Effects of Maternal Factors and Postpartum Environment on Early Colonization of Intestinal Microbiota in Piglets

Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In...

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Published inFrontiers in veterinary science Vol. 9; p. 815944
Main Authors Li, Yongshi, Liu, Yadan, Ma, Yijia, Ge, Xusheng, Zhang, Xiaona, Cai, Chunbo, Yang, Yang, Lu, Chang, Liang, Guoming, Guo, Xiaohong, Cao, Guoqing, Li, Bugao, Gao, Pengfei
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LanguageEnglish
Published Switzerland Frontiers Media S.A 07.04.2022
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Abstract Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In this study, we selected Chinese indigenous Mashen and Jinfen White pigs as the study subjects. To explore the source and factors affecting the piglet intestinal microbiota, 16S rRNA gene sequencing was performed to analyze the microbial composition of the feces, saliva, vaginal secretions, and colostrum of parturient sows, feces and saliva of newborn piglets, and surrounding environment samples. The results showed that the microbiota of the saliva of sows and piglets is structurally similar to that of the environment and is dominated by the phylum Proteobacteria, including Acinetobacter, Actinomyces , and Pseudomonas . The core genus in the vaginal secretions and colostrum of sows was Pseudomonas . Among the fecal samples, the core bacterial genera in sows before and after delivery were Clostridium sensu_stricto_1 and Christensenellaceae_R-7_group , while in piglets at 1 d of age, Pseudomonas and Escherichia-Shigella were most abundant. These results indicate that microbiota in feces, colostrum, and vaginal secretions of sows more easily colonized piglet intestines through a symbiotic effect. The environmental and salivary microbiota could also affect the early colonization and succession of the intestinal microbiota of piglets to some extent. This study provides a theoretical basis for sow delivery protection and early nursing of piglets and background for the research and development of microbial agents to improve piglet intestinal health.
AbstractList Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In this study, we selected Chinese indigenous Mashen and Jinfen White pigs as the study subjects. To explore the source and factors affecting the piglet intestinal microbiota, 16S rRNA gene sequencing was performed to analyze the microbial composition of the feces, saliva, vaginal secretions, and colostrum of parturient sows, feces and saliva of newborn piglets, and surrounding environment samples. The results showed that the microbiota of the saliva of sows and piglets is structurally similar to that of the environment and is dominated by the phylum Proteobacteria, including Acinetobacter, Actinomyces, and Pseudomonas. The core genus in the vaginal secretions and colostrum of sows was Pseudomonas. Among the fecal samples, the core bacterial genera in sows before and after delivery were Clostridium sensu_stricto_1 and Christensenellaceae_R-7_group, while in piglets at 1 d of age, Pseudomonas and Escherichia-Shigella were most abundant. These results indicate that microbiota in feces, colostrum, and vaginal secretions of sows more easily colonized piglet intestines through a symbiotic effect. The environmental and salivary microbiota could also affect the early colonization and succession of the intestinal microbiota of piglets to some extent. This study provides a theoretical basis for sow delivery protection and early nursing of piglets and background for the research and development of microbial agents to improve piglet intestinal health.
Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In this study, we selected Chinese indigenous Mashen and Jinfen White pigs as the study subjects. To explore the source and factors affecting the piglet intestinal microbiota, 16S rRNA gene sequencing was performed to analyze the microbial composition of the feces, saliva, vaginal secretions, and colostrum of parturient sows, feces and saliva of newborn piglets, and surrounding environment samples. The results showed that the microbiota of the saliva of sows and piglets is structurally similar to that of the environment and is dominated by the phylum Proteobacteria, including Acinetobacter, Actinomyces , and Pseudomonas . The core genus in the vaginal secretions and colostrum of sows was Pseudomonas . Among the fecal samples, the core bacterial genera in sows before and after delivery were Clostridium sensu_stricto_1 and Christensenellaceae_R-7_group , while in piglets at 1 d of age, Pseudomonas and Escherichia-Shigella were most abundant. These results indicate that microbiota in feces, colostrum, and vaginal secretions of sows more easily colonized piglet intestines through a symbiotic effect. The environmental and salivary microbiota could also affect the early colonization and succession of the intestinal microbiota of piglets to some extent. This study provides a theoretical basis for sow delivery protection and early nursing of piglets and background for the research and development of microbial agents to improve piglet intestinal health.
Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In this study, we selected Chinese indigenous Mashen and Jinfen White pigs as the study subjects. To explore the source and factors affecting the piglet intestinal microbiota, 16S rRNA gene sequencing was performed to analyze the microbial composition of the feces, saliva, vaginal secretions, and colostrum of parturient sows, feces and saliva of newborn piglets, and surrounding environment samples. The results showed that the microbiota of the saliva of sows and piglets is structurally similar to that of the environment and is dominated by the phylum Proteobacteria, including , and . The core genus in the vaginal secretions and colostrum of sows was . Among the fecal samples, the core bacterial genera in sows before and after delivery were and , while in piglets at 1 d of age, and were most abundant. These results indicate that microbiota in feces, colostrum, and vaginal secretions of sows more easily colonized piglet intestines through a symbiotic effect. The environmental and salivary microbiota could also affect the early colonization and succession of the intestinal microbiota of piglets to some extent. This study provides a theoretical basis for sow delivery protection and early nursing of piglets and background for the research and development of microbial agents to improve piglet intestinal health.
Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In this study, we selected Chinese indigenous Mashen and Jinfen White pigs as the study subjects. To explore the source and factors affecting the piglet intestinal microbiota, 16S rRNA gene sequencing was performed to analyze the microbial composition of the feces, saliva, vaginal secretions, and colostrum of parturient sows, feces and saliva of newborn piglets, and surrounding environment samples. The results showed that the microbiota of the saliva of sows and piglets is structurally similar to that of the environment and is dominated by the phylum Proteobacteria, including Acinetobacter, Actinomyces, and Pseudomonas. The core genus in the vaginal secretions and colostrum of sows was Pseudomonas. Among the fecal samples, the core bacterial genera in sows before and after delivery were Clostridium sensu_stricto_1 and Christensenellaceae_R-7_group, while in piglets at 1 d of age, Pseudomonas and Escherichia-Shigella were most abundant. These results indicate that microbiota in feces, colostrum, and vaginal secretions of sows more easily colonized piglet intestines through a symbiotic effect. The environmental and salivary microbiota could also affect the early colonization and succession of the intestinal microbiota of piglets to some extent. This study provides a theoretical basis for sow delivery protection and early nursing of piglets and background for the research and development of microbial agents to improve piglet intestinal health.Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The establishment of microbiota is affected by many factors, such as delivery and feeding modes, antibiotics, disease, and the surrounding environment. In this study, we selected Chinese indigenous Mashen and Jinfen White pigs as the study subjects. To explore the source and factors affecting the piglet intestinal microbiota, 16S rRNA gene sequencing was performed to analyze the microbial composition of the feces, saliva, vaginal secretions, and colostrum of parturient sows, feces and saliva of newborn piglets, and surrounding environment samples. The results showed that the microbiota of the saliva of sows and piglets is structurally similar to that of the environment and is dominated by the phylum Proteobacteria, including Acinetobacter, Actinomyces, and Pseudomonas. The core genus in the vaginal secretions and colostrum of sows was Pseudomonas. Among the fecal samples, the core bacterial genera in sows before and after delivery were Clostridium sensu_stricto_1 and Christensenellaceae_R-7_group, while in piglets at 1 d of age, Pseudomonas and Escherichia-Shigella were most abundant. These results indicate that microbiota in feces, colostrum, and vaginal secretions of sows more easily colonized piglet intestines through a symbiotic effect. The environmental and salivary microbiota could also affect the early colonization and succession of the intestinal microbiota of piglets to some extent. This study provides a theoretical basis for sow delivery protection and early nursing of piglets and background for the research and development of microbial agents to improve piglet intestinal health.
