ARDB-Antibiotic Resistance Genes Database

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OrganismShewanella baltica OS155
Database LinkNCBI Taxon ID: 325240
NCBI Genome Project ID: 13386

Genome Information:
Replicon NameRefSeqGenBankLength(bp)
plasmid pSbal01NC_009035CP000564116763
plasmid pSbal02NC_009036CP00056574000
plasmid pSbal03NC_009037CP00056616762
plasmid pSbal04NC_009038CP0005677995
chromosomeNC_009052CP0005635127376


Resistance Genes:
GeneReplicon SourceBest HitSimilarityTypecutoffResistanceRequireDescription
Above Similarity Cutoff Genes
YP_001051531chromosomeYP_60792764.83%mexf%chloramphenicol fluoroquinolone mexe oprn Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump.
YP_001049370chromosomeAAX6399162.78%ksga%kasugamycin Specifically dimethylates two adjacent adenosines in the loop of a conserved hairpin near the 3'-end of 16S rRNA in the 30S particle. Its inactivation leads to kasugamycin resistance.
YP_001049952chromosomeAAA8687157.56%vatb%streptogramin_a Virginiamycin A acetyltransferase, which can inactivate the target drug.
YP_001051881chromosomeYP_00145376051.62%macb%macrolide maca tolc Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump. Macrolide-specific efflux system.
YP_001051232chromosomeAAA8687150.00%vatb%streptogramin_a Virginiamycin A acetyltransferase, which can inactivate the target drug.
YP_001050456chromosomeAAK1570149.87%bl1_sm%cephalosporin Class C beta-lactamase. This enzyme breaks the beta-lactam antibiotic ring open and deactivates the molecule's antibacterial properites.
YP_001051532chromosomeYP_00134810549.63%mexe%chloramphenicol fluoroquinolone mexf oprn Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump.
YP_001051868chromosomeABQ1057449.34%bl2d_oxa10%cloxacillin penicillin Class D beta-lactamase. This enzyme breaks the beta-lactam antibiotic ring open and deactivates the molecule's antibacterial properites.
YP_001050510chromosomeYP_00117651347.15%mdtk%enoxacin norfloxacin Major facilitator superfamily transporter. Multidrug resistance efflux pump.
YP_001051208chromosomeAAK8871242.98%catb1%chloramphenicol Group B chloramphenicol acetyltransferase, which can inactivate chloramphenicol. Also referred to as xenobiotic acetyltransferase.
YP_001049365chromosomeCAL4845742.76%dfra26%trimethoprim Group A drug-insensitive dihydrofolate reductase, which can not be inhibited by trimethoprim.
YP_001051688chromosomeYP_00157104142.42%macb%macrolide maca tolc Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump. Macrolide-specific efflux system.
YP_001050765chromosomeYP_00145376042.40%macb%macrolide maca tolc Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump. Macrolide-specific efflux system.
YP_001051923chromosomeCAC3572641.85%tolc%acriflavin aminoglycoside beta_lactam glycylcycline macrolide acra acrb maca macb mdte mdtf Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump.
YP_001052230chromosomeABB8013040.62%bcrc%bacitracin bcra ABC transporter system, bacitracin efflux pump.
YP_001049908chromosomeYP_00109629440.61%bcra%bacitracin bcrc ABC transporter system, bacitracin efflux pump.
YP_001051044chromosomeYP_00117612840.19%macb%macrolide maca tolc Resistance-nodulation-cell division transporter system. Multidrug resistance efflux pump. Macrolide-specific efflux system.
Below Similarity Cutoff Genes
YP_001051624chromosomeYP_00145266246.55%pbp280%penicillin The enzyme has a penicillin-insensitive transglycosylase N-terminal domain (formation of linear glycan strands) and a penicillin-sensitive transpeptidase C-terminal domain (cross-linking of the peptide subunits)
YP_001052453chromosomeYP_00129003344.86%pbp1a80%penicillin The enzyme has a penicillin-insensitive transglycosylase N-terminal domain (formation of linear glycan strands) and a penicillin-sensitive transpeptidase C-terminal domain (cross-linking of the peptide subunits)
YP_001048797chromosomeAAP4660541.19%pbp2b80%penicillin The enzyme has a penicillin-insensitive transglycosylase N-terminal domain (formation of linear glycan strands) and a penicillin-sensitive transpeptidase C-terminal domain (cross-linking of the peptide subunits)