Airborne Movement of Antibiotic Resistance Genes Between Livestock Stables and Farmers’ Homes

Publication date

2026-04

Authors

Amin, Hesham
Šantl-Temkiv, Tina
Finster, Kai
Schlünssen, Vivi
Sigsgaard, Torben
Wouters, I. M.ORCID 0000-0001-7834-9390ISNI 0000000389429008
Sørensen, Martin Tang
Malinovschi, Andrei
Thorarinsdottir, Hulda
Bertelsen, Randi J.

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Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Antibiotic resistance genes (ARGs) are prevalent in livestock environments due to antimicrobial use, yet their airborne dispersal into human-occupied indoor spaces remains poorly characterized. We investigated whether airborne ARGs disperse from livestock stables into farmers’ homes and surrounding outdoor environments. Electrostatic dust collectors were deployed in paired pig and cow stables and their associated homes in Jutland, Denmark, to collect settled airborne dust. Pooled samples were analyzed using shotgun metagenomic sequencing. ARG dispersal patterns were assessed using FEAST source tracking and ecological similarity metrics, including shared ARG ratios and Jaccard indices. Pig production systems exhibited higher antibiotic use and stronger resistome continuity with farmers’ homes than cow systems, reflected by greater FEAST contributions (P = 0.029) and Jaccard similarity (P = 0.029). Beta-diversity analysis supported higher compositional similarity between pig stables and homes (PERMANOVA R2 = 0.23, p = 0.052), whereas cow environments showed greater divergence (R2 = 0.41, P = 0.035). Across environments, tetracycline, macrolide–lincosamide–streptogramin B, and aminoglycoside resistance genes dominated, consistent with livestock-specific antibiotic use patterns. Supplementary indoor–outdoor comparisons across cow, pig, and chicken stables (from an independent 2024 sampling campaign not directly comparable to the 2008 EDC-based survey) revealed contrasting dispersal dynamics, with higher bacterial species spillover from cow stables but stronger ARG overlap from pig stables. Collectively, these findings are consistent with airborne ARG connectivity across occupational and environmental interfaces and support consideration of air as a potential pathway in One Health AMR surveillance.

Keywords

airborne ARGs, environmental resistome, livestock AMR transmission, metagenomics livestock dust, One Health, Microbiology, Microbiology (medical), Virology, SDG 3 - Good Health and Well-being

Citation

Amin, H, Šantl-Temkiv, T, Finster, K, Schlünssen, V, Sigsgaard, T, Wouters, I M, Sørensen, M T, Malinovschi, A, Thorarinsdottir, H & Bertelsen, R J 2026, 'Airborne Movement of Antibiotic Resistance Genes Between Livestock Stables and Farmers’ Homes', Microorganisms, vol. 14, no. 4, 855. https://doi.org/10.3390/microorganisms14040855