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A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions

A 1000-cow study across four European countries was undertaken to understand to what extent ruminant microbiomes can be controlled by the host animal and to identify characteristics of the host rumen microbiome axis that determine productivity and methane emissions. A core rumen microbiome, phylogen...

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Autores principales: Wallace, R. John, Sasson, Goor, Garnsworthy, Philip C., Tapio, Ilma, Gregson, Emma, Bani, Paolo, Huhtanen, Pekka, Bayat, Ali R., Strozzi, Francesco, Biscarini, Filippo, Snelling, Timothy J., Saunders, Neil, Potterton, Sarah L., Craigon, James, Minuti, Andrea, Trevisi, Erminio, Callegari, Maria L., Cappelli, Fiorenzo Piccioli, Cabezas-Garcia, Edward H., Vilkki, Johanna, Pinares-Patino, Cesar, Fliegerová, Kateřina O., Mrázek, Jakub, Sechovcová, Hana, Kopečný, Jan, Bonin, Aurélie, Boyer, Frédéric, Taberlet, Pierre, Kokou, Fotini, Halperin, Eran, Williams, John L., Shingfield, Kevin J., Mizrahi, Itzhak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6609165/
https://www.ncbi.nlm.nih.gov/pubmed/31281883
http://dx.doi.org/10.1126/sciadv.aav8391
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author Wallace, R. John
Sasson, Goor
Garnsworthy, Philip C.
Tapio, Ilma
Gregson, Emma
Bani, Paolo
Huhtanen, Pekka
Bayat, Ali R.
Strozzi, Francesco
Biscarini, Filippo
Snelling, Timothy J.
Saunders, Neil
Potterton, Sarah L.
Craigon, James
Minuti, Andrea
Trevisi, Erminio
Callegari, Maria L.
Cappelli, Fiorenzo Piccioli
Cabezas-Garcia, Edward H.
Vilkki, Johanna
Pinares-Patino, Cesar
Fliegerová, Kateřina O.
Mrázek, Jakub
Sechovcová, Hana
Kopečný, Jan
Bonin, Aurélie
Boyer, Frédéric
Taberlet, Pierre
Kokou, Fotini
Halperin, Eran
Williams, John L.
Shingfield, Kevin J.
Mizrahi, Itzhak
author_facet Wallace, R. John
Sasson, Goor
Garnsworthy, Philip C.
Tapio, Ilma
Gregson, Emma
Bani, Paolo
Huhtanen, Pekka
Bayat, Ali R.
Strozzi, Francesco
Biscarini, Filippo
Snelling, Timothy J.
Saunders, Neil
Potterton, Sarah L.
Craigon, James
Minuti, Andrea
Trevisi, Erminio
Callegari, Maria L.
Cappelli, Fiorenzo Piccioli
Cabezas-Garcia, Edward H.
Vilkki, Johanna
Pinares-Patino, Cesar
Fliegerová, Kateřina O.
Mrázek, Jakub
Sechovcová, Hana
Kopečný, Jan
Bonin, Aurélie
Boyer, Frédéric
Taberlet, Pierre
Kokou, Fotini
Halperin, Eran
Williams, John L.
Shingfield, Kevin J.
Mizrahi, Itzhak
author_sort Wallace, R. John
collection PubMed
description A 1000-cow study across four European countries was undertaken to understand to what extent ruminant microbiomes can be controlled by the host animal and to identify characteristics of the host rumen microbiome axis that determine productivity and methane emissions. A core rumen microbiome, phylogenetically linked and with a preserved hierarchical structure, was identified. A 39-member subset of the core formed hubs in co-occurrence networks linking microbiome structure to host genetics and phenotype (methane emissions, rumen and blood metabolites, and milk production efficiency). These phenotypes can be predicted from the core microbiome using machine learning algorithms. The heritable core microbes, therefore, present primary targets for rumen manipulation toward sustainable and environmentally friendly agriculture.
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spelling pubmed-66091652019-07-05 A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions Wallace, R. John Sasson, Goor Garnsworthy, Philip C. Tapio, Ilma Gregson, Emma Bani, Paolo Huhtanen, Pekka Bayat, Ali R. Strozzi, Francesco Biscarini, Filippo Snelling, Timothy J. Saunders, Neil Potterton, Sarah L. Craigon, James Minuti, Andrea Trevisi, Erminio Callegari, Maria L. Cappelli, Fiorenzo Piccioli Cabezas-Garcia, Edward H. Vilkki, Johanna Pinares-Patino, Cesar Fliegerová, Kateřina O. Mrázek, Jakub Sechovcová, Hana Kopečný, Jan Bonin, Aurélie Boyer, Frédéric Taberlet, Pierre Kokou, Fotini Halperin, Eran Williams, John L. Shingfield, Kevin J. Mizrahi, Itzhak Sci Adv Research Articles A 1000-cow study across four European countries was undertaken to understand to what extent ruminant microbiomes can be controlled by the host animal and to identify characteristics of the host rumen microbiome axis that determine productivity and methane emissions. A core rumen microbiome, phylogenetically linked and with a preserved hierarchical structure, was identified. A 39-member subset of the core formed hubs in co-occurrence networks linking microbiome structure to host genetics and phenotype (methane emissions, rumen and blood metabolites, and milk production efficiency). These phenotypes can be predicted from the core microbiome using machine learning algorithms. The heritable core microbes, therefore, present primary targets for rumen manipulation toward sustainable and environmentally friendly agriculture. American Association for the Advancement of Science 2019-07-03 /pmc/articles/PMC6609165/ /pubmed/31281883 http://dx.doi.org/10.1126/sciadv.aav8391 Text en Copyright © 2019 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). http://creativecommons.org/licenses/by-nc/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (http://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Wallace, R. John
Sasson, Goor
Garnsworthy, Philip C.
Tapio, Ilma
Gregson, Emma
Bani, Paolo
Huhtanen, Pekka
Bayat, Ali R.
Strozzi, Francesco
Biscarini, Filippo
Snelling, Timothy J.
Saunders, Neil
Potterton, Sarah L.
Craigon, James
Minuti, Andrea
Trevisi, Erminio
Callegari, Maria L.
Cappelli, Fiorenzo Piccioli
Cabezas-Garcia, Edward H.
Vilkki, Johanna
Pinares-Patino, Cesar
Fliegerová, Kateřina O.
Mrázek, Jakub
Sechovcová, Hana
Kopečný, Jan
Bonin, Aurélie
Boyer, Frédéric
Taberlet, Pierre
Kokou, Fotini
Halperin, Eran
Williams, John L.
Shingfield, Kevin J.
Mizrahi, Itzhak
A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
title A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
title_full A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
title_fullStr A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
title_full_unstemmed A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
title_short A heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
title_sort heritable subset of the core rumen microbiome dictates dairy cow productivity and emissions
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6609165/
https://www.ncbi.nlm.nih.gov/pubmed/31281883
http://dx.doi.org/10.1126/sciadv.aav8391
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