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1.
In silico analysis of phages-nanogen interplay : human gastrointestinal tract microbiota dynamics and clinical perspectives
Ihab Malat, Michel Drancourt, B. Henrissat, Ghiles Grine, 2026, izvirni znanstveni članek

Opis: Digestive tract nanoarchaea Nanopusillus massiliensis and Candidatus Nanopusillus phoceensis form symbiotic nanogens with residing methanogens Methanobrevibacter oralis and Methanobrevibacter smithii, preventing their translocation by unknown mechanisms. We found that 0.45% of M. oralis YH nanogen genome encoding 18 proteins and 1.12% of M. smithii KB11 nanogen genome encoding 32 proteins were of Caudoviricetes and NAV1 origin. In block encoded glycosyltransferase and S-adenosyl-methionine-dependent methyltransferase confer nanogens (but not methanogens) a capacity in cell wall glycosylation. This hypothetical deduced cell wall glycosylation could prevent pseudomurein endo-isopeptidase-mediated interactions of nanogens with digestive tract virome and further nanogen translocation. These observations renew understanding of methanogen and nanogen-associated physiology and pathologies in the digestive tract and beyond.
Ključne besede: Archaeal virome, Methanogens, CRISPR-Spacers, Caudoviricetes, Human microbiome, Microbial diversity, Mobile genetic elements, Nanoarchaea, Nanogen, Methanobrevibacter smithii, Methanobrevibacter oralis
Objavljeno v RUP: 18.06.2026; Ogledov: 242; Prenosov: 8
.pdf Celotno besedilo (4,42 MB)
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2.
Methanobrevibacter smithii strain U29 whole genome sequence delineates M. smithii intermediate cell variants
Ihab Malat, Vincent Bossi, Michel Drancourt, Ghiles Grine, Raymond Ruimy, 2025, izvirni znanstveni članek

Opis: Background Methanobrevibacter smithii (M. smithii), the predominant methanogen in the human digestive tract, plays a key role in methane production. Despite its importance, the genomic diversity of M. smithii is poorly characterised, especially in extra-digestive sites such as the urinary and respiratory tracts, and the blood. Understanding this diversity would help unravel its potential role in human health and diseases. Results We report the genome of M. smithii strain U29, isolated from urine, expanding the known diversity of the species. The M. smithii U29 genome (scaffold level; 1̵822‒124-bp, 1745 protein-coding sequences) lacks Candidatus Nanopusillus sequences, unlike digestive tract strains. Comparative analysis has revealed a high similarity (99.86% ANI) with the reference M. smithii strain ATCC 35,061, although U29 contains 71 unique coding sequences including 12/71 (13 200-bp; 69% of the total extra-material size) with demonstrated Siphoviridae viral ancestry. Accordingly, M. smithii U29 has been identified as an intermediate M. smithii cell variant, exhibiting genomic traits potentially conferring adaptability to the urinary tract. Conclusion This study enhances our understanding of M. smithii genomic diversity and highlights the presence of viral sequences in the urinary tract M. smithii strain U29. These findings open up a hypothesis that viral integration may play a role in M. smithii mucosae colonisation and dynamics, underscoring the need for further investigations into the mechanisms underlying its tissue translocation and potential health implications.
Ključne besede: Methanobrevibacter smithii, Archaea, urinary tract, genome, cell variants
Objavljeno v RUP: 18.12.2025; Ogledov: 699; Prenosov: 2
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