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青霉素发酵废渣风险:土壤排放后抗生素耐药基因增加。

Risk of penicillin fermentation dreg: Increase of antibiotic resistance genes after soil discharge.

机构信息

College of Chemical Engineering, Northeast Electric Power University, Jilin, 132012, China.

School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150090, China.

出版信息

Environ Pollut. 2020 Apr;259:113956. doi: 10.1016/j.envpol.2020.113956. Epub 2020 Jan 10.

Abstract

Penicillin fermentation dreg (PFD) is a solid waste discharged by pharmaceutical enterprises in the fermentation production process. Due to the residual antibiotic of PFD, the risk of antibiotic resistance bacteria (ARB) generation should be considered in the disposal process. High-throughput quantitative PCR (HT-qPCR) and 16S rRNA gene sequencing were performed to investigate the effect of PFD on the dynamics of antibiotic resistance genes (ARGs) and bacterial community during a lab-scale soil experiment. After the application of PFD, the bacterial number and diversity showed an obvious decrease in the initial days. The abundances of Streptomyces and Bacillus, which are the most widespread predicted source phyla of ARGs, increased remarkably from 4.42% to 2.59%-22.97% and 21.35%. The increase of ARGs was observed during the PFD application and the ARGs carried by PFD itself contributed to the initiation of soil ARGs. The results of redundancy analysis (RDA) show that the shift in bacterial community induced by variation of penicillin content is the primary driver shaping ARGs compositions.

摘要

青霉素发酵废渣(PFD)是制药企业在发酵生产过程中排放的一种固体废弃物。由于 PFD 中残留的抗生素,在处理过程中应考虑产生抗生素耐药菌(ARB)的风险。采用高通量实时定量 PCR(HT-qPCR)和 16S rRNA 基因测序技术,研究了实验室规模土壤实验中 PFD 对抗生素耐药基因(ARGs)和细菌群落动态的影响。PFD 施用后,细菌数量和多样性在最初几天明显减少。Streptomyces 和 Bacillus 的丰度显著增加,这两个是最广泛预测的 ARGs 来源门,从 4.42%增加到 2.59%-22.97%和 21.35%。在 PFD 施用期间观察到 ARGs 的增加,并且 PFD 本身携带的 ARGs 有助于土壤 ARGs 的起始。冗余分析(RDA)的结果表明,青霉素含量变化引起的细菌群落的转移是塑造 ARGs 组成的主要驱动因素。

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