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Evolution of Ciprofloxacin Resistance-Encoding Genetic Elements in Salmonella

机译:西氯甲酰辛抗性编码遗传元素在沙门氏菌中的演变

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The incidence of ciprofloxacin resistance in Salmonella has increased dramatically in the past decade. To track the evolutionary trend of ciprofloxacin resistance-encoding genetic elements during this period, we surveyed the prevalence of Salmonella in food products in Shenzhen, China, during the period of 2012 to 2017 and performed whole-genome sequencing and genetic analysis of 566 ciprofloxacin-resistant clinical Salmonella strains collected during this survey. We observed that target gene mutations have become much less common, with single gyrA mutation currently detectable in Salmonella enterica serovar Typhimurium only. Multiple plasmid-mediated quinolone resistance (PMQR) genes located in the chromosome and plasmids are now frequently detectable in ciprofloxacin-resistant Salmonella strains of various serotypes. Among them, the qnrS1 gene was often harbored by multiple plasmids, with p10k-like plasmids being the most dominant. Importantly, p10k-like plasmids initially were not conjugative but became transmissible with the help of a helper plasmid. Ciprofloxacin resistance due to combined effect of carriage of the qnrS1 gene and other resistance mechanisms is common. In S . Typhimurium, carriage of qnrS1 is often associated with a single gyrA mutation; in other serotypes, combination of qnrS1 and other PMQR genes located in the chromosomal fragment or plasmid is observed. Another major mechanism of ciprofloxacin resistance, mainly observable in S . Derby, involves a chromosomal fragment harboring the qnrS2–aac(6′)lb-cr–oqxAB elements. Intriguingly, this chromosomal fragment, flanked by IS 26 , could form a circular intermediate and became transferrable. To conclude, the increase in the incidence of various PMQR mobile genetic elements and their interactions with other resistance mechanism contribute to a sharp increase in the prevalence of ciprofloxacin-resistant clinical Salmonella strains in recent years. IMPORTANCE Resistance of nontyphoidal Salmonella to fluoroquinolones such as ciprofloxacin is known to be mediated by target mutations. This study surveyed the prevalence of Salmonella strains recovered from 2,989 food products in Shenzhen, China, during the period 2012 to 2017 and characterized the genetic features of several PMQR gene-bearing plasmids and ciprofloxacin resistance-encoding DNA fragments. The emergence of such genetic elements has caused a shift in the genetic location of ciprofloxacin resistance determinants from the chromosomal mutations to various mobile genetic elements. The distribution of these PMQR plasmids showed that they exhibited high serotype specificity, except for the p10k-like plasmids, which can be widely detected and efficiently transmitted among Salmonella strains of various serotypes by fusing to a new conjugative helper plasmid. The sharp increase in the prevalence of ciprofloxacin resistance in recent years may cause a predisposition to the emergence of multidrug-resistant Salmonella strains and pose huge challenges to public health and infection control efforts.
机译:在过去十年中,沙门氏菌中环丙沙星抗性的发病率急剧增加。在此期间追踪环丙沙星抗性耐遗传元素的进化趋势,我们在2012年至2017年期间调查了中国深圳市食品中的食品普遍性,并进行了全基因组测序和566英氯氟丙辛的遗传分析 - 在本次调查中收集的耐药临床疗养菌株。我们观察到靶基因突变变得越来越少,单一的陀螺突变目前仅可检测到沙门氏菌肠道毒蕈醋氏菌中。现在,在染色体和质粒中,多种质粒介导的喹啉抗性(PMQR)基因在各种血清型的环丙沙星抗性沙门氏菌菌株中经常可检测到。其中,QNRS1基因经常被多种质粒覆盖,P10K样质粒是最显着的。重要的是,P10K样质粒最初不是缀合物,但在辅助质粒的帮助下变得可传递。由于QNRS1基因的携带的组合效果和其他抗性机制而导致的环丙沙星抗性是常见的。在s。伤寒蕈下,QNRS1的托架通常与单一的陀螺突变有关;在其他血清型中,观察QNRS1和位于染色体片段或质粒中的其他PMQR基因的组合。环丙沙星抗性的另一种主要机制,主要是可观察到的。德比,涉及含有QNRS2-AAC(6')LB-CR-OQXAB元素的染色体片段。有趣的是,这种染色体片段侧翼为26,可以形成圆形中间体并成为可转移的。为了得出结论,各种PMQR移动遗传元件的发病率的增加及其与其他抗性机制的相互作用有助于近年来环丙沙星抗性临床培养株患病率的急剧增加。已知无型沙门氏菌对氟喹诺酮类如环氟苯胺酮的重要性,通过靶突变介导。本研究调查了中国深圳至2017年期间在中国深圳的2,989家食品中恢复的沙门氏菌菌株的患病率,并表现了几种PMQR基因质粒和环丙沙星抗性编码DNA片段的遗传特征。这种遗传元件的出现使得环丙沙星抗性决定簇的遗传定位从染色体突变到各种移动遗传元素的转变。这些PMQR质粒的分布表明,除了P10K样质粒外,它们表现出高血清型特异性,其可以通过熔断到新的共轭辅助质粒,在各种血清型的沙门氏菌菌株中广泛检测和有效地传播。近年来环丙沙星抗性患病率的急剧增加可能导致多药物抗性沙门氏菌的出现易感性,对公共卫生和感染控制努力构成巨大挑战。

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