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抗生素耐药基因在污水处理系统季节性变化过程中的生物标志物。

Biomarkers of antibiotic resistance genes during seasonal changes in wastewater treatment systems.

机构信息

Department of Environmental Engineering, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.

Department of Environmental Engineering, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Environ Pollut. 2018 Mar;234:79-87. doi: 10.1016/j.envpol.2017.11.048. Epub 2017 Nov 21.

Abstract

To evaluate the seasonal distribution of antibiotic resistance genes (ARGs) and explore the reason for their patterns in different seasons and different systems, two wastewater treatment systems were selected and analyzed using high-throughput qPCR. Linear discriminant analysis (LDA) effect size (LEfSe) was used to discover the differential ARGs (biomarkers) and estimate the biomarkers' effect size. We found that the total absolute abundances of ARGs in inflows and excess sludge samples had no obvious seasonal fluctuations, while those in winter outflow samples decreased in comparison with the inflow samples. Eleven differentially abundant ARGs (biomarker genes, BmGs) (aadA5-02, aac-6-II, cmlA1-01, cmlA1-02, blaOXA10-02, aadA-02, tetX, aadA1, ereA, qacEΔ1-01, and blaTEM) in summer samples and 10 BmGs (tet-32, tetA-02, aacC2, vanC-03, aac-6-I1, tetE, ermB, mefA, tnpA - 07, and sul2) in winter samples were validated. According to 16S rRNA gene sequencing, the relative abundance of bacteria at the phylum level exhibited significant seasonal changes in outflow water (OW), and biomarker bacteria (BmB) were discovered at the family (or genus) level. Synechococcus and vadinCA02 are BmB in summer, and Trichococcus, Lactococcus, Pelosinus, Janthinobacterium, Nitrosomonadaceae and Sterolibacterium are BmB in winter. In addition, BmB have good correlations with BmGs in the same season, which indicates that bacterial community changes drive different distributions of ARGs during seasonal changes and that LEfSe is an acute and effective method for finding significantly different ARGs and bacteria between two or more classes. In conclusion, this study demonstrated the seasonal changes of BmGs and BmB at two wastewater treatment systems.

摘要

为了评估抗生素耐药基因(ARGs)的季节性分布,并探讨其在不同季节和不同系统中分布模式的原因,我们选择了两个废水处理系统,使用高通量 qPCR 对其进行了分析。线性判别分析(LDA)效应大小(LEfSe)用于发现差异丰度的 ARGs(生物标志物),并估计生物标志物的效应大小。我们发现,进水和剩余污泥样品中 ARGs 的总绝对丰度没有明显的季节性波动,而冬季出水样品中的 ARGs 丰度与进水样品相比有所下降。在夏季样品中发现了 11 个差异丰度的 ARGs(生物标志物基因,BmGs)(aadA5-02、aac-6-II、cmlA1-01、cmlA1-02、blaOXA10-02、aadA-02、tetX、aadA1、ereA、qacEΔ1-01 和 blaTEM)和 10 个 BmGs(tet-32、tetA-02、aacC2、vanC-03、aac-6-I1、tetE、ermB、mefA、tnpA-07 和 sul2)在冬季样品中得到了验证。根据 16S rRNA 基因测序结果,在出水(OW)中,细菌在门水平上的相对丰度表现出显著的季节性变化,并且在科(或属)水平上发现了生物标志物细菌(BmB)。夏季的 BmB 是聚球藻属和 vadinCA02,冬季的 BmB 是厚壁菌门、乳球菌属、Pelosinus、绛红菌属、亚硝化单胞菌科和甾醇杆菌属。此外,BmB 与同一季节的 BmGs 具有良好的相关性,这表明细菌群落的变化导致了 ARGs 在季节性变化过程中的不同分布,并且 LEfSe 是一种发现两个或更多类群之间显著不同的 ARGs 和细菌的急性有效的方法。总之,本研究在两个废水处理系统中证明了 BmGs 和 BmB 的季节性变化。

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