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Volume 20, Number 11—November 2014
Letter

Drug Resistance in Salmonella enterica ser. Typhimurium Bloodstream Infection, Malawi

Nicholas A. FeaseyComments to Author , Amy K. Cain, Chisomo L. Msefula, Derek Pickard, Maaike Alaerts, Martin Aslett, Dean B. Everett, Theresa J. Allain, Gordon Dougan, Melita A. Gordon, Robert S. Heyderman, and Robert A. Kingsley
Author affiliations: Liverpool School of Tropical Medicine, Liverpool, UK (N.A. Feasey, R.S. Heyderman); Wellcome Trust Sanger Institute, Cambridge, UK (N.A. Feasey, A.K Cain, D. Pickard, M. Aslett, G. Dougan, R.A. Kingsley); University of Malawi College of Medicine, Blantyre, Malawi (N.A. Feasey, C.L. Msefula, M. Alaerts, D.B. Everett, T.J. Allain, R.S. Heyderman); University of Liverpool, Liverpool (D.B. Everett, M.A. Gordon); Institute of Food Research, Colney, Norwich, UK (R.A. Kingsley)

Main Article

Figure

Midpoint-rooted phylogenetic tree of published whole-genome sequence data from D23580-like Salmonella enterica serotype Typhimurium sequence type 313s from Malawi based on 204 informative single-nucleotide polymorphisms. A54285 and A54560, highlighted in yellow on a red branch, are indistinguishable. Scale bar indicates nucleotide substitutions per site.

Figure. Midpoint-rooted phylogenetic tree of published whole-genome sequence data from D23580-like Salmonella enterica serotype Typhimurium sequence type 313s from Malawi based on 204 informative single-nucleotide polymorphisms. A54285 and A54560, highlighted in yellow on a red branch, are indistinguishable. Scale bar indicates nucleotide substitutions per site.

Main Article

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