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载药聚乙烯微塑料和环丙沙星共同作用对土壤中抗生素降解效率及微生物群落结构的影响。

Effects of co-loading of polyethylene microplastics and ciprofloxacin on the antibiotic degradation efficiency and microbial community structure in soil.

机构信息

School of Environmental Science and Engineering, Tianjin University, Tianjin 300354, PR China.

School of Environmental Science and Engineering, Tianjin University, Tianjin 300354, PR China.

出版信息

Sci Total Environ. 2020 Nov 1;741:140463. doi: 10.1016/j.scitotenv.2020.140463. Epub 2020 Jun 23.

DOI:10.1016/j.scitotenv.2020.140463
PMID:32886986
Abstract

Microplastics (MPs) have become a global environmental concern while soil plastic pollution has been largely overlooked. In view of the severe antibiotic contamination in arable soils owing to land application of sewage sludge and animal manure, the invasion of MPs along with antibiotics may pose an unpredictable threat to soil microbial communities and ecological health. In this work, polyethylene MPs and ciprofloxacin (CIP) were applied to a soil microcosm to investigate the CIP degradation behavior and their combined effects on soil microbial communities. Compared with that of the individual amendment of CIP, the co-amendment of CIP and MPs reduced the CIP degradation efficiency during the 35 d cultivation period. In addition, the high-throughput sequencing results illustrated that the combined loading of MPs and CIP in soil significantly decreased the microbial diversity compared with that of individual contamination. As for the community structure, the microbial compositions at the phylum level were consistent among all treatments, and the most dominant phyla were Proteobacteria, Actinobacteria, and Chloroflexi. At the genus level, only one genus, namely Arthrobacter, was remarkably changed in the CIP-amended soil compared with that in the blank control, but four genera were significantly altered in the MPs-CIP co-amended soil. Serratia and Achromobacter were abundant in the combined polluted soil, which might have been involved in accelerated depletion of soil total nitrogen based on redundancy analysis. These findings may contribute to the understanding of bacterial responses to the combined pollution of MPs and antibiotics in soil ecosystems.

摘要

微塑料(MPs)已成为全球关注的环境问题,而土壤塑料污染在很大程度上被忽视。鉴于污水污泥和动物粪便的土地应用导致耕地土壤中抗生素的严重污染,MPs 与抗生素的入侵可能对土壤微生物群落和生态健康构成不可预测的威胁。在这项工作中,将聚乙烯 MPs 和环丙沙星(CIP)应用于土壤微宇宙中,以研究 CIP 的降解行为及其对土壤微生物群落的联合作用。与单独添加 CIP 相比,在 35 天的培养期间,CIP 和 MPs 的共添加降低了 CIP 的降解效率。此外,高通量测序结果表明,与单独污染相比,MPs 和 CIP 在土壤中的联合加载显著降低了微生物多样性。就群落结构而言,所有处理中的门水平的微生物组成是一致的,最主要的门是变形菌门、放线菌门和绿弯菌门。在属水平上,与空白对照相比,仅在添加 CIP 的土壤中,一个属,即节杆菌属,发生了明显变化,而在 MPs-CIP 共添加土壤中,有四个属发生了显著变化。在联合污染土壤中,沙雷氏菌属和无色杆菌属丰富,根据冗余分析,它们可能参与了土壤总氮的加速消耗。这些发现可能有助于理解细菌对土壤生态系统中 MPs 和抗生素联合污染的反应。

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