首页> 外文期刊>Journal of Medical Microbiology: An Official Journal of the Pathological Society of Great Britain and Ireland >Prevalence of the fosfomycin-resistance determinant, fosB3, in Enterococcus faecium clinical isolates from China
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Prevalence of the fosfomycin-resistance determinant, fosB3, in Enterococcus faecium clinical isolates from China

机译:中国粪便肠球菌临床分离株中磷霉素抗性决定簇fosB3的患病率

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In order to investigate the prevalence of fosfomycin-resistance (fos) determinants in Enterococcus faecium, clinical strains were collected from hospitals throughout China between January 2008 and December 2009. Antimicrobial susceptibility testing was performed, after which the fos genes in all isolates and van genes in vancomycin-resistant isolates were characterized by PCR and sequencing. Conjugation experiments were carried out with fosB-positive E. faecium, DNA fragments flanking the fosB3 gene were sequenced and the genetic environment of fosB3 was analysed. Fosfomycin-resistant E. faecium (FREF) strains were characterized further by multilocus sequence typing (MLST) and PFGE. Among 145 E. faecium clinical isolates, 10 were resistant to fosfomycin with MICs &1024 mg l?1 including six vancomycin-resistant strains of which five were vanA-positive and the sixth vanM-positive. All ten FREF strains harboured the fosB3 gene. Fosfomycin resistance and fosB3 could be transferred by conjugation from nine isolates. The fosB3 and tnpA genes were located in a circular DNA intermediate in all FREF strains and reversely inserted into vanA transposon Tn1546 in four vanA-positive FREF isolates. Ten different PFGE types and seven MLST types were found among the ten fosB3-positive isolates, while all strains belonged to the common clonal complex CC17. In conclusion, the transferable fosfomycin-resistance determinant fosB3 plays an important role in E. faecium resistance to fosfomycin in China.
机译:为了研究粪肠球菌中抗磷霉素(fosfomycin)决定因素的流行情况,从2008年1月至2009年12月在中国各地的医院收集了临床菌株。进行了抗菌药敏试验,之后所有分离株和van基因中的fos基因通过PCR和测序对耐万古霉素的分离物中的细菌进行鉴定。用fosB阳性的屎肠球菌进行缀合实验,对fosB3基因侧翼的DNA片段进行测序,并分析了fosB3的遗传环境。耐磷霉素的粪肠球菌(FREF)菌株通过多基因座序列分型(MLST)和PFGE进一步表征。在145个粪肠球菌临床分离株中,有10个对磷霉素具有抗性,MIC≥1024mg/ l1,包括6个耐万古霉素的菌株,其中5个是vanA阳性的,第六个是vanM阳性的。所有十个FREF菌株都带有fosB3基因。磷霉素抗性和fosB3可以通过结合从9个分离株中转移。 fosB3和tnpA基因位于所有FREF菌株的环状DNA中间体中,并反向插入四个vanA阳性FREF分离株的vanA转座子Tn1546中。在十个fosB3阳性分离株中发现了十种不同的PFGE类型和七种MLST类型,而所有菌株均属于共同的克隆复合体CC17。总之,在中国,可转移的抗磷霉素决定簇fosB3在大肠杆菌对磷霉素的粪便抗性中起重要作用。

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