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Antibiotic resistance in Vibrio cholerae: Understanding the ecology of resistance genes and mechanisms

机译:Vibrio Cholerae的抗生素抗性:了解抗性基因的生态和机制

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摘要

The unique genetic makeup and remarkable competency of Vibrio cholerae are the key factors that help the cholera pathogen adapt rapidly to adverse environmental conditions and resist the detrimental effect of antimicrobial agents. In the last few decades, V. cholerae that causes acute watery diarrhoeal disease cholera has emerged as a notorious multidrug resistant (MDR) enteric pathogen. Although chromosomal mutations can contribute to antimicrobial resistance (AMR), the frequent acquisition of extrachromosomal mobile genetic elements (MGEs) from closely/distantly related bacterial species are major players in V. cholerae drug resistance. Whole genome sequence analysis of clinical and environmental V. cholerae strains revealed that the genome of most of the recent isolates harbour integrating conjugative elements (ICEs), plasmids, superintegron, transposable elements and insertion sequences, which are the key carriers of genetic traits encoding antimicrobial resistance function. Different antimicrobial resistance genes identified in V. cholerae can contribute in antibiotic resistance by facilitating one of the following three mechanisms; (i) reduced permeability or active efflux of the antibiotics, (ii) alteration of the antibiotic targets by introducing post-transcriptional/translational modifications and (iii) hydrolysis or chemical modification of antibiotics. Here, we present an overview of the present insights on the emergence and mechanisms of AMR in V. cholerae. (C) 2019 Elsevier Ltd.
机译:振动霍乱的独特遗传构成和显着竞争力是帮助霍乱病原体迅速对不利环境条件进行适应并抵抗抗微生物剂的不利影响的关键因素。在过去的几十年中,导致急性水腹泻疾病霍乱的霍乱被赋予臭名昭着的多药抗性(MDR)肠道病原体。虽然染色体突变可以有助于抗微生物抗性(AMR),但频繁地获取来自密切/远远相关的细菌物种的面包瘤移动遗传元素(MGES)是V.霍乱毒性抗药性的主要球员。临床和环境V.霍乱菌株的全基因组序列分析显示,最近最近分离物的基因组是整合共轭元素(冰),质粒,超胶,转换元件和插入序列,这是编码抗微生物的遗传性状的关键载体电阻函数。通过促进以下三种机制之一,V.霍乱中鉴定的不同抗微生物抗性基因可以通过促进其中一种机制有助于抗生素抗性; (i)通过引入转录后/翻译修饰和(iii)水解或抗生素的化学改性,降低抗生素的渗透性或活性外排,(ii)通过引入转录后/翻译修饰或抗生素的化学改性来改变抗生素靶标。在这里,我们概述了对霍乱的AMR的出现和机制的概述。 (c)2019年elestvier有限公司

著录项

  • 来源
    《Vaccine》 |2020年第1期|共10页
  • 作者单位

    Translat Hlth Sci &

    Technol Inst Ctr Human Microbial Ecol Mol Genet Lab NCR Biotech Sci Cluster 3rd Milestone Faridabad Gurgaon Expressway Faridabad 121001 Haryana India;

    Translat Hlth Sci &

    Technol Inst Ctr Human Microbial Ecol Mol Genet Lab NCR Biotech Sci Cluster 3rd Milestone Faridabad Gurgaon Expressway Faridabad 121001 Haryana India;

    Translat Hlth Sci &

    Technol Inst Ctr Human Microbial Ecol Mol Genet Lab NCR Biotech Sci Cluster 3rd Milestone Faridabad Gurgaon Expressway Faridabad 121001 Haryana India;

    Natl Inst Cholera &

    Enter Dis P33 CIT Rd Scheme 60 Kolkata 700010 India;

    Translat Hlth Sci &

    Technol Inst Ctr Human Microbial Ecol Mol Genet Lab NCR Biotech Sci Cluster 3rd Milestone Faridabad Gurgaon Expressway Faridabad 121001 Haryana India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学免疫学;
  • 关键词

    Antimicrobial resistance (AMR); Multidrug resistance (MDR); Integrating conjugative element (ICE); Plasmids; Integron; Cholera;

    机译:抗微生物抗性(AMR);多药抗性(MDR);整合共轭元素(冰);质粒;整合子;霍乱;

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