Qi Qin, Ghaly Timothy M, Penesyan Anahit, Rajabal Vaheesan, Stacey Jeremy Ac, Tetu Sasha G, Gillings Michael R
School of Natural Sciences, Macquarie University, 14 Eastern Road, Sydney, NSW 2109, Australia.
ARC Centre of Excellence in Synthetic Biology, Macquarie University, Sydney, NSW 2109, Australia.
Environ Sci Technol. 2023 Mar 28;57(12):4870-4879. doi: 10.1021/acs.est.2c09739. Epub 2023 Mar 13.
Horizontal gene transfer (HGT) is a key driver of bacterial evolution via transmission of genetic materials across taxa. Class 1 integrons are genetic elements that correlate strongly with anthropogenic pollution and contribute to the spread of antimicrobial resistance (AMR) genes via HGT. Despite their significance to human health, there is a shortage of robust, culture-free surveillance technologies for identifying uncultivated environmental taxa that harbor class 1 integrons. We developed a modified version of epicPCR (emulsion, paired isolation, and concatenation polymerase chain reaction (PCR)) that links class 1 integrons amplified from single bacterial cells to taxonomic markers from the same cells in emulsified aqueous droplets. Using this single-cell genomic approach and Nanopore sequencing, we successfully assigned class 1 integron gene cassette arrays containing mostly AMR genes to their hosts in coastal water samples that were affected by pollution. Our work presents the first application of epicPCR for targeting variable, multigene loci of interest. We also identified the genus as novel hosts of class 1 integrons. These findings establish epicPCR as a powerful tool for linking taxa to class 1 integrons in environmental bacterial communities and offer the potential to direct mitigation efforts toward hotspots of class 1 integron-mediated dissemination of AMR.
水平基因转移(HGT)是细菌通过跨分类群的遗传物质传递进行进化的关键驱动因素。1类整合子是与人为污染密切相关的遗传元件,通过水平基因转移促进抗菌药物耐药性(AMR)基因的传播。尽管它们对人类健康具有重要意义,但目前缺乏强大的、无需培养的监测技术来识别携带1类整合子的未培养环境分类群。我们开发了一种改良版的epicPCR(乳液、配对分离和串联聚合酶链反应(PCR)),该方法将从单个细菌细胞中扩增的1类整合子与乳化水滴中同一细胞的分类标记物联系起来。使用这种单细胞基因组方法和纳米孔测序,我们成功地将主要包含AMR基因的1类整合子基因盒阵列与其在受污染的沿海水样中的宿主进行了匹配。我们的工作首次将epicPCR应用于靶向可变的、感兴趣的多基因位点。我们还将该属鉴定为1类整合子的新宿主。这些发现确立了epicPCR作为一种强大工具,可用于将环境细菌群落中的分类群与1类整合子联系起来,并有可能将缓解措施指向1类整合子介导的AMR传播热点。