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高频采样揭示亚热带城市水库中细菌分类学动态与抗生素抗性功能的解耦

Decoupling the Dynamics of Bacterial Taxonomy and Antibiotic Resistance Function in a Subtropical Urban Reservoir as Revealed by High-Frequency Sampling.

作者信息

Fang Peiju, Peng Feng, Gao Xiaofei, Xiao Peng, Yang Jun

机构信息

Aquatic Ecohealth Group, Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2019 Jul 2;10:1448. doi: 10.3389/fmicb.2019.01448. eCollection 2019.

Abstract

Aquatic environments serve as important reservoirs of antibiotic resistance genes (ARGs), but the information on the high-resolution temporal pattern of ARGs in waterbodies is extremely limited. In this study, the weekly dynamics of ARGs and their relationships with microbial taxonomic communities and environmental variables were analyzed in a subtropical urban reservoir over the period of 1 year using high-throughput approaches. In total, 197 ARGs and 10 mobile genetic elements (MGEs) were detected. The results showed that the bacterial community had a seasonal pattern, while ARGs composition did not exhibit seasonality, thereby indicating the asynchrony or decoupling of temporal patterns of microbial taxonomy and function. More importantly, bacterial abundance and community diversity were more strongly correlated with 17 measured environmental variables than ARGs (36 significant correlations for OTUs, 11 for ARGs). However, stochastic processes appeared to have a minor role in the structuring of the ARG profiles, but a more important role in the structuring of bacterial taxonomic communities. Furthermore, we found that precipitation and turbidity were significantly correlated with the richness and diversity of ARGs, suggesting that multiple environmental factors influence the composition and dynamics of ARGs in complex ways. MGEs were abundant and showed significant positive correlations with ARGs, indicating a plausible influence of MGEs on the variation of ARGs. This is the first study which provides an overview of high-resolution dynamics of ARGs in a subtropical waterbody. Our results improve the understanding of microbial processes and mechanisms of ARGs at fine temporal scale, and offer empirical data of use in the monitoring, assessment and management of the urban water environments.

摘要

水生环境是抗生素抗性基因(ARGs)的重要储存库,但关于水体中ARGs高分辨率时间模式的信息极为有限。在本研究中,利用高通量方法分析了亚热带城市水库中ARGs的每周动态及其与微生物分类群落和环境变量的关系,研究为期1年。总共检测到197种ARGs和10种移动遗传元件(MGEs)。结果表明,细菌群落具有季节性模式,而ARGs组成未表现出季节性,这表明微生物分类和功能的时间模式存在异步或解耦。更重要的是,细菌丰度和群落多样性与17个测量的环境变量的相关性比与ARGs的相关性更强(OTUs有36个显著相关性,ARGs有11个)。然而,随机过程似乎在ARG谱的构建中起次要作用,但在细菌分类群落的构建中起更重要的作用。此外,我们发现降水和浊度与ARGs的丰富度和多样性显著相关,这表明多种环境因素以复杂的方式影响ARGs的组成和动态。MGEs丰富,且与ARGs呈显著正相关,表明MGEs对ARGs的变异有合理影响。这是第一项概述亚热带水体中ARGs高分辨率动态的研究。我们的结果增进了对精细时间尺度上ARGs微生物过程和机制的理解,并为城市水环境的监测、评估和管理提供了实证数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/634c/6614491/ea45cc3dce09/fmicb-10-01448-g001.jpg

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