Genetic characterization of the fusidic acid and cadmium resistance determinants of Staphylococcus aureus plasmid pUB101

2002 ◽  
Vol 50 (3) ◽  
pp. 313-321 ◽  
Author(s):  
F. G. O'Brien
Author(s):  
Theodoros Karampatakis ◽  
Panagiotis Papadopoulos ◽  
Katerina Tsergouli ◽  
Apostolos S. Angelidis ◽  
Daniel Sergelidis ◽  
...  

AbstractMethicillin-resistant Staphylococcus aureus (MRSA) constitutes a constant threat for the public health. Aim of the present study was to analyse the whole genome sequences of two MRSA strains belonging to Staphylococcus protein A (spa) type t127 isolated from humans working in two distantly located dairy production farms in Greece.MRSA strains were isolated from the nasal cavity of a food handler in a milk industry in Epirus, northwestern Greece (E-MRSA), and a person working in a cattle farm in Thrace, northeastern Greece (T-MRSA). Whole genome sequences taken using next generation sequencing were analysed for resistance and virulence genes applying various bioinformatic tools.Both isolates were assigned to ST1-IVa-t127 type, and they were transferring genes conferring resistance to tetracycline, β-lactams, and aminoglycosides; T-MRSA was carrying additional genes leading to macrolide, lincosamide and streptogramin B (MLSB) resistance. Both isolates were carrying three plasmid replicon types, rep5, rep7 and rep16, while T-MRSA harboured also rep10 and rep15. E-MRSA carried scn and sak genes which were absent from T-MRSA.In conclusion, the genetic characterization of two unrelated ST1-IVa-t127 MRSA strains isolated from humans in close contact with livestock in Greece can be used as basis for further epidemiological and evolutionary studies.


Author(s):  
Theodoros Karampatakis ◽  
Panagiotis Papadopoulos ◽  
Katerina Tsergouli ◽  
Apostolos S. Angelidis ◽  
Angeliki Melidou ◽  
...  

2011 ◽  
Vol 140 (8) ◽  
pp. 1366-1371 ◽  
Author(s):  
M. ZHANG ◽  
M. O'DONONGHUE ◽  
M. V. BOOST

SUMMARYEnvironmental staphylococcal contamination was investigated by culture of 400 automated teller machines (ATMs). Isolates were characterized for antibiotic and antiseptic susceptibility, carriage of antiseptic resistance genes (QAC genes), and spa types. MRSA, which was similar to local clinical isolates, was present on two (0·5%) of the 62 (15·5%) ATMs that yielded Staphylococcus aureus. QAC genes were more common in coagulase-negative staphylococci (qacA/B 26·0%, smr 14%) than S. aureus (11·3% qacA/B, 1·6% smr). QAC-positive isolates had significantly higher minimum inhibitory concentrations/minimum bactericidal concentrations to benzalkonium chloride and chlorhexidine digluconate. QAC gene presence was significantly associated with methicillin and tetracycline resistance. Survival of staphylococci, including MRSA, on common access sites may be facilitated by low disinfectant concentrations, which select for disinfectant-tolerant strains, while co-selecting for antibiotic-resistance determinants. Disinfection procedures should be performed correctly to help prevent spread of resistant pathogens from reservoirs in the community.


2015 ◽  
Vol 18 (3) ◽  
pp. 627-634 ◽  
Author(s):  
M. Kizerwetter-Świda ◽  
D. Chrobak-Chmiel ◽  
M. Rzewuska ◽  
A. Antosiewicz ◽  
B. Dolka ◽  
...  

AbstractCoagulase-positive staphylococci (CoPS) are opportunistic veterinary pathogens, of whichStaphylococcus aureus,S. delphiniandS. intermediuscan be isolated from pigeons. The biochemical identification ofS. delphiniandS. intermediusisolates may be incorrect, because of their phenotypic similarity. The purpose of the present study was to isolate and identify CoPS from domestic and feral pigeons and to determine their genetic relatedness by PFGE. A total number of 31 isolates of CoPS were obtained, 15 were identified asS. delphinigroup B, six asS. aureus,four asS. delphinigroup A, three asS. intermediusand three asS. schleiferisubsp.coagulans. The results indicate that S.delphinigroup B is the predominant CoPS species among pigeons studied. PFGE restriction patterns ofS. delphinigroup A andS. delphinigroup B form separate clusters, demonstrating their genetic heterogeneity. Indistinguishable or very similar PFGE patterns observed amongS. delphinigroup B isolates from domestic and feral pigeons confirm the possibility of CoPS transmission between these birds.


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