Comparative Genomics Shows Differences in the Electron Transport and Carbon Metabolic Pathways ofMycobacterium africanumrelative toMycobacterium tuberculosisand suggests an adaptation to low oxygen tension

Author:

Ofori-Anyinam Boatema,Riley Abi Janet,Jobarteh Tijan,Gitteh Ensa,Sarr Binta,Faal-Jawara Tutty Isatou,Rigouts Leen,Senghore Madikay,Kehinde Aderemi,Onyejepu Nneka,Antonio Martin,Jong Bouke C. de,Gehre Florian,Meehan Conor J.ORCID

Abstract

SummaryThe geographically restrictedMycobacterium africanumlineages (MAF) are primarily found in West Africa, where they account for a significant proportion of tuberculosis. Despite this phenomenon, little is known about the co-evolution of these ancient lineages with West Africans. MAF andM. tuberculosissensu stricto lineages (MTB) differ in their clinical, in vitro and in vivo characteristics for reasons not fully understood. Therefore, we compared genomes of 289 MAF and 205 MTB clinical isolates from the 6 main human-adaptedM. tuberculosiscomplex lineages, for mutations in their Electron Transport Chain and Central Carbon Metabolic pathway in order to explain these metabolic differences. Furthermore, we determined, in silico, whether each mutation could affect the function of genes encoding enzymes in these pathways.We found more mutations with the potential to affect enzymes in these pathways in MAF lineages compared to MTB lineages. We also found that similar mutations occurred in these pathways between MAF and some MTB lineages.Generally, our findings show further differences between MAF and MTB lineages that may have contributed to the MAF clinical and growth phenotype and indicate potential adaptation of MAF lineages to a distinct ecological niche, which we suggest includes areas characterized by low oxygen tension.

Publisher

Cold Spring Harbor Laboratory

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