Environmental metagenomics enhances detection of circulating viruses from live poultry markets in Cambodia

P Peter Cronin J Jurre Y. Siegers (Institut Pasteur du Cambodge, Phnom Penh, Cambodia) V Vireak Heang S Songha Tok (Institut Pasteur du Cambodge, Phnom Penh, Cambodia) S Sarath Sin (Institut Pasteur du Cambodge, Phnom Penh, Cambodia) B Ben Sievers V Victor Omondi S Sithun Nuon K Kimtuo Chhel J Janin Nouhin V Vutha Chim B Bunnary Seng (National Animal Health and Production Research Institute, Phnom Penh, Cambodia) M Makara Hak (Food and Agriculture Organization of the United Nations (FAO) Country Office, Phnom Penh, Cambodia) S Sorn San S Sothyra Tum F Filip F. Claes (FAO Emergency Center for Transboundary Animal Diseases, Bangkok, Thailand) C Cadhla Firth Y Yvonne C. F. Su G Gavin J. D. Smith E Erik A. Karlsson (Institut Pasteur du Cambodge, Phnom Penh, Cambodia)

Abstract

Abstract Environmental surveillance has emerged as a pivotal strategy for early detection of pathogens that pose a threat to humans. In Asia, live-bird markets (LBMs) are key human-animal interfaces for zoonotic virus transmission. Traditional sampling strategies are time-consuming, expensive and carry significant biosafety risks. Here, we assess the performance of metagenomics on environmental samples (ES) versus traditional poultry swabs for detecting viral pathogens in two Cambodian LBMs between January 2022 and April 2023. ES, including air (n = 35), cage swabs (n = 17), carcass wash water (n = 17) and drinking water (n = 9) are collected alongside oropharyngeal and cloacal swabs from chickens (n = 30) and ducks (n = 29). ES is sensitive in detecting 40 viruses from pathogen families including Orthomyxoviridae and Coronaviridae . Air samples capture the greatest diversity of poultry viruses. Viral contigs from ES show high sequence identity to poultry swab contigs when aligned to the same gene. We show ES outperforms poultry samples in detecting the highly pathogenic influenza A/H5N1, including clades 2.3.4.4b and 2.3.2.1c, which are found in the environment but are missed by poultry swabs. Our findings show metagenomics on ES replicates traditional surveillance, offering broader coverage and improved pathogen detection. This approach could be pivotal for mitigating zoonotic spillover and enhancing pandemic preparedness.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 12, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (20)

P

Peter Cronin

J

Jurre Y. Siegers

Institut Pasteur du Cambodge, Phnom Penh, Cambodia

V

Vireak Heang

S

Songha Tok

Institut Pasteur du Cambodge, Phnom Penh, Cambodia

S

Sarath Sin

Institut Pasteur du Cambodge, Phnom Penh, Cambodia

B

Ben Sievers

V

Victor Omondi

S

Sithun Nuon

K

Kimtuo Chhel

J

Janin Nouhin

V

Vutha Chim

B

Bunnary Seng

National Animal Health and Production Research Institute, Phnom Penh, Cambodia

M

Makara Hak

Food and Agriculture Organization of the United Nations (FAO) Country Office, Phnom Penh, Cambodia

S

Sorn San

S

Sothyra Tum

F

Filip F. Claes

FAO Emergency Center for Transboundary Animal Diseases, Bangkok, Thailand

C

Cadhla Firth

Y

Yvonne C. F. Su

G

Gavin J. D. Smith

E

Erik A. Karlsson

Institut Pasteur du Cambodge, Phnom Penh, Cambodia