International Journal of Antimicrobial Agents
Volume 35, Issue 5 , Pages 492-496, May 2010

Genetic environment of sul genes and characterisation of integrons in Escherichia coli isolates of blood origin in a Spanish hospital

  • Laura Vinué

      Affiliations

    • Área de Bioquímica y Biología Molecular, Universidad de La Rioja, Logroño, Spain
  • ,
  • Yolanda Sáenz

      Affiliations

    • Unidad de Microbiología Molecular, Centro de Investigación Biomédica de La Rioja, Logroño, Spain
  • ,
  • Beatriz Rojo-Bezares

      Affiliations

    • Unidad de Microbiología Molecular, Centro de Investigación Biomédica de La Rioja, Logroño, Spain
  • ,
  • Inés Olarte

      Affiliations

    • Laboratorio de Microbiología, Hospital San Pedro, Logroño, Spain
  • ,
  • Esther Undabeitia

      Affiliations

    • Laboratorio de Microbiología, Hospital San Pedro, Logroño, Spain
  • ,
  • Sergio Somalo

      Affiliations

    • Área de Bioquímica y Biología Molecular, Universidad de La Rioja, Logroño, Spain
  • ,
  • Myriam Zarazaga

      Affiliations

    • Área de Bioquímica y Biología Molecular, Universidad de La Rioja, Logroño, Spain
    • Unidad de Microbiología Molecular, Centro de Investigación Biomédica de La Rioja, Logroño, Spain
  • ,
  • Carmen Torres

      Affiliations

    • Área de Bioquímica y Biología Molecular, Universidad de La Rioja, Logroño, Spain
    • Unidad de Microbiología Molecular, Centro de Investigación Biomédica de La Rioja, Logroño, Spain
    • Corresponding Author InformationCorresponding author. Present address: Área de Bioquímica y Biología Molecular, Departamento de Agricultura y Alimentación, Universidad de La Rioja, Madre de Dios 51, 26006 Logroño, Spain. Tel.: +34 941 299 750; fax: +34 941 299 721.

Received 27 October 2009; accepted 12 January 2010. published online 26 February 2010.

Abstract 

The prevalence and characterisation of integrons and the genetic environment of sulphonamide resistance genes were studied in 135 Escherichia coli isolates recovered from blood cultures in a Spanish hospital during 2007. Class 1 and 2 integrons were identified in 54 isolates (intI1, 52 isolates; intI2, 1 isolate; and intI1+intI2, 1 isolate). Of the 53 intI1-positive isolates, 36 (67.9%) contained the classic class 1 integron including the qacEΔ1–sul1 region, and 11 different gene cassette arrangements were demonstrated in 33 of these isolates. Seventeen intI1-positive isolates lacked the qacEΔ1–sul1 region, and 8 gene cassette arrangements were demonstrated in 12 of these isolates. Seventy-one isolates showed a sulphonamide-resistant phenotype, 63 of which contained sul genes. The sul1 gene was associated with intI1 in 36 of 42 sul1-positive isolates, and the sul3 gene was associated with non-classic class 1 integrons in 5 of 7 sul3-positive isolates. Finally, sul2 was found associated with strAstrB genes in 32 of 35 sul2-positive isolates, identifying 11 genetic structures, 1 of them presenting the IS150 element disrupting the strB gene; this structure was included in GenBank with accession no. FJ705354. Almost one-half of the E. coli isolates from blood cultures contained integrons and sul genes. Moreover, sul genes were detected in different structures, one of them new, and could be important determinants in antibiotic resistance dissemination.

Keywords: Integrons, Escherichia coli, sul genes

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PII: S0924-8579(10)00057-9

doi:10.1016/j.ijantimicag.2010.01.012

International Journal of Antimicrobial Agents
Volume 35, Issue 5 , Pages 492-496, May 2010