Resequencing of Treponema pallidum ssp. pallidum strains Nichols and SS14: correction of sequencing errors resulted in increased separation of syphilis treponeme subclusters

梅毒螺旋体亚种菌株 Nichols 和 SS14 的重新测序:测序错误的纠正导致梅毒螺旋体亚群分离增加

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作者:Helena Pětrošová, Petra Pospíšilová, Michal Strouhal, Darina Čejková, Marie Zobaníková, Lenka Mikalová, Erica Sodergren, George M Weinstock, David Šmajs

Background

Treponema pallidum ssp. pallidum (TPA), the causative agent of syphilis, is a highly clonal bacterium showing minimal genetic variability in the genome sequence of individual strains. Nevertheless, genetically characterized syphilis strains can be clearly divided into two groups, Nichols-like strains and SS14-like strains. TPA Nichols and SS14 strains were completely sequenced in 1998 and 2008, respectively. Since publication of their complete genome sequences, a number of sequencing errors in each genome have been reported. Therefore, we have resequenced TPA Nichols and SS14 strains using next-generation sequencing techniques. Methodology/principal findings: The genomes of TPA strains Nichols and SS14 were resequenced using the 454 and Illumina sequencing

Significance

We identified errors in 11.5% of all annotated genes and, after correction, we found a significant impact on the predicted proteomes of both Nichols and SS14 strains. Corrections of these errors resulted in protein elongations, truncations, fusions and indels in more than 11% of all annotated proteins. Moreover, it became more evident that syphilis is caused by treponemes belonging to two separate genetic subclusters.

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