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 in | Water, air, and soil pollution Vol. 233; no. 3 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
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Springer International Publishing
01.03.2022
Springer 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 |
Author_xml | – sequence: 1 givenname: Xiaorong surname: Dai fullname: Dai, Xiaorong organization: Center for Excellence in Regional Atmospheric Environment & Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Zhejiang Key Laboratory of Urban Environmental Processes and Pollution Control, CAS Haixi Industrial Technology Innovation Center in Beilun – sequence: 2 givenname: Xiaoshuai surname: Wang fullname: Wang, Xiaoshuai organization: College of Biosystems Engineering and Food Science, Zhejiang University – sequence: 3 givenname: Ailun surname: Wang fullname: Wang, Ailun organization: College of Biosystems Engineering and Food Science, Zhejiang University – sequence: 4 givenname: Peng surname: Bao fullname: Bao, Peng organization: Center for Excellence in Regional Atmospheric Environment & Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Zhejiang Key Laboratory of Urban Environmental Processes and Pollution Control, CAS Haixi Industrial Technology Innovation Center in Beilun – sequence: 5 givenname: Lingjuan surname: Wang-Li fullname: Wang-Li, Lingjuan organization: Department of Biological and Agriculture Engineering, North Carolina State University – sequence: 6 givenname: Hang orcidid: 0000-0002-9240-156X surname: Xiao fullname: Xiao, Hang email: hxiao@iue.ac.cn organization: Center for Excellence in Regional Atmospheric Environment & Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Zhejiang Key Laboratory of Urban Environmental Processes and Pollution Control, CAS Haixi Industrial Technology Innovation Center in Beilun – sequence: 7 givenname: Kaiying surname: Wang fullname: Wang, Kaiying organization: College of Biosystems Engineering and Food Science, Zhejiang University |
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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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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 |
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