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Role of topoisomerase mutations, plasmid mediated resistance (qnr) and acrAB efflux pump in fluoroquinolone resistant clinical isolates of avian Escherichia coli

Publication ,  Journal Article
Yaqoob, M; Wang, LP; Memon, J; Kashif, J; Umar, S; Naseer, Z; Iqbal, MF; Fiaz, M; Lu, CP
Published in: Molecular Genetics Microbiology and Virology
January 1, 2017

Introduction: We investigated the role of topoisomerase mutations, increased level of the multidrug efflux pump AcrAB, and the plasmid-borne genes (qnr) in the fluoroquinolone (FQ) resistant avian Escherichia coli simultaneously. Material and method: Here, we used four FQs (ciprofloxacin, enrofloxacin, ofloxacin and pefloxacin) and eight clinical isolates of E. coli containing six fluoroquinolone-resistant and two fluoroquinolone- susceptible. PCR and direct sequencing methods were used to detect the role of regulator/ repressor gene (acrR). Objective: The objective of this study was to determine the relationship of these resistance mechanisms for fluoroquinolone resistance. Result: The results showed that (i) all four fluoroquinolone- resistant isolates have topoisomerase mutation and plasmid borne genes qnrS and aac(6')-Ib; (ii) three FQ (enrofloxacin, ofloxacin and pefloxacin) resistant isolates harboring qnrS genes; (iii) two FQ (ciprofloxacin and pefloxacin) resistant isolates had topoisomerase mutation and plasmid borne gene qnrS; (iv) all fluoroquinolone susceptible were not harboring qnrS gene and topoisomerase mutation (v) All isolates were negative for qnrA and qnrB. Conclusion: We found that FQs resistance combination was correlated with synergistically contribution of these resistance mechanisms. Plasmid mediated resistance by qnrS was correlated to pefloxacin resistance but did not correlate to ofloxacin, enrofloxacin and ciprofloxacin. This mechanism might be account for the pefloxacin resistance in avian E. coli.

Duke Scholars

Published In

Molecular Genetics Microbiology and Virology

DOI

EISSN

1934-841X

ISSN

0891-4168

Publication Date

January 1, 2017

Volume

32

Issue

1

Start / End Page

49 / 54

Related Subject Headings

  • 3107 Microbiology
  • 3101 Biochemistry and cell biology
 

Citation

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Yaqoob, M., Wang, L. P., Memon, J., Kashif, J., Umar, S., Naseer, Z., … Lu, C. P. (2017). Role of topoisomerase mutations, plasmid mediated resistance (qnr) and acrAB efflux pump in fluoroquinolone resistant clinical isolates of avian Escherichia coli. Molecular Genetics Microbiology and Virology, 32(1), 49–54. https://doi.org/10.3103/S0891416817010116
Yaqoob, M., L. P. Wang, J. Memon, J. Kashif, S. Umar, Z. Naseer, M. F. Iqbal, M. Fiaz, and C. P. Lu. “Role of topoisomerase mutations, plasmid mediated resistance (qnr) and acrAB efflux pump in fluoroquinolone resistant clinical isolates of avian Escherichia coli.” Molecular Genetics Microbiology and Virology 32, no. 1 (January 1, 2017): 49–54. https://doi.org/10.3103/S0891416817010116.
Yaqoob M, Wang LP, Memon J, Kashif J, Umar S, Naseer Z, et al. Role of topoisomerase mutations, plasmid mediated resistance (qnr) and acrAB efflux pump in fluoroquinolone resistant clinical isolates of avian Escherichia coli. Molecular Genetics Microbiology and Virology. 2017 Jan 1;32(1):49–54.
Yaqoob, M., et al. “Role of topoisomerase mutations, plasmid mediated resistance (qnr) and acrAB efflux pump in fluoroquinolone resistant clinical isolates of avian Escherichia coli.” Molecular Genetics Microbiology and Virology, vol. 32, no. 1, Jan. 2017, pp. 49–54. Scopus, doi:10.3103/S0891416817010116.
Yaqoob M, Wang LP, Memon J, Kashif J, Umar S, Naseer Z, Iqbal MF, Fiaz M, Lu CP. Role of topoisomerase mutations, plasmid mediated resistance (qnr) and acrAB efflux pump in fluoroquinolone resistant clinical isolates of avian Escherichia coli. Molecular Genetics Microbiology and Virology. 2017 Jan 1;32(1):49–54.
Journal cover image

Published In

Molecular Genetics Microbiology and Virology

DOI

EISSN

1934-841X

ISSN

0891-4168

Publication Date

January 1, 2017

Volume

32

Issue

1

Start / End Page

49 / 54

Related Subject Headings

  • 3107 Microbiology
  • 3101 Biochemistry and cell biology