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银离子和银纳米颗粒均促进质粒介导的抗生素耐药基因的水平转移。

Both silver ions and silver nanoparticles facilitate the horizontal transfer of plasmid-mediated antibiotic resistance genes.

机构信息

Advanced Water Management Centre (AWMC), The University of Queensland, St Lucia, Brisbane, QLD, 4072, Australia.

Advanced Water Management Centre (AWMC), The University of Queensland, St Lucia, Brisbane, QLD, 4072, Australia.

出版信息

Water Res. 2020 Feb 1;169:115229. doi: 10.1016/j.watres.2019.115229. Epub 2019 Oct 25.

DOI:10.1016/j.watres.2019.115229
PMID:31783256
Abstract

Antibiotic resistance in bacteria is a growing threat to global human health. Horizontal gene transfer (HGT) of antibiotic resistance genes (ARGs) is recognized as the primary contributor to antibiotic resistance dissemination. Silver nanoparticles (AgNPs) are widely used in personal care products as antimicrobial agents. While heavy metals are known to induce antibiotic resistance in bacteria, it is not known whether AgNPs in the environment can stimulate the HGT of ARGs. Here, we report that both AgNPs and ionic silver Ag, at environmentally relevant and sub-lethal concentrations, facilitate the conjugative transfer of plasmid-borne ARGs across bacterial genera (from the donor Escherichia coli K-12 LE392 to the recipient Pseudomonas putida KT2440). The underlying mechanisms of the Ag- or AgNPs-promoted HGT were unveiled by detecting oxidative stress and cell membrane permeability, combined with genome-wide RNA sequencing and proteomic analyses. It was found that both Ag and AgNPs exposure induced various bacterial responses that included reactive oxygen species (ROS) generation, membrane damage and the SOS response. This study exposes the potential ecological risks of environmental levels of AgNPs and Ag for promoting the spread of ARGs and highlights concerns regarding the management of nanoparticles and heavy metals.

摘要

细菌中的抗生素耐药性是对全球人类健康的日益严重的威胁。水平基因转移(HGT)抗生素耐药基因(ARGs)被认为是抗生素耐药性传播的主要原因。纳米银颗粒(AgNPs)作为抗菌剂广泛应用于个人护理产品。虽然重金属已被证实会导致细菌产生抗生素耐药性,但目前尚不清楚环境中的 AgNPs 是否会刺激 ARGs 的 HGT。在这里,我们报告 AgNPs 和离子银 Ag 在环境相关和亚致死浓度下,促进了质粒携带的 ARGs 在细菌属之间的共轭转移(从供体大肠杆菌 K-12 LE392 到受体假单胞菌 KT2440)。通过检测氧化应激和细胞膜通透性,并结合全基因组 RNA 测序和蛋白质组学分析,揭示了 Ag 或 AgNPs 促进 HGT 的潜在机制。研究发现,Ag 和 AgNPs 的暴露都会诱导细菌产生各种反应,包括活性氧(ROS)的产生、膜损伤和 SOS 反应。本研究揭示了环境水平的 AgNPs 和 Ag 促进 ARGs 传播的潜在生态风险,并强调了对纳米颗粒和重金属管理的关注。

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