Insights on evolution of virulence and resistance from the complete genome analysis of an early methicillin-resistant Staphylococcus aureus strain and a biofilm-producing methicillin-resistant Staphylococcus epidermidis strain.

@article{Gill2005InsightsOE,
  title={Insights on evolution of virulence and resistance from the complete genome analysis of an early methicillin-resistant Staphylococcus aureus strain and a biofilm-producing methicillin-resistant Staphylococcus epidermidis strain.},
  author={Steven R Gill and Derrick E. Fouts and Gordon L. Archer and Emmanuel F. Mongodin and Robert T. Deboy and Jacques Ravel and Ian T. Paulsen and James F. Kolonay and Lauren M. Brinkac and Mauren Beanan and Robert J. Dodson and Sean C. Daugherty and Ramana Madupu and Samuel V. Angiuoli and Alastair Durkin and Daniel H. Haft and Jessica Vamathevan and Hoda M. Khouri and Terry R. Utterback and Changhan Lee and Galin Dimitrov and Lingxia Jiang and Haiying Qin and Janice Weidman and Kevin Tran and Kathy Kang and Ioana R. Hance and Karen E. Nelson and Claire M. Fraser},
  journal={Journal of bacteriology},
  year={2005},
  volume={187 7},
  pages={
          2426-38
        }
}
Staphylococcus aureus is an opportunistic pathogen and the major causative agent of numerous hospital- and community-acquired infections. Staphylococcus epidermidis has emerged as a causative agent of infections often associated with implanted medical devices. We have sequenced the approximately 2.8-Mb genome of S. aureus COL, an early methicillin-resistant isolate, and the approximately 2.6-Mb genome of S. epidermidis RP62a, a methicillin-resistant biofilm isolate. Comparative analysis of… CONTINUE READING
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