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Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders

Much work has been dedicated to identifying members of the microbial gut community that have potential to augment the growth rate of agricultural animals including chickens. Here, we assessed any correlations between the fecal microbiome, a proxy for the gut microbiome, and feed efficiency or weight...

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Autores principales: Díaz-Sánchez, Sandra, Perrotta, Allison R., Rockafellow, Isaac, Alm, Eric J., Okimoto, Ron, Hawken, Rachel, Hanning, Irene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6504170/
https://www.ncbi.nlm.nih.gov/pubmed/31063485
http://dx.doi.org/10.1371/journal.pone.0216080
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author Díaz-Sánchez, Sandra
Perrotta, Allison R.
Rockafellow, Isaac
Alm, Eric J.
Okimoto, Ron
Hawken, Rachel
Hanning, Irene
author_facet Díaz-Sánchez, Sandra
Perrotta, Allison R.
Rockafellow, Isaac
Alm, Eric J.
Okimoto, Ron
Hawken, Rachel
Hanning, Irene
author_sort Díaz-Sánchez, Sandra
collection PubMed
description Much work has been dedicated to identifying members of the microbial gut community that have potential to augment the growth rate of agricultural animals including chickens. Here, we assessed any correlations between the fecal microbiome, a proxy for the gut microbiome, and feed efficiency or weight gain at the pedigree chicken level, the highest tier of the production process. Because selective breeding is conducted at the pedigree level, our aim was to determine if microbiome profiles could be used to predict feed conversion or weight gain in order to improve selective breeding. Using 16s rRNA amplicon sequencing, we profiled the microbiomes of high and low weight gain (WG) birds and good and poor feed efficient (FE) birds in two pedigree lineages of broiler chickens. We also aimed to understand the dynamics of the microbiome with respect to maturation. A time series experiment was conducted, where fecal samples of chickens were collected at 6 points of the rearing process and the microbiome of these samples profiled. We identified OTUs differences at different taxonomic levels in the fecal community between high and low performing birds within each genetic line, indicating a specificity of the microbial community profiles correlated to performance factors. Using machine-learning methods, we built a classification model that could predict feed conversion performance from the fecal microbial community. With respect to maturation, we found that the fecal microbiome is dynamic in early life but stabilizes after 3 weeks of age independent of lineage. Our results indicate that the fecal microbiome profile can be used to predict feed conversion, but not weight gain in these pedigree lines. From the time series experiments, it appears that these predictions can be evaluated as early as 20 days of age. Our data also indicates that there is a genetic factor for the microbiome profile.
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spelling pubmed-65041702019-05-09 Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders Díaz-Sánchez, Sandra Perrotta, Allison R. Rockafellow, Isaac Alm, Eric J. Okimoto, Ron Hawken, Rachel Hanning, Irene PLoS One Research Article Much work has been dedicated to identifying members of the microbial gut community that have potential to augment the growth rate of agricultural animals including chickens. Here, we assessed any correlations between the fecal microbiome, a proxy for the gut microbiome, and feed efficiency or weight gain at the pedigree chicken level, the highest tier of the production process. Because selective breeding is conducted at the pedigree level, our aim was to determine if microbiome profiles could be used to predict feed conversion or weight gain in order to improve selective breeding. Using 16s rRNA amplicon sequencing, we profiled the microbiomes of high and low weight gain (WG) birds and good and poor feed efficient (FE) birds in two pedigree lineages of broiler chickens. We also aimed to understand the dynamics of the microbiome with respect to maturation. A time series experiment was conducted, where fecal samples of chickens were collected at 6 points of the rearing process and the microbiome of these samples profiled. We identified OTUs differences at different taxonomic levels in the fecal community between high and low performing birds within each genetic line, indicating a specificity of the microbial community profiles correlated to performance factors. Using machine-learning methods, we built a classification model that could predict feed conversion performance from the fecal microbial community. With respect to maturation, we found that the fecal microbiome is dynamic in early life but stabilizes after 3 weeks of age independent of lineage. Our results indicate that the fecal microbiome profile can be used to predict feed conversion, but not weight gain in these pedigree lines. From the time series experiments, it appears that these predictions can be evaluated as early as 20 days of age. Our data also indicates that there is a genetic factor for the microbiome profile. Public Library of Science 2019-05-07 /pmc/articles/PMC6504170/ /pubmed/31063485 http://dx.doi.org/10.1371/journal.pone.0216080 Text en © 2019 Díaz-Sánchez et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Díaz-Sánchez, Sandra
Perrotta, Allison R.
Rockafellow, Isaac
Alm, Eric J.
Okimoto, Ron
Hawken, Rachel
Hanning, Irene
Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
title Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
title_full Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
title_fullStr Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
title_full_unstemmed Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
title_short Using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
title_sort using fecal microbiota as biomarkers for predictions of performance in the selective breeding process of pedigree broiler breeders
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6504170/
https://www.ncbi.nlm.nih.gov/pubmed/31063485
http://dx.doi.org/10.1371/journal.pone.0216080
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