Genomic analysis of the mesophilic Thermotogae genusMesotogareveals phylogeographic structure and genomic determinants of its distinct metabolism

Author:

Nesbø Camilla L.ORCID,Charchuk Rhianna,Pollo Stephen M. J.,Budwill Karen,Kublanov Ilya V.,Haverkamp Thomas H.A.,Foght Julia

Abstract

SummaryThe genusMesotoga, the only described mesophilicThermotogaelineage, is common in mesothermic anaerobic hydrocarbon-rich environments. Besides mesophily,Mesotogadisplays lineage-specific phenotypes, such as no or little H2production and dependence on sulfur-compound reduction, which may influence its ecological role. We used comparative genomics of 18Mesotogastrains (pairwise 16S rRNA identity > 99%) and a transcriptome ofM. primato investigate how life at moderate temperatures affects phylogeography and to interrogate the genomic features of its lineage-specific metabolism. We propose thatMesotogaaccomplish H2oxidation and thiosulfate reduction using a sulfide dehydrogenase and a hydrogenase-complex and that a pyruvate:ferredoxin oxidoreductase acquired fromClostridiais responsible for oxidizing acetate. Phylogenetic analysis revealed three distinctMesotogalineages (89.6-99.9% average nucleotide identity [ANI] within lineages, 79.3-87.6% ANI between lineages) having different geographic distribution patterns and high levels of intra-lineage recombination but little geneflow between lineages. Including data from metagenomes, phylogeographic patterns suggest that geographical separation historically has been more important forMesotogathan hyperthermophilicThermotogaand we hypothesize that distribution ofMesotogais constrained by their anaerobic lifestyle. Our data also suggest that recent anthropogenic activities and environments (e.g., wastewater treatment, oil exploration) have expandedMesotogahabitats and dispersal capabilities.Originality-Significance StatementThis study comprises one of the first whole-genome-based phylogeographic analyses of anaerobic mesophiles, and our data suggest that such microbes are more restricted by geography than are thermophiles (and mesophilic aerobes). This is likely to be a general trait for similar anaerobic organisms – and therefore broadly relevant to and testable in other environments. Moreover,Mesotogabacteria are part of the largely understudied subsurface ecosystem that has relatively recently been recognized as a new and important biosphere. Understanding the forces responsible for the distribution of organisms in the subsurface, as well as the identification of genes responsible forMesotoga’s distinct metabolism, will contribute to the understanding of these communities.

Publisher

Cold Spring Harbor Laboratory

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