Identificação de linhagens atípicas de Yersinia spp. por métodos moleculares / Identification of atypical Yersinia strains by molecular methods

AUTOR(ES)
DATA DE PUBLICAÇÃO

2009

RESUMO

The genus Yersinia comprises 12 species. Y. enterocolitica, Y. pseudotuberculosis and Y. pestis are pathogens of various animals, including humans. Y. aldovae, Y. bercovieri, Y. frederiksenii, Y. intermedia, Y. kristensenii, Y. aleksiciae, Y. mollaretti and Y. rohdei have been mostly found in the environment and food sources and are commonly considered to be opportunistic nonpathogenic bacteria and Y. ruckeri is an important fish pathogen. Usually, Yersinia strains are classified into species according to their biochemical characteristics. The Brazilian Reference Center on Yersinia spp. other than Y. pestis received more than 700 strains that were biochemically identified. However, seven strains that were typed as Yersinia could not be biochemically identified in any one of the currently known Yersinia species and for this reason they were named as atypical strains. The aims of this work were to identify into species the atypical Yersinia strains using molecular techniques as Enterobacterial Repetitive Intergenic Consensus PCR (ERIC-PCR), Pulsed Field Gel Electrophoresis (PFGE), 16S rRNA gene sequencing and Multilocus Sequencing Typing (MLST) and to define which methodology better contribute to the identification of those strains. A total of 59 Yersinia spp. strains were studied, being 52 representative strains of the defined Yersinia species and seven atypical Yersinia strains. ERIC-PCR, 16S rRNA gene sequencing and MLST were efficient in molecular identifying the genera Yersinia once they grouped the strains into species-specific clusters, with exception of some Y. frederiksenii and Y. kristensenii strains. However, PFGE was not capable to cluster the defined Yersinia strains into species-specific clusters. The data obtained by ERIC-PCR, 16S rRNA gene sequencing and MLST suggest that the atypical strains FCF 229 and FCF 231 belong to Y. ruckeri species. The data obtained by ERIC-PCR and MLST suggest that FCF 487 belong to the Y. enterocolitica species. Additionally, ERIC-PCR, 16S rRNA gene sequencing and MLST suggest that the atypical strains FCF 216, FCF 465, FCF 457 and FCF 494 belong to the Y. massiliensis species. The results obtained provide important data for the molecular characterization of biochemically atypical strains and contribute for a better description of the genera regardless its diversity. Furthermore, the results reinforce MLST as a trustful and reproducible technique to be used in the identification of bacteria of this genus, being among the methodologies studied the most recommended one to molecular type yersiniae.

ASSUNTO(S)

16s rrna gene sequencing and mlst pfge eric-pcr sequenciamento do gene 16s rrna pfge yersinia yersinia eric-pcr linhagens atipicas atypical strains mlst

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