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Volume 14, Number 3—March 2008
Letter

Novel Relapsing Fever Spirochete in Bat Tick

James S. Gill*Comments to Author , Amy J. Ullmann†, Amanda D. Loftis‡, Tom G. Schwan§, Sandra J. Raffel§, Merry E. Schrumpf§, and Joseph Piesman†
Author affiliations: *Iowa State University, Ames, Iowa, USA; †Centers for Disease Control and Prevention, Fort Collins, Colorado, USA; ‡Centers for Disease Control and Prevention, Atlanta, Georgia, USA; §Rocky Mountain Laboratories of National Institutes of Health, Hamilton, Montana, USA;

Main Article

Figure

Phylogram comparing the novel spirochete in the bat tick Carios kelleyi with Borrelia parkeri, B. turicatae, and B. hermsii based on the concatenated partial 16S rRNA-flaB-glpQ DNA sequences in the Carios spirochete (1,992 bp total) (produced with ClustalV software from DNASTAR [Madison, WI, USA]). Scale bar represents the number of base substitutions per 100 aligned bases. GenBank accession numbers for the C. kelleyi spirochete sequences used to construct the tree are EF688575, EF688576, and EF688577. Spiro, spirochete.

Figure. Phylogram comparing the novel spirochete in the bat tick Carios kelleyi with Borrelia parkeri, B. turicatae, and B. hermsii based on the concatenated partial 16S rRNA-flaB-glpQ DNA sequences in the Carios spirochete (1,992 bp total) (produced with ClustalV software from DNASTAR [Madison, WI, USA]). Scale bar represents the number of base substitutions per 100 aligned bases. GenBank accession numbers for the C. kelleyi spirochete sequences used to construct the tree are EF688575, EF688576, and EF688577. Spiro, spirochete.

Main Article

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