Identification of Size-segregated Bioaerosol Community and Pathogenic Bacteria in a Tunnel-ventilated Layer House: Effect of Manure Removal

Bioaerosols in commercial livestock barns threaten the health of animals and humans. To better understand microbial dynamics in the layer house, we characterized and compared the size-segregated bacterial community of the manure cleaning process in a typical commercial laying hen house equipped with...

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Published inWater, air, and soil pollution Vol. 233; no. 3
Main Authors Dai, Xiaorong, Wang, Xiaoshuai, Wang, Ailun, Bao, Peng, Wang-Li, Lingjuan, Xiao, Hang, Wang, Kaiying
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.03.2022
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Springer Nature B.V
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Abstract Bioaerosols in commercial livestock barns threaten the health of animals and humans. To better understand microbial dynamics in the layer house, we characterized and compared the size-segregated bacterial community of the manure cleaning process in a typical commercial laying hen house equipped with an H-type manure removal belt and negative pressure tunnel ventilation system in Ningbo, China by using full-length 16S rRNA gene sequences. The third-generation single-molecule real-time sequencing (SMRT Cell) based on the Pacific BioSciences (PacBio) RS II platform was performed for capturing sequence information of the microbial aerosol samples. The results showed that the concentrations of total airborne bacteria in the layer house were in the range of 0.35 × 10 3  CFU/m 3 to 0.70 × 10 3  CFU/m 3 , 2.76 × 10 3  CFU/m 3 to 2.88 × 10 3  CFU/m 3 , and 2.10 × 10 3  CFU/m 3 to 2.54 × 10 3  CFU/m 3 before, during, and after manure removal, respectively. The airborne bacteria concentrations were significantly increased by the manure removal process. According to LEfSe analysis results, g_Escherichia_Shigella , s_Escherichia_coli , o_Enterobacteriales , f_Enterobacteriaceae could be suggested as biomarkers during manure removal. The dominant bacterial phyla in the layer house monitored were Proteobacteria , Bacteroidetes , Firmicutes , and genera were Pseudomonas , Escherichia-Shigella , Comamonas . The predominant potential pathogenic bacteria in the layer house were Pseudomonas , Escherichia , Enterobacter , and Acinetobacter .
AbstractList Bioaerosols in commercial livestock barns threaten the health of animals and humans. To better understand microbial dynamics in the layer house, we characterized and compared the size-segregated bacterial community of the manure cleaning process in a typical commercial laying hen house equipped with an H-type manure removal belt and negative pressure tunnel ventilation system in Ningbo, China by using full-length 16S rRNA gene sequences. The third-generation single-molecule real-time sequencing (SMRT Cell) based on the Pacific BioSciences (PacBio) RS II platform was performed for capturing sequence information of the microbial aerosol samples. The results showed that the concentrations of total airborne bacteria in the layer house were in the range of 0.35 × 103 CFU/m3 to 0.70 × 103 CFU/m3, 2.76 × 103 CFU/m3 to 2.88 × 103 CFU/m3, and 2.10 × 103 CFU/m3 to 2.54 × 103 CFU/m3 before, during, and after manure removal, respectively. The airborne bacteria concentrations were significantly increased by the manure removal process. According to LEfSe analysis results, g_Escherichia_Shigella, s_Escherichia_coli, o_Enterobacteriales, f_Enterobacteriaceae could be suggested as biomarkers during manure removal. The dominant bacterial phyla in the layer house monitored were Proteobacteria, Bacteroidetes, Firmicutes, and genera were Pseudomonas, Escherichia-Shigella, Comamonas. The predominant potential pathogenic bacteria in the layer house were Pseudomonas, Escherichia, Enterobacter, and Acinetobacter.
