Abstract

BackgroundThe genus Mycobacterium comprises different species, among them the most contagious and infectious bacteria. The members of the complex Mycobacterium tuberculosis are the most virulent microorganisms that have killed human and other mammals since millennia. Additionally, with the many different mycobacterial sequences available, there is a crucial need for the visualization and the simplification of their data. In this present study, we aim to highlight a comparative genome, proteome and phylogeny analysis between twenty-one mycobacterial (Tuberculosis and non tuberculosis) strains using a set of computational and bioinformatics tools (Pan and Core genome plotting, BLAST matrix and phylogeny analysis).ResultsConsiderably the result of pan and core genome Plotting demonstrated that less than 1250 Mycobacterium gene families are conserved across all species, and a total set of about 20,000 gene families within the Mycobacterium pan-genome of twenty one mycobacterial genomes.Viewing the BLAST matrix a high similarity was found among the species of the complex Mycobacterium tuberculosis and less conservation is found with other slow growing pathogenic mycobacteria.Phylogeny analysis based on both protein conservation, as well as rRNA clearly resolve known relationships between slow growing mycobacteria.ConclusionMycobacteria include important pathogenic species for human and animals and the Mycobacterium tuberculosis complex is the most cause of death of the humankind. The comparative genome analysis could provide a new insight for better controlling and preventing these diseases.

Highlights

  • The genus Mycobacterium comprises different species, among them the most contagious and infectious bacteria

  • Viewing the BLAST matrix a high similarity was found among the species of the complex Mycobacterium tuberculosis and less conservation is found with other slow growing pathogenic mycobacteria

  • Mycobacteria include important pathogenic species for human and animals and the Mycobacterium tuberculosis complex is the most cause of death of the humankind

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Summary

Introduction

The genus Mycobacterium comprises different species, among them the most contagious and infectious bacteria. With the many different mycobacterial sequences available, there is a crucial need for the visualization and the simplification of their data In this present study, we aim to highlight a comparative genome, proteome and phylogeny analysis between twenty-one mycobacterial (Tuberculosis and non tuberculosis) strains using a set of computational and bioinformatics tools (Pan and Core genome plotting, BLAST matrix and phylogeny analysis). Http://www.microbialinformaticsj.com/content/2/1/7 of M. bovis in those remains [6] Before this discovery many studies suggested that the common ancestor of MTBC was M. bovis [7,8], but this idea has been refuted and the genetics of the MTBC explained different clues for debating in the term of their evolution over the years. As a result of those studies, M.canettii stated to be the common ancestor that did not lack those regions, unlike M. bovis that lost several genes are present in MTB and smooth MTB [9]

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