A new genotyping scheme based on MLVA for inter-laboratory surveillance of Streptococcus pyogenes

A newly developed MLVA seven-loci scheme for Streptococcus pyogenes is described. The method can be successfully applied by using both agarose gel with visual inspections of bands and Lab on Chip technology. The potential of the present MLVA has been tested on a collection of 100 clinical GAS strain...

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Veröffentlicht in:Journal of microbiological methods 2016-08, Vol.127, p.176-181
Hauptverfasser: Imperi, Monica, Pittiglio, Valentina, D'Avenio, Giuseppe, Gherardi, Giovanni, Ciammaruconi, Andrea, Lista, Florigio, Pourcel, Christine, Baldassarri, Lucilla, Creti, Roberta
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Sprache:eng
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Zusammenfassung:A newly developed MLVA seven-loci scheme for Streptococcus pyogenes is described. The method can be successfully applied by using both agarose gel with visual inspections of bands and Lab on Chip technology. The potential of the present MLVA has been tested on a collection of 100 clinical GAS strains representing the most common emm types found in high-income countries plus 18 published gap-free genomes, in comparison to PFGE and MLST. The MLVA analysis defined 30 MLVA types with ten out of the considered 15 emm types exhibiting multiple and specific MLVA types. In only one occasion the same MLVA profile was shared between isolates belonging to two different emm types. A robust congruency between the methods was observed, with MLVA discriminating within clonal complexes as defined by PFGE or MLST. This new MLVA scheme can be adopted as a quick, low-cost and reliable typing method to track the short-term diffusion of GAS clones in inter-laboratory-based surveillance. •A newly developed MLVA assay for S. pyogenes genotyping is described.•The MLVA scheme defines a profile and a type to be inserted in a MLVA bank.•MLVA bank can be used for inter-laboratory short term diffusion of GAS clones.•The assay has proved to be an efficient and cheap portable technique for data exchange.•It has a discriminatory power comparable with the commonly used GAS typing methods.
ISSN:0167-7012
1872-8359
DOI:10.1016/j.mimet.2016.06.010