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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Deciphering the Resistome of the Widespread Pseudomonas aeruginosa Sequence Type 175 International High-Risk Clone through Whole-Genome Sequencing
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Deciphering the Resistome of the Widespread Pseudomonas aeruginosa Sequence Type 175 International High-Risk Clone through Whole-Genome Sequencing

机译:通过全基因组测序解密铜绿假单胞菌175型国际高危克隆的耐药性

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摘要

Whole-genome sequencing (WGS) was used for the characterization of the frequently extensively drug resistant (XDR) Pseudomonas aeruginosa sequence type 175 (ST175) high-risk clone. A total of 18 ST175 isolates recovered from 8 different Spanish hospitals were analyzed; 4 isolates from 4 different French hospitals were included for comparison. The typical resistance profile of ST175 included penicillins, cephalosporins, monobactams, carbapenems, aminoglycosides, and fluoroquinolones. In the phylogenetic analysis, the four French isolates clustered together with two isolates from one of the Spanish regions. Sequence variation was analyzed for 146 chromosomal genes related to antimicrobial resistance, and horizontally acquired genes were explored using online databases. The resistome of ST175 was determined mainly by mutational events; resistance traits common to all or nearly all of the strains included specific ampR mutations leading to ampC overexpression, specific mutations in oprD conferring carbapenem resistance, or a mexZ mutation leading to MexXY overexpression. All isolates additionally harbored an aadB gene conferring gentamicin and tobramycin resistance. Several other resistance traits were specific to certain geographic areas, such as a streptomycin resistance gene, aadA13, detected in all four isolates from France and in the two isolates from the Cantabria region and a glpT mutation conferring fosfomycin resistance, detected in all but these six isolates. Finally, several unique resistance mutations were detected in single isolates; particularly interesting were those in genes encoding penicillin-binding proteins (PBP1A, PBP3, and PBP4). Thus, these results provide information valuable for understanding the genetic basis of resistance and the dynamics of the dissemination and evolution of high-risk clones.
机译:全基因组测序(WGS)用于表征广泛耐药(XDR)的铜绿假单胞菌175型序列(ST175)高风险克隆。分析了从西班牙8家不同医院回收的18株ST175分离株。包括来自4家不同法国医院的4种分离株进行比较。 ST175的典型耐药性包括青霉素,头孢菌素,单bactams,碳青霉烯,氨基糖苷和氟喹诺酮类。在系统发育分析中,四个法国分离株与来自西班牙地区之一的两个分离株聚集在一起。分析了与抗菌素耐药性相关的146个染色体基因的序列变异,并使用在线数据库探索了水平获取的基因。 ST175的抗药性主要由突变事件决定。所有或几乎所有菌株共有的抗性特征包括导致ampC过表达的特定ampR突变,赋予碳青霉烯抗性的oprD中的特定突变或导致MexXY过度表达的mexZ突变。所有分离株还带有赋予庆大霉素和妥布霉素抗性的aadB基因。其他一些特定于某些地理区域的抗性性状,例如链霉素抗性基因aadA13,在来自法国的所有四个分离株和坎塔布里亚地区的两个分离株中均检测到,并且在除这六个以外的所有情况中均检测到了赋予磷霉素抗性的glpT突变。隔离株。最后,在单个分离物中检测到几个独特的抗性突变。特别令人感兴趣的是那些编码青霉素结合蛋白(PBP1A,PBP3和PBP4)的基因。因此,这些结果为理解抗性的遗传基础以及高危克隆的传播和进化动力学提供了有价值的信息。

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