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Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle

To clarify the relationship between beef genetic selection for growth and precocity with muscle metabolism and metabolites, we performed metabolomic analysis using Longissimus lumborum (LL) muscle from Nellore cattle with divergent selection for these traits (high growth, HG; low growth, LG; high pr...

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Autores principales: Cônsolo, Nara Regina Brandão, da Silva, Juliana, Buarque, Vicente Luiz Macedo, Higuera-Padilla, Angel, Barbosa, Luis Carlos Garibaldi Simon, Zawadzki, Andressa, Colnago, Luis Alberto, Saran Netto, Arlindo, Gerrard, David Edwin, Silva, Saulo Luz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073857/
https://www.ncbi.nlm.nih.gov/pubmed/32041181
http://dx.doi.org/10.3390/metabo10020058
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author Cônsolo, Nara Regina Brandão
da Silva, Juliana
Buarque, Vicente Luiz Macedo
Higuera-Padilla, Angel
Barbosa, Luis Carlos Garibaldi Simon
Zawadzki, Andressa
Colnago, Luis Alberto
Saran Netto, Arlindo
Gerrard, David Edwin
Silva, Saulo Luz
author_facet Cônsolo, Nara Regina Brandão
da Silva, Juliana
Buarque, Vicente Luiz Macedo
Higuera-Padilla, Angel
Barbosa, Luis Carlos Garibaldi Simon
Zawadzki, Andressa
Colnago, Luis Alberto
Saran Netto, Arlindo
Gerrard, David Edwin
Silva, Saulo Luz
author_sort Cônsolo, Nara Regina Brandão
collection PubMed
description To clarify the relationship between beef genetic selection for growth and precocity with muscle metabolism and metabolites, we performed metabolomic analysis using Longissimus lumborum (LL) muscle from Nellore cattle with divergent selection for these traits (high growth, HG; low growth, LG; high precocity, HP; low precocity, LP). Genetic potential for growth affected muscle protein and energetic metabolism. HG animals had a high concentration of arginine, carnosine, and leucine compared to LG animals. HP animals presented a high concentration of glutamine, betaine, creatinine, isoleucine, carnitine, acetyl carnitine, and lower levels of glucose compared to LP animals, affecting protein and fatty acid metabolism. Intensity of selection (high or low) was correlated with changes in protein metabolism, and the type of selection (growth or precocity) affected fat metabolism. In conclusion, both HG and HP appear to be correlated with a high concentration of protein metabolites and changes in protein metabolic pathways, while selection for precocity is more correlated with changes in fat metabolism compared to animals selected for growth.
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spelling pubmed-70738572020-03-19 Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle Cônsolo, Nara Regina Brandão da Silva, Juliana Buarque, Vicente Luiz Macedo Higuera-Padilla, Angel Barbosa, Luis Carlos Garibaldi Simon Zawadzki, Andressa Colnago, Luis Alberto Saran Netto, Arlindo Gerrard, David Edwin Silva, Saulo Luz Metabolites Article To clarify the relationship between beef genetic selection for growth and precocity with muscle metabolism and metabolites, we performed metabolomic analysis using Longissimus lumborum (LL) muscle from Nellore cattle with divergent selection for these traits (high growth, HG; low growth, LG; high precocity, HP; low precocity, LP). Genetic potential for growth affected muscle protein and energetic metabolism. HG animals had a high concentration of arginine, carnosine, and leucine compared to LG animals. HP animals presented a high concentration of glutamine, betaine, creatinine, isoleucine, carnitine, acetyl carnitine, and lower levels of glucose compared to LP animals, affecting protein and fatty acid metabolism. Intensity of selection (high or low) was correlated with changes in protein metabolism, and the type of selection (growth or precocity) affected fat metabolism. In conclusion, both HG and HP appear to be correlated with a high concentration of protein metabolites and changes in protein metabolic pathways, while selection for precocity is more correlated with changes in fat metabolism compared to animals selected for growth. MDPI 2020-02-06 /pmc/articles/PMC7073857/ /pubmed/32041181 http://dx.doi.org/10.3390/metabo10020058 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cônsolo, Nara Regina Brandão
da Silva, Juliana
Buarque, Vicente Luiz Macedo
Higuera-Padilla, Angel
Barbosa, Luis Carlos Garibaldi Simon
Zawadzki, Andressa
Colnago, Luis Alberto
Saran Netto, Arlindo
Gerrard, David Edwin
Silva, Saulo Luz
Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle
title Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle
title_full Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle
title_fullStr Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle
title_full_unstemmed Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle
title_short Selection for Growth and Precocity Alters Muscle Metabolism in Nellore Cattle
title_sort selection for growth and precocity alters muscle metabolism in nellore cattle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073857/
https://www.ncbi.nlm.nih.gov/pubmed/32041181
http://dx.doi.org/10.3390/metabo10020058
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