Author Li, Bugao
Gao, Pengfei
Ma, Yijia
Zhang, Xiaona
Cai, Chunbo
Liang, Guoming
Yang, Yang
Lu, Chang
Guo, Xiaohong
Li, Yongshi
Liu, Yadan
Cao, Guoqing
Ge, Xusheng
AuthorAffiliation 1 College of Animal Science, Shanxi Agricultural University , Taigu , China
3 Allwegene Technologies Incorporation , Beijing , China
2 Inner Mongolia Mengniu Dairy Company Limited , Helingeer Hohhot , China
AuthorAffiliation_xml – name: 3 Allwegene Technologies Incorporation , Beijing , China
– name: 1 College of Animal Science, Shanxi Agricultural University , Taigu , China
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Cites_doi 10.1039/C4MB00287C
10.1111/j.1462-2920.2010.02189.x
10.1128/AEM.01541-09
10.1099/00207713-44-4-846
10.1371/journal.pone.0041484
10.3389/fmicb.2018.00945
10.1038/srep40597
10.1079/BJN19810053
10.2527/jas.2015-9767
10.1038/s41579-020-0433-9
10.1371/journal.pone.0027310
10.3389/fimmu.2014.00427
10.1186/1746-6148-8-237
10.1038/sj.jp.7211290
10.1038/s41598-019-40235-z
10.1016/j.cell.2015.02.047
10.1021/acsomega.0c02667
10.3389/fmicb.2017.01688
10.1038/ismej.2013.16
10.1631/jzus.B1800022
10.1016/j.anaerobe.2017.12.002
10.1186/s12915-019-0729-2
10.1126/science.aad9378
10.3390/ani10122381
10.1128/AEM.71.12.8228-8235.2005
10.1093/bioinformatics/btp616
10.1038/s41586-019-1451-5
10.1111/j.1462-2920.2006.01009.x
10.1128/AEM.00062-07
10.1016/j.cell.2016.05.056
10.1093/jas/skz208
10.1371/journal.pone.0197586
10.3389/fimmu.2018.00220
10.1038/nmeth.2604
10.1038/nm.4272
10.1007/s00223-017-0331-y
10.1080/1828051X.2019.1674701
10.1039/C9FO01650C
10.1073/pnas.1002601107
10.1111/j.2042-3306.1985.tb02030.x
10.4081/ijas.2015.3720
10.1016/S1590-8658(07)60013-9
10.1111/1758-2229.12285
10.3389/fvets.2021.661671
10.4161/gmic.23362
10.1016/j.immuni.2011.03.021
10.1186/s40104-015-0040-1
10.3390/ijms21020503
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Copyright Copyright © 2022 Li, Liu, Ma, Ge, Zhang, Cai, Yang, Lu, Liang, Guo, Cao, Li and Gao.
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Keywords 16S rRNA
piglets
source of intestinal microbiota
microbial diversity
characteristics of microbial colonization
Language English
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Edited by: Francesco Tiezzi, University of Florence, Italy
Reviewed by: Xiangfeng Kong, Institute of Subtropical Agriculture (CAS), China; Cesar Augusto Pospissil Garbossa, University of São Paulo, Brazil
This article was submitted to Animal Reproduction - Theriogenology, a section of the journal Frontiers in Veterinary Science
These authors have contributed equally to this work
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References de Goffau (B11) 2019; 572
Gensollen (B17) 2016; 352
Edgar (B32) 2013; 10
Aluthge (B1) 2019; 97
D'Amelio (B2) 2018; 102
Schloss (B31) 2009; 75
Zhao (B24) 2015; 14
Amato (B36) 2013; 7
Liu (B18) 2019; 9
Underwood (B12) 2005; 25
Wang (B34) 2007; 73
Murphy (B48) 2017; 7
Fan (B3) 2021; 19
Chen (B21) 2017; 8
Chen (B13) 2018; 49
Campbell (B30) 2010; 12
Yano (B4) 2015; 161
Schloss (B35) 2011; 6
Sansom (B19) 1981; 46
Xiang (B40) 2020; 21
Skrzypek (B27) 2020; 10
Costa (B28) 2012; 7
Coppa (B43) 2006; 38
Mach (B46) 2015; 7
Splichalova (B10) 2018; 9
Geuking (B5) 2011; 34
Chu (B44) 2017; 23
Stackebrandt (B33) 1994; 44
Vatanen (B8) 2016; 165
Liu (B22) 2015; 6
Pluske (B9) 2016; 94
Yang (B26) 2021; 8
Hasan (B47) 2018; 13
Wu (B41) 2020; 5
Lozupone (B37) 2005; 71
Chen (B15) 2018; 9
Arrieta (B14) 2014; 5
Wang (B16) 2019; 10
Robinson (B39) 2010; 26
Guo (B25) 2019; 18
Du (B38) 2014; 10
Wang (B7) 2019; 20
Liu (B23) 2019; 17
Konstantinov (B42) 2006; 8
Dominguez-Bello (B45) 2010; 107
El Aidy (B6) 2013; 4
Crowell-Davis (B20) 1985; 17
Mao (B29) 2012; 8
References_xml – volume: 10
  start-page: 2441
  year: 2014
  ident: B38
  article-title: KEGG-PATH: Kyoto encyclopedia of genes and genomes-based pathway analysis using a path analysis model
  publication-title: Mol Biosyst.
