Human milk oligosaccharide mediates mutualism between Escherichia coli and Bifidobacterium bifidum

D David Seki S Shaul Pollak M Magdalena Kujawska R Raymond Kiu A Antia Acuna-Gonzalez L Lucy I. Crouch C Cassie R. Bakshani P Peter T. Chivers M Monique Mommers N Nils van Best J John Penders L Lindsay J. Hall

Abstract

Abstract Infant gut microbiota development involves frequent colonization by Enterobacteriaceae , particularly Escherichia coli , yet their ecological role in healthy infants is unclear. Here, we analyse longitudinal stool samples from healthy, term-born, breastfed infants (n = 41) and related mothers (n = 30) using shotgun metagenomics and novel computational approaches. Strain-resolved profiling indicates that Bifidobacterium species are frequently shared within families, whereas E. coli derive from external sources, but often persist within individuals. Despite differing ecological strategies, these genera co-exist and share evolutionary adaptations related to lactose acquisition in the infant gut. In vitro, we demonstrate that interactions between E. coli and Bifidobacterium bifidum are mutualistic in co-culture, where E. coli supplies cysteine to its auxotrophic partner, facilitating cooperative degradation of 2′-fucosyllactose, the predominant human milk oligosaccharide. In turn, the liberated monosaccharides sustain E. coli growth, highlighting a cooperative cross-feeding interaction that may contribute to regulating E. coli abundance within the infant host.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 22, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

D

David Seki

S

Shaul Pollak

M

Magdalena Kujawska

R

Raymond Kiu

A

Antia Acuna-Gonzalez

L

Lucy I. Crouch

C

Cassie R. Bakshani

P

Peter T. Chivers

M

Monique Mommers

N

Nils van Best

J

John Penders

L

Lindsay J. Hall