Figure S1. (a) Polymerase chain reaction amplification of vanA gene in Enterococcus fecacieum isolated from baby blood (lane D) and stool of the neonate (lane E) and mother (lane F). (Lane A: 100âbp ladder, B: positive control for vanA gene (732âbp), C: negative control). (b) Typing of the isolates: Strain relation according to PFGE (Lane 1: molecular marker) (PCR 20âbp Low Ladder, Sigma-Aldrich, USA). PFGE showed that both blood and stool isolates were pulso type A. (PNG 2020 kb
Figure S3. Stacked bar plot of dominant phyla. Marginal and representative sections from each infant...
Primers used for partially sequencing of transconjugations and size of the PCR-targeted products. (D...
Figure S3. Amino acid sequence alignment of VanW encoded by M1/Y7 and the other VanB-type VRE. The g...
Abstract Background Vancomycin-resistant enterococcal infections in the neonatal ICU are growing glo...
Figure S4. PFGE of S1 nuclease-treated DNA and hybridization with vanB gene probes. PFGE of S1 nucle...
Figure S2. Molecular typing of VREfm isolates. PCR amplification of the most frequently found clonal...
Figure S5. PFGE of I-CeuI-digested DNA and hybridization with 23srRNA gene and vanB gene probes. PFG...
Table S1. Amino acid identities of vanB gene cluster of wild M1 and Y7 strains. aThe genetic informa...
Table S2. Mutations in intracytoplasmic domain of VanSB and glycopeptides MICs of the VAN-resistant ...
Figure S1. Amino acid sequence alignment of VanSB encoded by M1/Y7 and the other VanB-type VRE. The ...
Detailed information of all studied Enterobacteriaceae : MIC values of meropenem and cirpfloxacin...
Table S1. A summary of the isolates with their epidemiological and meta-data. (XLSX 22 kb
Figure S2. Stacked bar plot of dominant genera. Marginal and representative sections from each infan...
Background and Objectives: One of the public concerns is emergence of Vancomycin-resistant Enterococ...
Table detailing the accession numbers of isolates used within the study. (XLSX 13 kb
Figure S3. Stacked bar plot of dominant phyla. Marginal and representative sections from each infant...
Primers used for partially sequencing of transconjugations and size of the PCR-targeted products. (D...
Figure S3. Amino acid sequence alignment of VanW encoded by M1/Y7 and the other VanB-type VRE. The g...
Abstract Background Vancomycin-resistant enterococcal infections in the neonatal ICU are growing glo...
Figure S4. PFGE of S1 nuclease-treated DNA and hybridization with vanB gene probes. PFGE of S1 nucle...
Figure S2. Molecular typing of VREfm isolates. PCR amplification of the most frequently found clonal...
Figure S5. PFGE of I-CeuI-digested DNA and hybridization with 23srRNA gene and vanB gene probes. PFG...
Table S1. Amino acid identities of vanB gene cluster of wild M1 and Y7 strains. aThe genetic informa...
Table S2. Mutations in intracytoplasmic domain of VanSB and glycopeptides MICs of the VAN-resistant ...
Figure S1. Amino acid sequence alignment of VanSB encoded by M1/Y7 and the other VanB-type VRE. The ...
Detailed information of all studied Enterobacteriaceae : MIC values of meropenem and cirpfloxacin...
Table S1. A summary of the isolates with their epidemiological and meta-data. (XLSX 22 kb
Figure S2. Stacked bar plot of dominant genera. Marginal and representative sections from each infan...
Background and Objectives: One of the public concerns is emergence of Vancomycin-resistant Enterococ...
Table detailing the accession numbers of isolates used within the study. (XLSX 13 kb
Figure S3. Stacked bar plot of dominant phyla. Marginal and representative sections from each infant...
Primers used for partially sequencing of transconjugations and size of the PCR-targeted products. (D...
Figure S3. Amino acid sequence alignment of VanW encoded by M1/Y7 and the other VanB-type VRE. The g...