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High prevalence of plasmid-mediated 16S rRNA methylase gene rmtB among Escherichia coli clinical isolates from a Chinese teaching hospital.
- Source :
-
BMC infectious diseases [BMC Infect Dis] 2010 Jun 23; Vol. 10, pp. 184. Date of Electronic Publication: 2010 Jun 23. - Publication Year :
- 2010
-
Abstract
- Background: Recently, production of 16S rRNA methylases by Gram-negative bacilli has emerged as a novel mechanism for high-level resistance to aminoglycosides by these organisms in a variety of geographic locations. Therefore, the spread of high-level aminoglycoside resistance determinants has become a great concern.<br />Methods: Between January 2006 and July 2008, 680 distinct Escherichia coli clinical isolates were collected from a teaching hospital in Wenzhou, China. PCR and DNA sequencing were used to identify 16S rRNA methylase and extended-spectrum beta-lactamase (ESBL) genes, including armA and rmtB, and in situ hybridization was performed to determine the location of 16S rRNA methylase genes. Conjugation experiments were subsequently performed to determine whether aminoglycoside resistance was transferable from the E. coli isolates via 16S rRNA methylase-bearing plasmids. Homology of the isolates harboring 16S rRNA methylase genes was determined using pulse-field gel electrophoresis (PFGE).<br />Results: Among the 680 E. coli isolates, 357 (52.5%), 346 (50.9%) and 44 (6.5%) isolates were resistant to gentamicin, tobramycin and amikacin, respectively. Thirty-seven of 44 amikacin-resistant isolates harbored 16S rRNA methylase genes, with 36 of 37 harboring the rmtB gene and only one harboring armA. The positive rates of 16S rRNA methylase genes among all isolates and amikacin-resistant isolates were 5.4% (37/680) and 84.1% (37/44), respectively. Thirty-one isolates harboring 16S rRNA methylase genes also produced ESBLs. In addition, high-level aminoglycoside resistance could be transferred by conjugation from four rmtB-positive donors. The plasmids of incompatibility groups IncF, IncK and IncN were detected in 34, 3 and 3 isolates, respectively. Upstream regions of the armA gene contained ISCR1 and tnpU, the latter a putative transposase gene,. Another putative transposase gene, tnpD, was located within a region downstream of armA. Moreover, a transposon, Tn3, was located upstream of the rmtB. Nineteen clonal patterns were obtained by PFGE, with type H representing the prevailing pattern.<br />Conclusion: A high prevalence of plasmid-mediated rmtB gene was found among clinical E. coli isolates from a Chinese teaching hospital. Both horizontal gene transfer and clonal spread were responsible for the dissemination of the rmtB gene.
- Subjects :
- Anti-Bacterial Agents pharmacology
Bacterial Typing Techniques
China
Cluster Analysis
Conjugation, Genetic
DNA Fingerprinting
DNA, Bacterial chemistry
DNA, Bacterial genetics
Electrophoresis, Gel, Pulsed-Field
Escherichia coli isolation & purification
Gene Transfer, Horizontal
Hospitals, Teaching
Humans
In Situ Hybridization
Polymerase Chain Reaction
Prevalence
Sequence Analysis, DNA
beta-Lactamases genetics
Aminoglycosides pharmacology
Drug Resistance, Bacterial
Escherichia coli enzymology
Escherichia coli genetics
Escherichia coli Infections microbiology
Escherichia coli Proteins genetics
Methyltransferases genetics
Plasmids
Subjects
Details
- Language :
- English
- ISSN :
- 1471-2334
- Volume :
- 10
- Database :
- MEDLINE
- Journal :
- BMC infectious diseases
- Publication Type :
- Academic Journal
- Accession number :
- 20573216
- Full Text :
- https://doi.org/10.1186/1471-2334-10-184