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dc.creatorPapagiannitsis C.C., Malli E., Tsilipounidaki K., Sarrou S., Medvecky M., Hrabak J., Fthenakis G.C., Petinaki E.en
dc.date.accessioned2023-01-31T09:43:21Z
dc.date.available2023-01-31T09:43:21Z
dc.date.issued2018
dc.identifier10.1089/mdr.2017.0425
dc.identifier.issn10766294
dc.identifier.urihttp://hdl.handle.net/11615/77706
dc.description.abstractThe aim of the present study was to describe the first mphC-positive staphylococci, including two Staphylococcus lentus (Sle-087lar and Sle-091lar) and one Staphylococcus xylosus (Sxy-228lar), isolated from samples of animal origin, in Greece. Isolates Sle-087lar and Sxy-228lar were resistant to erythromycin, whereas Sle-091lar was resistant to erythromycin and lincomycin. All three isolates were susceptible to the remaining antibiotics. PCR screening showed that isolate Sle-091lar carried also ermB. For Sxy-228lar, whole-genome sequencing (WGS) and de novo assembly obtained an mphC-positive contig of 57.3-kb exhibiting high similarity with the genome of mphC-negative S. xylosus S170. However, mphC of Sxy-228lar was 91% similar to that found in plasmid pJW2311 from S. xylosus JW2311. Additionally, WGS data showed that Sle-087lar and Sle-091lar harbored mphC-carrying sequences being highly similar to the recently announced genome of the mphC-carrying S. lentus isolate 050AP from Tanzania. However, differences were observed in the mphC environment, suggesting the independent acquisition of the gene by each isolate. Sle-091lar also harbored transposon Tn917, which carries ermB resistance gene, integrated into S. lentus chromosome. These findings indicated that acquisition of resistance genes can lead to the emergence of multiresistant staphylococci, causing animal infections with economic burden. © 2018 Mary Ann Liebert, Inc.en
dc.language.isoenen
dc.sourceMicrobial Drug Resistanceen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85053126946&doi=10.1089%2fmdr.2017.0425&partnerID=40&md5=9aeb973d493288d558d640e8feabbfdb
dc.subjectbacterial DNAen
dc.subjectcontigen
dc.subjecterythromycinen
dc.subjectlincomycinen
dc.subjectantiinfective agenten
dc.subjectbacterial proteinen
dc.subjecterythromycinen
dc.subjectlincomycinen
dc.subjectanimal experimenten
dc.subjectanimal modelen
dc.subjectantibiotic resistanceen
dc.subjectArticleen
dc.subjectbacterial chromosomeen
dc.subjectbacterial geneen
dc.subjectbacterial genomeen
dc.subjectbacterium isolateen
dc.subjectcontrolled studyen
dc.subjecteween
dc.subjectfemaleen
dc.subjectGreeceen
dc.subjectmastitisen
dc.subjectminimum inhibitory concentrationen
dc.subjectmphC geneen
dc.subjectnonhumanen
dc.subjectnucleotide sequenceen
dc.subjectphylogenyen
dc.subjectplasmiden
dc.subjectpriority journalen
dc.subjectsequence analysisen
dc.subjectStaphylococcusen
dc.subjectStaphylococcus chromogenesen
dc.subjectStaphylococcus epidermidisen
dc.subjectStaphylococcus infectionen
dc.subjectStaphylococcus lentusen
dc.subjectStaphylococcus xylosusen
dc.subjectwhole genome sequencingen
dc.subjectanimalen
dc.subjectdrug effecten
dc.subjectgeneticsen
dc.subjectmicrobial sensitivity testen
dc.subjectmicrobiologyen
dc.subjectmultidrug resistanceen
dc.subjectproceduresen
dc.subjectsheepen
dc.subjectStaphylococcus infectionen
dc.subjectTanzaniaen
dc.subjectAnimalsen
dc.subjectAnti-Bacterial Agentsen
dc.subjectBacterial Proteinsen
dc.subjectDrug Resistance, Multiple, Bacterialen
dc.subjectErythromycinen
dc.subjectGreeceen
dc.subjectLincomycinen
dc.subjectMicrobial Sensitivity Testsen
dc.subjectSheepen
dc.subjectStaphylococcal Infectionsen
dc.subjectStaphylococcusen
dc.subjectTanzaniaen
dc.subjectMary Ann Liebert Inc.en
dc.titleFirst description in Greece of mphC-positive staphylococci causing subclinical mastitis in Ewesen
dc.typejournalArticleen


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