Insights into ancestry and adaptive evolution of the Mycobacterium tuberculosis complex from analysis of the emerging pathogen Mycobacterium riyadhense
Guan, Q.; Garbati, M.; Mfarrej, S.; AlMutairi, T.; Smyth, A.; Singh, A.; Fagbo, S.; Browne, J.; urRahman, M. A.; Alruwaili, A.; Hoosen, A.; Nakajima, C.; Suzuki, Y.; Bhatt, A.; Gordon, S.; AlAsmari, F.; Pain, A.
Show abstract
Current evolutionary scenarios posit the emergence of Mycobacterium tuberculosis, the deadliest bacterial pathogen for humans globally, from an environmental saprophyte through a cumulative process of genome adaptation. Mycobacterium riyadhense is a novel non-tuberculous mycobacterium (NTM) that is being increasingly isolated from human clinical cases with tuberculosis (TB)-like symptoms in various parts of the world. We provide evidence here that M. riyadhense is likely a missing link in our understanding of the evolution of M. tuberculosis. To elucidate the genomic hallmarks that define the evolutionary relationship between M. riyadhense and other mycobacterial species, including members of the Mycobacterium tuberculosis complex (MTBC), eight clinical isolates of M. riyadhense were sequenced and analyzed. We show, among other features, that M. riyadhense shares a large number of conserved orthologues with the MTBC; contains linear and circular plasmids carrying type IV and type VII secretion systems; and shows expansion of toxin/anti-toxin pairs. We conclude that M. riyadhense is an emerging mycobacterial pathogen that shares a common ancestor with members of the MTBC and that can serve as an experimental model to study the evolution and pathogenesis of tubercle bacilli.\n\nAuthor summaryMycobacterium tuberculosis is one of the most prolific infectious killers in humans and is a member of the Mycobacterium tuberculosis complex (MTBC) - a group of genetically related pathogens that cause tuberculosis (TB) in mammalian species. It is postulated that MTBC has evolved from a free-living environmental ancestor into an obligate pathogen. In this evolutionary context, a comprehensive understanding of the genomic hallmarks of the free-living environmental ancestors of the MTBC is of particular scientific interest for better understanding of the evolution of the MTBC. Mycobacterium riyadhense is a novel environmental mycobacterium, first isolated in 2009 in a hospital in Riyadh, that is increasingly being isolated from clinical cases with typical tuberculosis (TB)-like symptoms in humans. In this study, we report the characterization of eight clinical isolates of M. riyadhense, compare their genomes to members of the MTBC, and provide a comprehensive insight into the adaptive changes associated with the evolution of the MTBC from environmental mycobacteria. We show that M. riyadhense is one of the closest known environmental mycobacteria related to the MTBC, and we provide several lines of molecular evidence that M. riyadhense is likely the missing link in the evolution of M. tuberculosis. It shares a common ancestor with members of the MTBC that have evolved through a process of genome reduction, expansion of toxin/antitoxin (T/A) gene systems, and ultimately host adaptation.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Global distribution and evolution of Mycobacterium bovis lineages 96%
- High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny 95%
- Composition and Diversity of CRISPR-Cas13a systems in the genus Leptotrichia 94%
Similar papers in this journal
- The Mycobacterium tuberculosis complex pangenome is small and shaped by sub-lineage-specific regions of difference 96%
- Soluble immune mediators orchestrate protective in vitro granulomatous responses across Mycobacterium tuberculosis complex lineages 94%
- Cell-autonomous targeting of arabinogalactan by host immune factors inhibits mycobacterial growth 93%
Similar papers in this journal
- Large contribution of repeats to genetic variation in a transmission cluster of Mycobacterium tuberculosis 95%
- Phylogenomic and genomic analysis reveals unique and shared genetic signatures of Mycobacterium kansasii complex species 94%
- Kill and cure: genomic phylogeny and bioactivity of a diverse collection of Burkholderia gladioli bacteria capable of pathogenic and beneficial lifestyles 94%
Similar papers in this journal
- Defining the genes required for survival of Mycobacterium bovis in the bovine host offers novel insights into the genetic basis of survival of pathogenic mycobacteria 94%
- Horizontal gene transfer to a defensive symbiont with a reduced genome amongst a multipartite beetle microbiome 94%
- Examination of genome-wide ortholog variation in clinical and environmental isolates of the fungal pathogen Aspergillus fumigatus 94%
Similar papers in this journal
- Evaluation of the role of whiB6 and kdpDE in the dominant multidrug resistant clone Mycobacterium tuberculosis B0/W148 95%
- The Mycobacterium tuberculosis sRNA F6 modifies expression of essential chaperonins, GroEL2 and GroES 94%
- Genomic and phenotypic analysis of COVID-19-associated pulmonary aspergillosis isolates of Aspergillus fumigatus 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.