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Volume 25, Number 11—November 2019
Research Letter

Mutation and Diversity of Diphtheria Toxin in Corynebacterium ulcerans

Ken OtsujiComments to Author , Kazumasa Fukuda, Midori Ogawa, and Mitsumasa Saito
Author affiliations: University of Occupational and Environmental Health Japan, Kitakyushu, Japan

Main Article

Figure

Phylogenetic analysis of the 16S rRNA gene sequences (A) and amino acid sequences (B) of diphtheria toxin genes of 6 Coynebacterium ulcerans strains and 6 C. ulcerans strains. All strains had the diphtheria toxin gene; whole-genome analysis data are available from the National Center for Biotechnology Information database (https://www.ncbi.nlm.nih.gov/genome). We generated phylogenetic trees by using the maximum-likelihood method in MEGA 7.0 (https://www.megasoftware.net). 16S rRNA gene sequence

Figure. Phylogenetic analysis of the 16S rRNA gene sequences (A) and amino acid sequences (B) of diphtheria toxin genes of 6 Coynebacterium ulcerans strains and 6 C. ulcerans strains. All strains had the diphtheria toxin gene; whole-genome analysis data are available from the National Center for Biotechnology Information database (https://www.ncbi.nlm.nih.gov/genome). We generated phylogenetic trees by using the maximum-likelihood method in MEGA 7.0 (https://www.megasoftware.net). 16S rRNA gene sequences were analyzed by the Hasegawa-Kishino-Yano model with 1,000 bootstrap replications; amino acid sequences were analyzed by the Whelan and Goldman model with 100 bootstrap replications. Scale bars indicate substitutions per site.

Main Article

Page created: October 15, 2019
Page updated: October 15, 2019
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