Bioaerosols in commercial livestock barns threaten the health of animals and humans. To better understand microbial dynamics in the layer house, we characterized and compared the size-segregated bacterial community of the manure cleaning process in a typical commercial laying hen house equipped with an H-type manure removal belt and negative pressure tunnel ventilation system in Ningbo, China by using full-length 16S rRNA gene sequences. The third-generation single-molecule real-time sequencing (SMRT Cell) based on the Pacific BioSciences (PacBio) RS II platform was performed for capturing sequence information of the microbial aerosol samples. The results showed that the concentrations of total airborne bacteria in the layer house were in the range of 0.35 × 10 3  CFU/m 3 to 0.70 × 10 3  CFU/m 3 , 2.76 × 10 3  CFU/m 3 to 2.88 × 10 3  CFU/m 3 , and 2.10 × 10 3  CFU/m 3 to 2.54 × 10 3  CFU/m 3 before, during, and after manure removal, respectively. The airborne bacteria concentrations were significantly increased by the manure removal process. According to LEfSe analysis results, g_Escherichia_Shigella , s_Escherichia_coli , o_Enterobacteriales , f_Enterobacteriaceae could be suggested as biomarkers during manure removal. The dominant bacterial phyla in the layer house monitored were Proteobacteria , Bacteroidetes , Firmicutes , and genera were Pseudomonas , Escherichia-Shigella , Comamonas . The predominant potential pathogenic bacteria in the layer house were Pseudomonas , Escherichia , Enterobacter , and Acinetobacter .
Bioaerosols in commercial livestock barns threaten the health of animals and humans. To better understand microbial dynamics in the layer house, we characterized and compared the size-segregated bacterial community of the manure cleaning process in a typical commercial laying hen house equipped with an H-type manure removal belt and negative pressure tunnel ventilation system in Ningbo, China by using full-length 16S rRNA gene sequences. The third-generation single-molecule real-time sequencing (SMRT Cell) based on the Pacific BioSciences (PacBio) RS II platform was performed for capturing sequence information of the microbial aerosol samples. The results showed that the concentrations of total airborne bacteria in the layer house were in the range of 0.35 x 10.sup.3 CFU/m.sup.3 to 0.70 x 10.sup.3 CFU/m.sup.3, 2.76 x 10.sup.3 CFU/m.sup.3 to 2.88 x 10.sup.3 CFU/m.sup.3, and 2.10 x 10.sup.3 CFU/m.sup.3 to 2.54 x 10.sup.3 CFU/m.sup.3 before, during, and after manure removal, respectively. The airborne bacteria concentrations were significantly increased by the manure removal process. According to LEfSe analysis results, g_Escherichia_Shigella, s_Escherichia_coli, o_Enterobacteriales, f_Enterobacteriaceae could be suggested as biomarkers during manure removal. The dominant bacterial phyla in the layer house monitored were Proteobacteria, Bacteroidetes, Firmicutes, and genera were Pseudomonas, Escherichia-Shigella, Comamonas. The predominant potential pathogenic bacteria in the layer house were Pseudomonas, Escherichia, Enterobacter, and Acinetobacter.
ArticleNumber 85
Audience Academic
Author Dai, Xiaorong
Wang-Li, Lingjuan
Xiao, Hang
Wang, Xiaoshuai
Wang, Ailun
Bao, Peng
Wang, Kaiying
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Keywords Microbial diversity
SMRT sequencing
Laying hen house
Bioaerosol
Potential pathogenic bacteria
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Snippet Bioaerosols in commercial livestock barns threaten the health of animals and humans. To better understand microbial dynamics in the layer house, we...
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springer
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SubjectTerms Airborne bacteria
Airborne microorganisms
Analysis
Atmospheric Protection/Air Quality Control/Air Pollution
Bacteria
Barns
Bioaerosols
Biomarkers
Cleaning
Cleaning process
Climate Change/Climate Change Impacts
Earth and Environmental Science
Environment
Environmental monitoring
Escherichia
Farmyard manure
Gene sequencing
Hydrogeology
Livestock
Manures
Microorganisms
Pathogenic bacteria
Pseudomonas
Removal
rRNA 16S
Shigella
Soil Science & Conservation
Tunnels
Ventilation
Water Quality/Water Pollution
Wildlife conservation
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Title Identification of Size-segregated Bioaerosol Community and Pathogenic Bacteria in a Tunnel-ventilated Layer House: Effect of Manure Removal
URI https://link.springer.com/article/10.1007/s11270-022-05536-6
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