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聚乳酸微塑料上生物膜的特性及其对水稻幼苗生长的抑制作用:石油基微塑料的对比研究。

Characteristics of biofilms on polylactic acid microplastics and their inhibitory effects on the growth of rice seedlings: A comparative study of petroleum-based microplastics.

机构信息

School of Environmental Science and Safety Engineering, Tianjin University of Technology, Tianjin 300384, China.

Tianjin Institute of Environment and Operational Medicine, Tianjin 300050, China.

出版信息

J Hazard Mater. 2024 Oct 5;478:135469. doi: 10.1016/j.jhazmat.2024.135469. Epub 2024 Aug 9.

Abstract

Increasing evidence highlights the negative effects of microplastics (MPs) on crops and bio-based plastics offer an alternative to conventional plastics. However, there is limited knowledge on the impacts and mechanisms of bio-based MPs on crop physiology. In this study, bio-based polylactic acid (PLA) and petroleum-based MPs [polyamide (PA) and polypropylene (PP)] were added to hydroponic cultures planted with rice (Oryza sativa L.) seedlings to assess their toxicity. Compared to PA and PP MPs, PLA MPs experienced greater aging after 28 days of exposure, and their surfaces were loaded with more rod-shaped microorganisms with potential plastic degradation ability, such as Proteobacteria and Bacteroidota, which competed with rice seedlings for carbon and nitrogen sources for self-multiplication, thus altering the carbon fixation and nitrogen cycling processes during rice seedling growth. Down-regulation of amino acid and lipid metabolisms in the PLA treatment inhibited the normal synthesis of chlorophyll in rice seedling leaves. Consequently, decreases in the biomass and height of rice seedling roots and shoots were observed in the PLA MP treatment. This study provides evidence that bio-based MPs may have a more severe impact on crop growth than petroleum-based MPs.

摘要

越来越多的证据强调了微塑料 (MPs) 对农作物的负面影响,而生物基塑料则为传统塑料提供了替代品。然而,对于生物基 MPs 对作物生理学的影响和机制知之甚少。在这项研究中,将生物基聚乳酸 (PLA) 和石油基 MPs [聚酰胺 (PA) 和聚丙烯 (PP)] 添加到水培培养的水稻 (Oryza sativa L.) 幼苗中,以评估它们的毒性。与 PA 和 PP MPs 相比,PLA MPs 在暴露 28 天后经历了更大的老化,其表面负载了更多具有潜在塑料降解能力的杆状微生物,如变形菌门和拟杆菌门,这些微生物与水稻幼苗争夺碳和氮源进行自我繁殖,从而改变了水稻幼苗生长过程中的碳固定和氮循环过程。PLA 处理中氨基酸和脂质代谢的下调抑制了水稻幼苗叶片中叶绿素的正常合成。因此,在 PLA MPs 处理中观察到水稻幼苗根和茎的生物量和高度下降。本研究提供的证据表明,与石油基 MPs 相比,生物基 MPs 可能对作物生长产生更严重的影响。

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