Virulence Genes and Molecular Typing of Different Groups of Escherichia coli O157 Strains in Cattle

Author:

Tóth István1,Schmidt Herbert2,Kardos Gábor3,Lancz Zsuzsanna4,Creuzburg Kristina2,Damjanova Ivelina5,Pászti Judit5,Beutin Lothar6,Nagy Béla1

Affiliation:

1. Veterinary Medical Research Institute of the Hungarian Academy of Sciences, Budapest, Hungary

2. University of Hohenheim, Institute of Food Science and Biotechnology, Laboratory of Food Microbiology, Stuttgart, Germany

3. National Veterinary Institute, Microbiology, Debrecen, Hungary

4. National Food Investigation Institute, Budapest, Hungary

5. National Center for Epidemiology, Budapest, Hungary

6. Federal Institute for Risk Assessment, Berlin, Germany

Abstract

ABSTRACT Characterization of an Escherichia coli O157 strain collection ( n = 42) derived from healthy Hungarian cattle revealed the existence of diverse pathotypes. Enteropathogenic E. coli (EPEC; eae positive) appeared to be the most frequent pathotype ( n = 22 strains), 11 O157 strains were typical enterohemorrhagic E. coli (EHEC; stx and eae positive), and 9 O157 strains were atypical, with none of the key stx and eae virulence genes detected. EHEC and EPEC O157 strains all carried eae- gamma, tir- gamma, tccP , and paa . Other virulence genes located on the pO157 virulence plasmid and different O islands (O island 43 [OI-43] and OI-122), as well as espJ and espM , also characterized the EPEC and EHEC O157 strains with similar frequencies. However, none of these virulence genes were detected by PCR in atypical O157 strains. Interestingly, five of nine atypical O157 strains produced cytolethal distending toxin V (CDT-V) and carried genes encoding long polar fimbriae. Macro-restriction fragment enzyme analysis (pulsed-field gel electrophoresis) revealed that these E. coli O157 strains belong to four main clusters. Multilocus sequence typing analysis revealed that five housekeeping genes were identical in EHEC and EPEC O157 strains but were different in the atypical O157 strains. These results suggest that the Hungarian bovine E. coli O157 strains represent at least two main clones: EHEC/EPEC O157:H7/NM (nonmotile) and atypical CDT-V-producing O157 strains with H antigens different from H7. The CDT-V-producing O157 strains represent a novel genogroup. The pathogenic potential of these strains remains to be elucidated.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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