  doi: 10.1039/C4MB00287C
– volume: 12
  start-page: 1842
  year: 2010
  ident: B30
  article-title: The effect of nutrient deposition on bacterial communities in Arctic tundra soil
  publication-title: Environ Microbiol.
  doi: 10.1111/j.1462-2920.2010.02189.x
– volume: 75
  start-page: 7537
  year: 2009
  ident: B31
  article-title: Introducing mothur: open-source, platform-independent, community-supported software for describing and comparing microbial communities
  publication-title: Appl Environ Microbiol.
  doi: 10.1128/AEM.01541-09
– volume: 44
  start-page: 846
  year: 1994
  ident: B33
  article-title: Taxonomic Note: a place for DNA-DNA reassociation and 16S rRNA sequence analysis in the present species definition in bacteriology
  publication-title: Int J Syst Bacteriol.
  doi: 10.1099/00207713-44-4-846
– volume: 7
  start-page: e41484
  year: 2012
  ident: B28
  article-title: Comparison of the fecal microbiota of healthy horses and horses with colitis by high throughput sequencing of the V3-V5 region of the 16S rRNA gene
  publication-title: PLoS ONE.
  doi: 10.1371/journal.pone.0041484
– volume: 9
  start-page: 945
  year: 2018
  ident: B15
  article-title: Lactation stage-dependency of the sow milk microbiota
  publication-title: Front Microbiol.
  doi: 10.3389/fmicb.2018.00945
– volume: 7
  start-page: 40597
  year: 2017
  ident: B48
  article-title: The composition of human milk and infant faecal microbiota over the first three months of life: a pilot study
  publication-title: Sci Rep.
  doi: 10.1038/srep40597
– volume: 46
  start-page: 451
  year: 1981
  ident: B19
  article-title: The ingestion of sow's faeces by suckling piglets
  publication-title: Br J Nutr.
  doi: 10.1079/BJN19810053
– volume: 94
  start-page: 399
  year: 2016
  ident: B9
  article-title: Invited review: aspects of gastrointestinal tract growth and maturation in the pre-and postweaning period of pigs
  publication-title: J ANIM SCI.
  doi: 10.2527/jas.2015-9767
– volume: 19
  start-page: 55
  year: 2021
  ident: B3
  article-title: Gut microbiota in human metabolic health and disease
  publication-title: Nat Rev Microbiol.
  doi: 10.1038/s41579-020-0433-9
– volume: 6
  start-page: e27310
  year: 2011
  ident: B35
  article-title: Reducing the effects of PCR amplification and sequencing artifacts on 16S rRNA-based studies
  publication-title: PLoS ONE.
  doi: 10.1371/journal.pone.0027310
– volume: 5
  start-page: 427
  year: 2014
  ident: B14
  article-title: The intestinal microbiome in early life: health and disease
  publication-title: Front Immunol.
  doi: 10.3389/fimmu.2014.00427
– volume: 8
  start-page: 237
  year: 2012
  ident: B29
  article-title: The diversity of the fecal bacterial community and its relationship with the concentration of volatile fatty acids in the feces during subacute rumen acidosis in dairy cows
  publication-title: BMC Vet Res.
  doi: 10.1186/1746-6148-8-237
– volume: 25
  start-page: 341
  year: 2005
  ident: B12
  article-title: Amniotic fluid: not just fetal urine anymore
  publication-title: J Perinatol.
  doi: 10.1038/sj.jp.7211290
– volume: 9
  start-page: 3453
  year: 2019
  ident: B18
  article-title: Examination of the temporal and spatial dynamics of the gut microbiome in newborn piglets reveals distinct microbial communities in six intestinal segments
  publication-title: Sci Rep.
  doi: 10.1038/s41598-019-40235-z
– volume: 161
  start-page: 264
  year: 2015
  ident: B4
  article-title: Indigenous bacteria from the gut microbiota regulate host serotonin biosynthesis
  publication-title: Cell.
  doi: 10.1016/j.cell.2015.02.047
– volume: 5
  start-page: 20506
  year: 2020
  ident: B41
  article-title: Short administration of combined prebiotics improved microbial colonization, gut barrier, and growth performance of neonatal piglets
  publication-title: ACS Omega.
