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Effects of nanoplastics and microplastics on the growth of sediment-rooted macrophytes

机译:纳米塑料和微塑料对有根沉积物的大型植物生长的影响

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Plastic debris of all sizes has been detected in marine, terrestrial and freshwater habitats. Effects of plastic debris on macrophytes have hardly been studied, despite their importance in aquatic ecosystems. We provide the first experimental study exploring nano- and microplastic effects on the growth of sediment-rooted macrophytes. Myriophyllum spicatum and Elodea sp. were exposed to sediments amended with six doses of polystyrene (PS) nanoplastic (50-190 nm, up to 3% sediment dry weight) and PS microplastic (20-500 mu m, up to 10% dry weight) under laboratory conditions. Both macrophyte species were tested for changes in root and shoot dry weight (DW), relative growth rate (RGR), shoot to root ratio (S:R), main shoot length and side shoot length. Microplastics did not produce consistent dose-effect relationships on the endpoints tested, except that main shoot length was reduced for M. spiculum with increasing microplastic concentration. Nanoplastic significantly reduced S:R for both macrophytes as a result of increased root biomass compared to shoot biomass. Nanoplastic also caused a decrease in M. spicatum main shoot length; however, shoot biomass was not affected. Elodea sp. side shoot length, root and shoot biomass and RGR were positively correlated to the nanoplastic concentration. All effects occurred at higher than environmentally realistic concentrations, suggesting no immediate implications for ecological risks. Our study did not aim for the elucidation of the exact mechanistic processes that cause the effects, however, particle size seems to play an important factor.Capsule: Nano- and microplastics affect growth of sediment-rooted macrophytes. (C) 2018 Elsevier B.V. All rights reserved.
机译:在海洋,陆地和淡水生境中都发现了各种大小的塑料碎片。尽管塑料碎片在水生生态系统中具有重要意义,但几乎没有研究过塑料碎片对大型植物的影响。我们提供了第一个实验研究,探讨了纳米和微塑性作用对沉积物根系大型植物生长的影响。桃金娘和Elodea sp。在实验室条件下,将其暴露于用六种剂量的聚苯乙烯(PS)纳米塑料(50-190 nm,最大干重为3%)和PS微塑料(20-500μm,最大干重为10%)修正的沉积物中。测试了两种大型植物的根和茎干重(DW),相对生长率(RGR),茎与根的比率(S:R),主茎长度和侧枝长度的变化。微塑料未在所测试的终点上产生一致的剂量效应关系,只是随着微塑料浓度的增加,针状支原体的主芽长度减少了。与根生物量相比,由于根生物量增加,纳米塑料显着降低了两种大型植物的S:R。纳米塑料还引起了穗状分枝杆菌主芽长度的减少。但是,芽生物量不受影响。伊乐藻侧枝长,根和枝生物量以及RGR与纳米塑料浓度呈正相关。所有影响均发生在高于环境实际浓度的水平,表明对生态风险没有直接影响。我们的研究并非旨在阐明引起这种影响的确切机理,但是,粒径似乎起着重要的作用。胶囊:纳米塑料和微塑料会影响根深蒂固植物的生长。 (C)2018 Elsevier B.V.保留所有权利。

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