Large-scale characterisation of the nasal microbiome redefines Staphylococcus aureus colonisation status

D Dinesh Aggarwal K Katherine L. Bellis B Beth Blane M Marcus C. de Goffau J Josef Wagner D Duncan Y. K. Ng K Kathy E. Raven P Plamena Naydenova S Stephen Kaptoge S Susan Burton R Rachel Henry C Catherine Perry M Matthew R. Walker (Department of Physics, University of Virginia 1 , Charlottesville, Virginia 22904,) C Carmel Moore C Carol Churcher S Sophia T. Girgis C Catarina Ribeiro de Sousa L Lauma Sarkane J Joe Brennan A Asha Akram S Shannon Duthie E Elisha Johnson M Mercedesz Juhasz D David Anderson S Susan Irvine A Amy McMahon L Liz Lay S Susannah J. Salter C Claire Raisen X Xiaoliang Ba M Mark Holmes A Andries J. van Tonder E Emanuele Di Angelantonio A Adam S. Butterworth J Joan A. Geoghegan J John Danesh J Julian Parkhill S Sharon J. Peacock E Ewan M. Harrison

Abstract

Abstract Staphylococcus aureus colonises the nose in humans, with individuals defined as persistent, intermittent or non-carriers. Unlike the gut microbiome, the nasal microbiome has not been studied in large numbers of people. Here, we define the nasal microbiome in ~1100 individuals from the CARRIAGE study (ISRCTN: ISRCTN10474633) and combine with S. aureus culture data. We identify seven community state types (CST), including two CSTs more common in females. Approximately 70% of those who are persistently colonised with S. aureus have a CST dominated by S. aureus , while non-carriers are distributed across the other six CSTs. Intermittent carriers are not a unique state but have microbiomes that resemble non- or persistent carriers. Persistent carriage is positively associated with S. aureus abundance, and negatively associated with three Corynebacterium species, Dolosigranulum pigrum , Staphylococcus epidermidis , and Moraxella catarrhalis ; the microbiome can be exploited with machine learning to accurately predict the persistence of S. aureus colonisation. Finally, we find that certain S. aureus lineages are better adapted to colonisation than others. Our data provides a comprehensive view of the nasal microbiome with respect to S. aureus colonisation, describing two key states: a S. aureus dominated CST in which S. aureus shapes the microbiome, and CSTs in which S. aureus is rare or absent.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 02, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (39)

D

Dinesh Aggarwal

K

Katherine L. Bellis

B

Beth Blane

M

Marcus C. de Goffau

J

Josef Wagner

D

Duncan Y. K. Ng

K

Kathy E. Raven

P

Plamena Naydenova

S

Stephen Kaptoge

S

Susan Burton

R

Rachel Henry

C

Catherine Perry

M

Matthew R. Walker

Department of Physics, University of Virginia 1 , Charlottesville, Virginia 22904,

C

Carmel Moore

C

Carol Churcher

S

Sophia T. Girgis

C

Catarina Ribeiro de Sousa

L

Lauma Sarkane

J

Joe Brennan

A

Asha Akram

S

Shannon Duthie

E

Elisha Johnson

M

Mercedesz Juhasz

D

David Anderson

S

Susan Irvine

A

Amy McMahon

L

Liz Lay

S

Susannah J. Salter

C

Claire Raisen

X

Xiaoliang Ba

M

Mark Holmes

A

Andries J. van Tonder

E

Emanuele Di Angelantonio

A

Adam S. Butterworth

J

Joan A. Geoghegan

J

John Danesh

J

Julian Parkhill

S

Sharon J. Peacock

E

Ewan M. Harrison