The developing pig respiratory microbiome harbors strains antagonistic to common respiratory pathogens

Publication date

2024-10

Authors

Vlasblom, Abel AdriaanISNI 0000000507779915
Duim, BirgittaISNI 0000000395720344
Patel, Shriram
Luiken, RoosmarijnISNI 0000000492481592
Crespo-Piazuelo, Daniel
Eckenberger, Julia
Huseyin, Chloe E
Lawlor, Peadar G
Elend, Christian
Wagenaar, J.A.ISNI 0000000388430808

Editors

Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

In the global efforts to combat antimicrobial resistance and reduce antimicrobial use in pig production, there is a continuous search for methods to prevent and/or treat infections. Within this scope, we explored the relationship between the developing piglet nasal microbiome and (zoonotic) bacterial pathogens from birth until 10 weeks of life. The nasal microbiome of 54 pigs was longitudinally studied over 16 timepoints on 9 farms in 3 European countries (Germany, Ireland, and the Netherlands) using amplicon sequencing targeting the V3-V4 16S rRNA region as well as the tuf gene for its staphylococcal discrimination power. The piglets' age, the farm, and the litter affected the nasal microbiome, with piglets' age explaining 19% of the variation in microbial composition between samples. Stabilization of the microbiome occurred around 2 weeks post-weaning. Notably, while opportunistic pathogens were ubiquitously present, they did not cause disease. The piglet nasal microbiome often carried species associated with gut, skin, or vagina, which suggests that contact with the vaginal and fecal microbiomes shapes the piglet nasal microbiome. We identified bacterial co-abundance groups of species that were present in the nasal microbiomes in all three countries over time. Anti-correlation between these species and known bacterial pathogens identified species that might be exploited for pathogen reduction. Further experimental evidence is required to confirm these findings. Overall, this study advances our understanding of the piglet nasal microbiome, the factors influencing it, and its longitudinal development, providing insights into its role in health and disease.

Keywords

colonization, microbiome, microbiome development, nasal, porcine, respiratory pathogens, Microbiology, Physiology, Biochemistry, Ecology, Evolution, Behavior and Systematics, Modelling and Simulation, Molecular Biology, Genetics, Computer Science Applications

Citation

Vlasblom, A A, Duim, B, Patel, S, Luiken, R E C, Crespo-Piazuelo, D, Eckenberger, J, Huseyin, C E, Lawlor, P G, Elend, C, Wagenaar, J A, Claesson, M J & Zomer, A L 2024, 'The developing pig respiratory microbiome harbors strains antagonistic to common respiratory pathogens', mSystems, vol. 9, no. 10, e0062624. https://doi.org/10.1128/msystems.00626-24