首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Whole-Genome Sequencing Identifies In Vivo Acquisition of a blaCTX-M-27-Carrying IncFII Transmissible Plasmid as the Cause of Ceftriaxone Treatment Failure for an Invasive Salmonella enterica Serovar Typhimurium Infection
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Whole-Genome Sequencing Identifies In Vivo Acquisition of a blaCTX-M-27-Carrying IncFII Transmissible Plasmid as the Cause of Ceftriaxone Treatment Failure for an Invasive Salmonella enterica Serovar Typhimurium Infection

机译:全基因组测序确定了blaCTX-M-27携带IncFII可传播质粒的体内采集作为侵入型沙门氏菌血清型鼠伤寒感染头孢曲松治疗失败的原因

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摘要

We report a case of ceftriaxone treatment failure for bacteremia caused by Salmonella enterica subsp. enterica serovar Typhimurium, due to the in vivo acquisition of a blaCTX-M-27-encoding IncFII group transmissible plasmid. The original β-lactamase-susceptible isolate ST882S was replaced by the resistant isolate ST931R during ceftriaxone treatment. After relapse, treatment was changed to ciprofloxacin, and the patient recovered. Isolate ST931R could transfer resistance to Escherichia coli at 37°C. We used whole-genome sequencing of ST882S and ST931R, the E. coli transconjugant, and isolated plasmid DNA to unequivocally show that ST882S and ST931R had identical chromosomes, both having 206 identical single-nucleotide polymorphisms (SNPs) versus S. Typhimurium 14028s. We assembled a complete circular genome for ST931R, to which ST882S reads mapped with no SNPs. ST882S and ST931R were isogenic except for the presence of three additional plasmids in ST931R. ST931R and the E. coli transconjugant were ceftriaxone resistant due to the presence of a 60.5-kb IS26-flanked, blaCTX-M-27-encoding IncFII plasmid. Compared to 14082s, ST931R has almost identical Gifsy-1, Gifsy-2, and ST64B prophages, lacks Gifsy-3, and instead carries a unique Fels-2 prophage related to that found in LT2. ST882S and ST931R both had a 94-kb virulence plasmid showing >99% identity with pSLT14028s and a cryptic 3,904-bp replicon; ST931R also has cryptic 93-kb IncI1 and 62-kb IncI2 group plasmids. To the best of our knowledge, in vivo acquisition of extended-spectrum β-lactamase resistance by S. Typhimurium and blaCTX-M-27 genes in U.S. isolates of Salmonella have not previously been reported.
机译:我们报告一例头孢曲松治疗失败的肠炎沙门氏菌亚种引起的菌血症。由于体内获得了编码blaCTX-M-27的IncFII基团可传播质粒,因此鼠伤寒鼠伤寒杆菌。在头孢曲松治疗期间,最初的β-内酰胺酶敏感性分离株ST882S被耐药分离株ST931R替代。复发后,将治疗改为环丙沙星,患者康复。分离物ST931R可以在37°C转移抗性至大肠杆菌。我们使用ST882S和ST931R,大肠杆菌转导结合物以及分离的质粒DNA的全基因组测序明确显示出ST882S和ST931R具有相同的染色体,与鼠伤寒沙门氏菌14028相比,它们都具有206个相同的单核苷酸多态性(SNP)。我们为ST931R组装了完整的环状基因组,ST882S读取的序列中没有SNP。 ST882S和ST931R是同基因的,除了在ST931R中存在三个其他质粒外。由于存在60.5-kb IS26侧翼,编码blaCTX-M-27的IncFII质粒,因此ST931R和大肠杆菌转导结合体具有头孢曲松抗性。与14082s相比,ST931R具有几乎相同的Gifsy-1,Gifsy-2和ST64B预言,缺少Gifsy-3,而是带有与LT2中发现的独特的Fels-2预言。 ST882S和ST931R均具有94 kb的毒力质粒,与pSLT14028s的同源性大于99%,并具有3,904 bp的复制子。 ST931R还具有隐秘的93kb IncI1和62kb I​​ncI2组质粒。据我们所知,美国沙门氏菌分离株中鼠伤寒沙门氏菌和blaCTX-M-27基因在体内获得了广谱β-内酰胺酶耐药性。

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