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A dimensional reduction approach to modulate the core ruminal microbiome associated with methane emissions via selective breeding.
Saborío-Montero, Alejandro; López-García, Adrían; Gutiérrez-Rivas, Mónica; Atxaerandio, Raquel; Goiri, Idoia; García-Rodriguez, Aser; Jiménez-Montero, José A; González, Carmen; Tamames, Javier; Puente-Sánchez, Fernando; Varona, Luis; Serrano, Magdalena; Ovilo, Cristina; González-Recio, Oscar.
Affiliation
  • Saborío-Montero A; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain; Escuela de Zootecnia y Centro de Investigación en Nutrición Animal, Universidad de Costa Rica, 11501 San José, Costa Rica.
  • López-García A; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain.
  • Gutiérrez-Rivas M; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain.
  • Atxaerandio R; Department of Animal Production, NEIKER-Tecnalia, Granja Modelo de Arkaute, Apdo. 46, 01080 Vitoria-Gasteiz, Spain.
  • Goiri I; Department of Animal Production, NEIKER-Tecnalia, Granja Modelo de Arkaute, Apdo. 46, 01080 Vitoria-Gasteiz, Spain.
  • García-Rodriguez A; Department of Animal Production, NEIKER-Tecnalia, Granja Modelo de Arkaute, Apdo. 46, 01080 Vitoria-Gasteiz, Spain.
  • Jiménez-Montero JA; Spanish Holstein Association (CONAFE), Ctra. de Andalucía km 23600 Valdemoro, 28340 Madrid, Spain.
  • González C; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain.
  • Tamames J; Department of Systems Biology, Spanish Center for Biotechnology, CSIC, 28049 Madrid, Spain.
  • Puente-Sánchez F; Department of Systems Biology, Spanish Center for Biotechnology, CSIC, 28049 Madrid, Spain.
  • Varona L; Facultad de Veterinaria, Universidad de Zaragoza, 50013 Zaragoza, Spain.
  • Serrano M; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain.
  • Ovilo C; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain.
  • González-Recio O; Departamento de mejora genética animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Crta. de la Coruña km 7.5, 28040 Madrid, Spain; Departamento de Producción Agraria. Escuela Técnica Superior de Ingeniería Agronómica, Alimentaria y de Biosistemas, Universidad Politécnica
J Dairy Sci ; 104(7): 8135-8151, 2021 Jul.
Article in En | MEDLINE | ID: mdl-33896632
The rumen is a complex microbial system of substantial importance in terms of greenhouse gas emissions and feed efficiency. This study proposes combining metagenomic and host genomic data for selective breeding of the cow hologenome toward reduced methane emissions. We analyzed nanopore long reads from the rumen metagenome of 437 Holstein cows from 14 commercial herds in 4 northern regions in Spain. After filtering, data were treated as compositional. The large complexity of the rumen microbiota was aggregated, through principal component analysis (PCA), into few principal components (PC) that were used as proxies of the core metagenome. The PCA allowed us to condense the huge and fuzzy taxonomical and functional information from the metagenome into a few PC. Bivariate animal models were applied using these PC and methane production as phenotypes. The variability condensed in these PC is controlled by the cow genome, with heritability estimates for the first PC of ~0.30 at all taxonomic levels, with a large probability (>83%) of the posterior distribution being >0.20 and with the 95% highest posterior density interval (95%HPD) not containing zero. Most genetic correlation estimates between PC1 and methane were large (≥0.70), with most of the posterior distribution (>82%) being >0.50 and with its 95%HPD not containing zero. Enteric methane production was positively associated with relative abundance of eukaryotes (protozoa and fungi) through the first component of the PCA at phylum, class, order, family, and genus. Nanopore long reads allowed the characterization of the core rumen metagenome using whole-metagenome sequencing, and the purposed aggregated variables could be used in animal breeding programs to reduce methane emissions in future generations.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Microbiota / Methane Type of study: Prognostic_studies / Risk_factors_studies Limits: Animals Country/Region as subject: Europa Language: En Journal: J Dairy Sci Year: 2021 Type: Article Affiliation country: Costa Rica

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Microbiota / Methane Type of study: Prognostic_studies / Risk_factors_studies Limits: Animals Country/Region as subject: Europa Language: En Journal: J Dairy Sci Year: 2021 Type: Article Affiliation country: Costa Rica