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Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
Seasonal variations of microbial assemblage in fine particulate matter from a nursery pig house
Qian Tang1, Kai Huang1, Junze Liu1
1College of Animal Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.
Abstract:
The microorganisms contained in PM2.5 from livestock houses can spread over long distances through airborne transmission. As such, the potential bacterial pathogens and fungal allergens within can pose a formidable threat to nearby residents' health and the overall environment. However, little is known about the microbial assemblage contained in PM2.5 from pig houses. In this study, 16S and 18S rRNA gene sequencing was employed to analyze the bacterial and fungal assemblage contained in PM2.5 from a nursery pig house across four seasons, respectively. The results showed that alpha diversity was higher in summer and autumn compared to the spring and winter. The bacterial and fungal assemblage varied according to season. At the phylum level, the dominant bacteria and fungi were Firmicutes and Basidiomycota, respectively, across the four seasons. At the genus level, a total of five potential bacterial pathogen and 20 potential fungal allergen genera were identified across the samples. The most abundant bacterial pathogen and fungal allergen genera were observed in summer and autumn, respectively, but neither had a significant correlation with PM2.5 concentration. Moreover, microbial diversity and the relative abundance of fungal allergen genera were positively correlated with temperature and relative humidity. It can be concluded that microbial diversity and assemblage varied significantly among the seasons in a nursery pig house, and this can be useful in exploring the potential risks of PM2.5 from pig houses across all four seasons.
Insights
Airborne PM2.5 from pig houses harbors diverse bacteria and fungi, with seasonal variations impacting potential health risks. Microbial communities and allergen levels fluctuate with temperature and humidity.
Area of Science:
- Environmental microbiology
- Air quality research
- Public health
Background:
- Particulate Matter (PM2.5) from livestock operations can transmit microorganisms.
- Airborne microbial communities in PM2.5 pose health and environmental risks.
- Limited data exists on microbial assemblages in PM2.5 from pig houses.
Purpose of the Study:
- To characterize seasonal bacterial and fungal communities in PM2.5 from a nursery pig house.
- To identify potential bacterial pathogens and fungal allergens within this PM2.5.
- To assess the influence of season, temperature, and humidity on microbial diversity and abundance.
Main Methods:
- 16S and 18S rRNA gene sequencing for bacterial and fungal analysis.
- Seasonal sampling of PM2.5 from a nursery piggery.
- Analysis of microbial diversity, assemblage, and correlation with environmental factors.
Main Results:
- Microbial diversity varied seasonally, higher in summer and autumn.
- Dominant bacteria were Firmicutes; dominant fungi were Basidiomycota.
- Five bacterial pathogen and 20 fungal allergen genera were identified, abundant in summer/autumn.
- Microbial diversity and fungal allergens correlated positively with temperature and humidity.
Conclusions:
- Seasonal variations significantly impact microbial diversity and assemblage in pig house PM2.5.
- Potential bacterial pathogens and fungal allergens are present year-round.
- Environmental factors like temperature and humidity influence microbial communities, informing risk assessment.
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