Large-scale capsid-mediated mobilisation of bacterial genomic DNA in the gut microbiome

T Tatiana Borodovich C Colin Buttimer J Jason S. Wilson P Pavol Bardy M Muireann Smith C Conor Hill E Ekaterina V. Khokhlova M Matthew Harte B Bianca Govi P Paul C. M. Fogg C Colin Hill A Andrey N. Shkoporov

Abstract

Abstract Transducing bacteriophage and gene transfer agents (GTAs) are constrained by the structural limits of their capsids, which determine the maximum length of host DNA they can package. Here, we utilise nanopore sequencing of intact, capsid-packaged DNA molecules to recover full-length reads, thereby enabling the precise identification of encapsidated DNA and its bacterial origin. This approach was validated using well-characterised transducing systems and subsequently applied to faecal viromes from three healthy donors. Our analysis reveals that bacterial DNA encapsidation is widespread in the gut microbiome, with up to 5.4% of capsid-packaged DNA derived from bacterial genomes. Generalised transduction and GTA activity were especially prominent in Oscillospiraceae and Ruminococcaceae (e.g. Faecalibacterium spp.), while lateral transduction was observed in Bacteroides . Additionally, we detected induction of prophages in several highly prevalent gut bacterial taxa. These findings reveal the prevalence of bacterial DNA packaging via virus or virus-like capsids in the human gut, shedding light on the diverse mechanisms that drive this process.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 27, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

T

Tatiana Borodovich

C

Colin Buttimer

J

Jason S. Wilson

P

Pavol Bardy

M

Muireann Smith

C

Conor Hill

E

Ekaterina V. Khokhlova

M

Matthew Harte

B

Bianca Govi

P

Paul C. M. Fogg

C

Colin Hill

A

Andrey N. Shkoporov