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Dissemination of Antimicrobial Resistance in Microbial Ecosystems through Horizontal Gene Transfer

机译:通过水平基因转移在微生物生态系统中传播抗药性

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摘要

The emergence and spread of antibiotic resistance among pathogenic bacteria has been a rising problem for public health in recent decades. It is becoming increasingly recognized that not only antibiotic resistance genes (ARGs) encountered in clinical pathogens are of relevance, but rather, all pathogenic, commensal as well as environmental bacteria—and also mobile genetic elements and bacteriophages—form a reservoir of ARGs (the resistome) from which pathogenic bacteria can acquire resistance via horizontal gene transfer (HGT). HGT has caused antibiotic resistance to spread from commensal and environmental species to pathogenic ones, as has been shown for some clinically important ARGs. Of the three canonical mechanisms of HGT, conjugation is thought to have the greatest influence on the dissemination of ARGs. While transformation and transduction are deemed less important, recent discoveries suggest their role may be larger than previously thought. Understanding the extent of the resistome and how its mobilization to pathogenic bacteria takes place is essential for efforts to control the dissemination of these genes. Here, we will discuss the concept of the resistome, provide examples of HGT of clinically relevant ARGs and present an overview of the current knowledge of the contributions the various HGT mechanisms make to the spread of antibiotic resistance.
机译:在最近几十年中,致病性细菌中抗生素抗性的出现和传播一直是公共卫生的一个日益严重的问题。越来越多的人认识到,不仅临床病原体中遇到的抗生素抗性基因(ARG)具有相关性,而且所有致病性,共生性和环境性细菌以及移动性遗传元件和噬菌体也构成了ARGs的库(病原菌可以通过水平基因转移(HGT)获得抗药性)。 HGT已导致抗生素耐药性从普通和环境物种传播到病原性物种,正如一些临床上重要的ARG所显示的那样。在HGT的三种经典机制中,共轭被认为对ARG的传播影响最大。尽管认为转化和转导不太重要,但最近的发现表明它们的作用可能比以前认为的要大。对于控制这些基因的传播,了解抵抗组的范围以及其如何转移到致病菌上至关重要。在这里,我们将讨论抵抗组的概念,提供临床相关ARG的HGT实例,并概述各种HGT机制对抗生素耐药性传播的贡献的当前知识。

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