  doi: 10.1021/acsomega.0c02667
– volume: 8
  start-page: 1688
  year: 2017
  ident: B21
  article-title: The maturing development of gut microbiota in commercial piglets during the weaning transition
  publication-title: Front Microbiol.
  doi: 10.3389/fmicb.2017.01688
– volume: 7
  start-page: 1344
  year: 2013
  ident: B36
  article-title: Habitat degradation impacts black howler monkey (Alouatta pigra) gastrointestinal microbiomes
  publication-title: ISME J.
  doi: 10.1038/ismej.2013.16
– volume: 20
  start-page: 180
  year: 2019
  ident: B7
  article-title: Oral administration of Lactobacillus rhamnosus GG to newborn piglets augments gut barrier function in pre-weaning piglets
  publication-title: J Zhejiang Univ Sci B.
  doi: 10.1631/jzus.B1800022
– volume: 49
  start-page: 30
  year: 2018
  ident: B13
  article-title: Co-occurrence of early gut colonization in neonatal piglets with microbiota in the maternal and surrounding delivery environments
  publication-title: Anaerobe.
  doi: 10.1016/j.anaerobe.2017.12.002
– volume: 17
  start-page: 106
  year: 2019
  ident: B23
  article-title: Maternal milk and fecal microbes guide the spatiotemporal development of mucosa-associated microbiota and barrier function in the porcine neonatal gut
  publication-title: BMC Biol.
  doi: 10.1186/s12915-019-0729-2
– volume: 352
  start-page: 539
  year: 2016
  ident: B17
  article-title: How colonization by microbiota in early life shapes the immune system
  publication-title: Science.
  doi: 10.1126/science.aad9378
– volume: 10
  start-page: 2381
  year: 2020
  ident: B27
  article-title: Comparison of two DNA extraction methods and two PCRs for detection of Echinococcus multilocularis in the stool samples of naturally infected red foxes
  publication-title: Animals (Basel).
  doi: 10.3390/ani10122381
– volume: 71
  start-page: 8228
  year: 2005
  ident: B37
  article-title: UniFrac: a new phylogenetic method for comparing microbial communities
  publication-title: Appl Environ Microbiol.
  doi: 10.1128/AEM.71.12.8228-8235.2005
– volume: 26
  start-page: 139
  year: 2010
  ident: B39
  article-title: edgeR: a Bioconductor package for differential expression analysis of digital gene expression data
  publication-title: Bioinformatics.
  doi: 10.1093/bioinformatics/btp616
– volume: 572
  start-page: 329
  year: 2019
  ident: B11
  article-title: Human placenta has no microbiome but can contain potential pathogens
  publication-title: Nature.
  doi: 10.1038/s41586-019-1451-5
– volume: 8
  start-page: 1191
  year: 2006
  ident: B42
  article-title: Post-natal development of the porcine microbiota composition and activities
  publication-title: Environ Microbiol.
  doi: 10.1111/j.1462-2920.2006.01009.x
– volume: 73
  start-page: 5261
  year: 2007
  ident: B34
  article-title: Naive Bayesian classifier for rapid assignment of rRNA sequences into the new bacterial taxonomy
  publication-title: Appl Environ Microbiol.
  doi: 10.1128/AEM.00062-07
– volume: 165
  start-page: 842
  year: 2016
  ident: B8
  article-title: Variation in microbiome LPS immunogenicity contributes to autoimmunity in humans
  publication-title: Cell.
  doi: 10.1016/j.cell.2016.05.056
– volume: 97
  start-page: 3741
  year: 2019
  ident: B1
  article-title: BOARD INVITED REVIEW: The pig microbiota and the potential for harnessing the power of the microbiome to improve growth and health1
  publication-title: J Anim Sci.
  doi: 10.1093/jas/skz208
– volume: 13
  start-page: e0197586
  year: 2018
  ident: B47
  article-title: Dietary supplementation with yeast hydrolysate in pregnancy influences colostrum yield and gut microbiota of sows and piglets after birth
  publication-title: PLoS ONE.
  doi: 10.1371/journal.pone.0197586
– volume: 9
  start-page: 220
  year: 2018
  ident: B10
  article-title: Preterm life in sterile conditions: a study on preterm, germ-free piglets
  publication-title: Front Immunol.
