. minor. In this study, ingestion of microplastics had no apparent impact on amphipod mortality or mobility after 24 or 43 h exposure. Yet, the feeding study showed that the fate of microplastics in the environment may be complex, involving both plant adsorbance and trophic transfer. (C) 2019 Elsevier B.V. All rights reserved.
机译:在海洋,淡水和陆地环境中普遍使用微塑料(1-1000 tim)。尽管对微生物和生态系统的影响还不清楚,但这些微尺寸塑料被认为是令人关注的淡水污染物。尤其是,微塑料对淡水水生木板的影响以及微塑料在淡水营养链中的命运仍未得到充分研究。在这里,我们证明10-45 pm聚乙烯(PE)微塑料可以强烈吸附到浮萍物种Lemno minor的所有表面。尽管每平方毫米最多可吸附7种PE微塑料,但七天的暴露实验表明,光合效率和植物生长不受微塑料的影响。而是,密集的表面覆盖表明较小的利什曼原虫是微塑料营养转移的潜在载体。在这里,我们显示淡水两栖动物Gammarus Duebeni可以通过喂食受污染的未成年人L. L.摄入10-45 pm PE微塑料。在这项研究中,摄入微塑料对暴露于24或43小时后的两栖动物死亡率或活动性没有明显影响。然而,饲喂研究表明,环境中微塑料的命运可能很复杂,涉及植物的吸收和营养传递。 (C)2019 Elsevier B.V.保留所有权利。

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