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Microbial species and biodiversity in settling dust within and between pig farms
John Kerr White1, Jeppe Lund Nielsen2, Anne Mette Madsen3
1Department of Chemistry and Bioscience, Aalborg University, Fredrik Bajers Vej 7 H, 9220 Aalborg Ø, Denmark; The National Research Centre for the Working Environment, Lersø Parkallé 105, 2100 Copenhagen Ø, Denmark.
Abstract:
The airborne fungal and bacterial species present in pig farm dust have not been well characterised even though these bioaerosols are known to cause inflammation and other airway maladies. In this study, the microbial species and composition in airborne dust within and between pig farms were investigated. Passively sedimenting dust from six pig farms were collected using electrostatic dust collectors. The bacterial and fungal species were identified using matrix-assisted laser desorption-ionisation time-of-flight mass spectrometry (MALDI-TOF MS) and next generation sequencing (NGS). Dust samples taken within the same stable section revealed high resemblance and stability. Constrained statistical analysis of the microbial community compositions indicated that the types of stable did not appear to have a great effect on the bacterial and fungal β-diversity. In contrast to this, the farm from which samples were taken appeared to have the greatest effect on the bacterial β-diversity, but this trend was not observed for the fungal β-diversity. The most common bacteria and fungi according to NGS data were anaerobes typically associated with the pig intestinal tract and yeasts respectively. Bacterial sedimentation varied at a rate between 103 and 109 CFU/m2/day, with the most common species after aerobic incubation being Aerococcus viridans and Staphylococcus equorum, while Clostridium perfringens and Staphylococcus simulans were the most common species after anaerobic incubation. A total of 28 different species of bacteria and fungi were classifiable as pathogens. In conclusion, the biodiversity in pig farm dust shows a high diversity of bacterial species. However, samples from the same stable section resembled each other, but also different sections within the same farm also resembled each other, thus indicating a high degree of community stability in the dust source. In regards to fungal identification, the biodiversity was observed to be similar between samples from different stable sections and farms, indicating a higher degree of similarities in the mycobiomes found across pig farms studied.
Insights
Airborne microbes in pig farm dust were analyzed. Bacterial communities were stable within farms, while fungal communities showed similarities across different farms and stables.
Area of Science:
- Environmental microbiology
- Agricultural science
- Public health
Background:
- Airborne fungal and bacterial bioaerosols in pig farm dust are linked to respiratory issues.
- Limited characterization of microbial species and composition in pig farm dust.
Purpose of the Study:
- To investigate the microbial species and composition in airborne dust within and between pig farms.
- To understand the stability and diversity of bacterial and fungal communities in pig farm environments.
Main Methods:
- Collection of passively sedimenting dust from six pig farms using electrostatic dust collectors.
- Identification of bacterial and fungal species using matrix-assisted laser desorption-ionisation time-of-flight mass spectrometry (MALDI-TOF MS) and next-generation sequencing (NGS).
- Analysis of microbial community composition and beta-diversity.
Main Results:
- Dust samples from the same stable section showed high resemblance and stability.
- Farm origin significantly impacted bacterial beta-diversity, but not fungal beta-diversity.
- Common bacteria included anaerobes from the pig intestinal tract; common fungi were yeasts. Pathogenic species were identified.
- Bacterial sedimentation rates ranged from 10^3 to 10^9 CFU/m^2/day.
Conclusions:
- Pig farm dust harbors diverse bacterial species with high community stability within the dust source.
- Fungal biodiversity showed similarities across different stable sections and farms, indicating consistent mycobiomes.
- Further research into these bioaerosols is warranted due to potential health implications.
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