A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System

Proteomics has been used to investigate cross-talk between the intestinal microbiome and host biological processes. In this study, an in ovo technique and a proteomics approach was used to address how early bacterial colonization in the gastrointestinal tract (GIT) could modulate inflammatory and im...

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Main Authors: D. R. Rodrigues, K. M. Wilson, M. Trombetta, W. N. Briggs, A. F. Duff, K. M. Chasser, W. G. Bottje, L. Bielke
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-02-01
Series:Frontiers in Physiology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fphys.2020.00020/full
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spelling doaj-0bbe0f76a5a748009163d822fc613bb92020-11-25T02:11:46ZengFrontiers Media S.A.Frontiers in Physiology1664-042X2020-02-011110.3389/fphys.2020.00020506766A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune SystemD. R. Rodrigues0K. M. Wilson1M. Trombetta2W. N. Briggs3A. F. Duff4K. M. Chasser5W. G. Bottje6L. Bielke7Department of Animal Sciences, The Ohio State University, Columbus, OH, United StatesDepartment of Animal Sciences, The Ohio State University, Columbus, OH, United StatesDepartment of Animal Sciences, The Ohio State University, Columbus, OH, United StatesDepartment of Animal Sciences, The Ohio State University, Columbus, OH, United StatesDepartment of Animal Sciences, The Ohio State University, Columbus, OH, United StatesDepartment of Animal Sciences, The Ohio State University, Columbus, OH, United StatesDepartment of Poultry Science, University of Arkansas, Fayetteville, AR, United StatesDepartment of Animal Sciences, The Ohio State University, Columbus, OH, United StatesProteomics has been used to investigate cross-talk between the intestinal microbiome and host biological processes. In this study, an in ovo technique and a proteomics approach was used to address how early bacterial colonization in the gastrointestinal tract (GIT) could modulate inflammatory and immune responses in young broilers. Embryos at 18 embryogenic days were inoculated with saline (S), 102 CFU of Citrobacter freundii (CF), Citrobacter species (C2), or lactic acid bacteria mixture (L) into the amnion. At 10 days posthatch, ileum samples from 12 birds per treatment were selected for tandem mass spectrometry analysis. Our further findings indicated that treatment-specific influences on early GIT microbiota resulted in different immune responses in mature broilers. Predicted functional analyses revealed activation of inflammation pathways in broilers treated in ovo with L and CF. Exposure to L enhanced functional annotation related to activation, trafficking of immune cells, and skeletal growth based-network, while CF inhibited biological functions associated with immune cell migration and inflammatory response. These results highlighted that proper immune function was dependent on specific GIT microbiota profiles, in which early-life exposure to L-based probiotic may have modulated the immune functions, whereas neonatal colonization of Enterobacteriaceae strains may have led to immune dysregulation associated with chronic inflammation.https://www.frontiersin.org/article/10.3389/fphys.2020.00020/fullsegmented filamentous bacteriaprobiotic in ovoimmunityinflammationEnterobacteriaceaepioneer colonizers
collection DOAJ
language English
format Article
sources DOAJ
author D. R. Rodrigues
K. M. Wilson
M. Trombetta
W. N. Briggs
A. F. Duff
K. M. Chasser
W. G. Bottje
L. Bielke
spellingShingle D. R. Rodrigues
K. M. Wilson
M. Trombetta
W. N. Briggs
A. F. Duff
K. M. Chasser
W. G. Bottje
L. Bielke
A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System
Frontiers in Physiology
segmented filamentous bacteria
probiotic in ovo
immunity
inflammation
Enterobacteriaceae
pioneer colonizers
author_facet D. R. Rodrigues
K. M. Wilson
M. Trombetta
W. N. Briggs
A. F. Duff
K. M. Chasser
W. G. Bottje
L. Bielke
author_sort D. R. Rodrigues
title A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System
title_short A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System
title_full A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System
title_fullStr A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System
title_full_unstemmed A Proteomic View of the Cross-Talk Between Early Intestinal Microbiota and Poultry Immune System
title_sort proteomic view of the cross-talk between early intestinal microbiota and poultry immune system
publisher Frontiers Media S.A.
series Frontiers in Physiology
issn 1664-042X
publishDate 2020-02-01
description Proteomics has been used to investigate cross-talk between the intestinal microbiome and host biological processes. In this study, an in ovo technique and a proteomics approach was used to address how early bacterial colonization in the gastrointestinal tract (GIT) could modulate inflammatory and immune responses in young broilers. Embryos at 18 embryogenic days were inoculated with saline (S), 102 CFU of Citrobacter freundii (CF), Citrobacter species (C2), or lactic acid bacteria mixture (L) into the amnion. At 10 days posthatch, ileum samples from 12 birds per treatment were selected for tandem mass spectrometry analysis. Our further findings indicated that treatment-specific influences on early GIT microbiota resulted in different immune responses in mature broilers. Predicted functional analyses revealed activation of inflammation pathways in broilers treated in ovo with L and CF. Exposure to L enhanced functional annotation related to activation, trafficking of immune cells, and skeletal growth based-network, while CF inhibited biological functions associated with immune cell migration and inflammatory response. These results highlighted that proper immune function was dependent on specific GIT microbiota profiles, in which early-life exposure to L-based probiotic may have modulated the immune functions, whereas neonatal colonization of Enterobacteriaceae strains may have led to immune dysregulation associated with chronic inflammation.
topic segmented filamentous bacteria
probiotic in ovo
immunity
inflammation
Enterobacteriaceae
pioneer colonizers
url https://www.frontiersin.org/article/10.3389/fphys.2020.00020/full
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