  doi: 10.3389/fimmu.2018.00220
– volume: 10
  start-page: 996
  year: 2013
  ident: B32
  article-title: UPARSE: highly accurate OTU sequences from microbial amplicon reads
  publication-title: Nat Methods.
  doi: 10.1038/nmeth.2604
– volume: 23
  start-page: 314
  year: 2017
  ident: B44
  article-title: Maturation of the infant microbiome community structure and function across multiple body sites and in relation to mode of delivery
  publication-title: Nat Med.
  doi: 10.1038/nm.4272
– volume: 102
  start-page: 415
  year: 2018
  ident: B2
  article-title: Gut microbiota, immune system, and bone
  publication-title: Calcif Tissue Int.
  doi: 10.1007/s00223-017-0331-y
– volume: 18
  start-page: 1410
  year: 2019
  ident: B25
  article-title: Comparison of carcass traits, meat quality and expressions of MyHCs in muscles between Mashen and Large White pigs
  publication-title: Ital J Anim Sci.
  doi: 10.1080/1828051X.2019.1674701
– volume: 10
  start-page: 7844
  year: 2019
  ident: B16
  article-title: Effects of Clostridium butyricum and Enterococcus faecalis on growth performance, immune function, intestinal morphology, volatile fatty acids, and intestinal flora in a piglet model
  publication-title: Food Funct.
  doi: 10.1039/C9FO01650C
– volume: 107
  start-page: 11971
  year: 2010
  ident: B45
  article-title: Delivery mode shapes the acquisition and structure of the initial microbiota across multiple body habitats in newborns
  publication-title: Proc Natl Acad Sci USA.
  doi: 10.1073/pnas.1002601107
– volume: 17
  start-page: 17
  year: 1985
  ident: B20
  article-title: Coprophagy by foals: effect of age and possible functions
  publication-title: Equine Vet J.
  doi: 10.1111/j.2042-3306.1985.tb02030.x
– volume: 14
  start-page: 3720
  year: 2015
  ident: B24
  article-title: Study on the developmental expression of Lbx1 gene in longissimus dorsi of Mashen and Large White pigs
  publication-title: Ital J Anim Sci.
  doi: 10.4081/ijas.2015.3720
– volume: 38
  start-page: S291
  year: 2006
  ident: B43
  article-title: Prebiotics in human milk: a review
  publication-title: Dig Liver Dis.
  doi: 10.1016/S1590-8658(07)60013-9
– volume: 7
  start-page: 554
  year: 2015
  ident: B46
  article-title: Earlyl Berri M, Estellé J, Levenez F, Lemonnier G, Denis Cinitial microbiota across Environ Microbiol Rep
  doi: 10.1111/1758-2229.12285
– volume: 8
  start-page: 661671
  year: 2021
  ident: B26
  article-title: Composition of the fecal microbiota of piglets at various growth stages
  publication-title: Front Vet Sci.
  doi: 10.3389/fvets.2021.661671
– volume: 4
  start-page: 118
  year: 2013
  ident: B6
  article-title: The gut microbiota and mucosal homeostasis: colonized at birth or at adulthood, does it matter?
  publication-title: Gut Microbes.
  doi: 10.4161/gmic.23362
– volume: 34
  start-page: 794
  year: 2011
  ident: B5
  article-title: Intestinal bacterial colonization induces mutualistic regulatory T cell responses
  publication-title: Immunity.
  doi: 10.1016/j.immuni.2011.03.021
– volume: 6
  start-page: 41
  year: 2015
  ident: B22
  article-title: Fatty acids, inflammation and intestinal health in pigs
  publication-title: J Anim Sci Biotechnol.
  doi: 10.1186/s40104-015-0040-1
– volume: 21
  start-page: 503
  year: 2020
  ident: B40
  article-title: Early-life intervention using fecal microbiota combined with probiotics promotes gut microbiota maturation, regulates immune system development, and alleviates weaning stress in piglets
  publication-title: Int J Mol Sci.
  doi: 10.3390/ijms21020503
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Snippet Intestinal microbiota significantly influences the intake, storage, and utilization of body nutrients, as well as animal growth and development. The...
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SubjectTerms 16S rRNA
characteristics of microbial colonization
microbial diversity
piglets
source of intestinal microbiota
Veterinary Science
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Title Effects of Maternal Factors and Postpartum Environment on Early Colonization of Intestinal Microbiota in Piglets
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