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Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers

This study investigated the long-term effects (13 months) of encapsulated nitrate supplementation (ENS) on enteric methane emissions, rumen fermentation parameters, ruminal bacteria, and diversity of archaea in grazing beef cattle. We used a total of thirty-two Nellore steers (initial BW of 197 ± 15...

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Autores principales: Granja-Salcedo, Yury Tatiana, Fernandes, Rodolfo Maciel, de Araujo, Rafael Canonenco, Kishi, Luciano Takeshi, Berchielli, Telma Teresinha, de Resende, Flávio Dutra, Berndt, Alexandre, Siqueira, Gustavo Rezende
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6449429/
https://www.ncbi.nlm.nih.gov/pubmed/30984141
http://dx.doi.org/10.3389/fmicb.2019.00614
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author Granja-Salcedo, Yury Tatiana
Fernandes, Rodolfo Maciel
de Araujo, Rafael Canonenco
Kishi, Luciano Takeshi
Berchielli, Telma Teresinha
de Resende, Flávio Dutra
Berndt, Alexandre
Siqueira, Gustavo Rezende
author_facet Granja-Salcedo, Yury Tatiana
Fernandes, Rodolfo Maciel
de Araujo, Rafael Canonenco
Kishi, Luciano Takeshi
Berchielli, Telma Teresinha
de Resende, Flávio Dutra
Berndt, Alexandre
Siqueira, Gustavo Rezende
author_sort Granja-Salcedo, Yury Tatiana
collection PubMed
description This study investigated the long-term effects (13 months) of encapsulated nitrate supplementation (ENS) on enteric methane emissions, rumen fermentation parameters, ruminal bacteria, and diversity of archaea in grazing beef cattle. We used a total of thirty-two Nellore steers (initial BW of 197 ± 15.3 kg), 12 of which were fitted with rumen cannulas. For 13 months, the animals were maintained in 12 paddocks and fed a concentrate of ground corn, soybean meals, mineral supplements, and urea (URS) or encapsulated nitrate (EN) containing 70 g of EN/100 kg of BW (corresponding to 47 g NO(3)(-)/100 kg BW). Encapsulated nitrate supplementation resulted in similar forage, supplement and total DMI values as URS (P > 0.05), but ENS tended to increase (+48 g/d; P = 0.055) average daily weight gain. Daily reductions in methane emissions (-9.54 g or 18.5%) were observed with ENS when expressed as g of CH(4)/kg of forage dry matter intake (fDMI) (P = 0.037). Lower concentrations of NH(3)-N and a higher ruminal pH were observed in ENS groups 6 h after supplementation (P < 0.05). Total VFA rumen concentration 6 h (P = 0.009) and 12 h after supplementation with EN resulted in lower acetate concentrations in the rumen (P = 0.041). Steers supplemented with EN had a greater ruminal abundance of Bacteroides, Barnesiella, Lactobacillus, Selenomonas, Veillonella, Succinimonas, Succinivibrio, and Duganella sp. (P < 0.05), but a lower abundance of Methanobrevibacter sp. (P = 0.007). Strong negative correlations were found between daily methane emissions and Proteobacteria, Erysipelotrichaceae, Prevotellaceae, and Roseburia, Kandleria, Selenomonas, Veillonella, and Succinivibrio sp. (P < 0.05) in the rumen of ENS steers. Encapsulated nitrate is a feed additive that persistently affects enteric methane emission in grazing steers, thereby decreasing Methanobrevibacter abundance in the rumen. In addition, ENS can promote fumarate-reducer and lactate-producer bacteria, thereby reducing acetate production during rumen fermentation.
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spelling pubmed-64494292019-04-12 Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers Granja-Salcedo, Yury Tatiana Fernandes, Rodolfo Maciel de Araujo, Rafael Canonenco Kishi, Luciano Takeshi Berchielli, Telma Teresinha de Resende, Flávio Dutra Berndt, Alexandre Siqueira, Gustavo Rezende Front Microbiol Microbiology This study investigated the long-term effects (13 months) of encapsulated nitrate supplementation (ENS) on enteric methane emissions, rumen fermentation parameters, ruminal bacteria, and diversity of archaea in grazing beef cattle. We used a total of thirty-two Nellore steers (initial BW of 197 ± 15.3 kg), 12 of which were fitted with rumen cannulas. For 13 months, the animals were maintained in 12 paddocks and fed a concentrate of ground corn, soybean meals, mineral supplements, and urea (URS) or encapsulated nitrate (EN) containing 70 g of EN/100 kg of BW (corresponding to 47 g NO(3)(-)/100 kg BW). Encapsulated nitrate supplementation resulted in similar forage, supplement and total DMI values as URS (P > 0.05), but ENS tended to increase (+48 g/d; P = 0.055) average daily weight gain. Daily reductions in methane emissions (-9.54 g or 18.5%) were observed with ENS when expressed as g of CH(4)/kg of forage dry matter intake (fDMI) (P = 0.037). Lower concentrations of NH(3)-N and a higher ruminal pH were observed in ENS groups 6 h after supplementation (P < 0.05). Total VFA rumen concentration 6 h (P = 0.009) and 12 h after supplementation with EN resulted in lower acetate concentrations in the rumen (P = 0.041). Steers supplemented with EN had a greater ruminal abundance of Bacteroides, Barnesiella, Lactobacillus, Selenomonas, Veillonella, Succinimonas, Succinivibrio, and Duganella sp. (P < 0.05), but a lower abundance of Methanobrevibacter sp. (P = 0.007). Strong negative correlations were found between daily methane emissions and Proteobacteria, Erysipelotrichaceae, Prevotellaceae, and Roseburia, Kandleria, Selenomonas, Veillonella, and Succinivibrio sp. (P < 0.05) in the rumen of ENS steers. Encapsulated nitrate is a feed additive that persistently affects enteric methane emission in grazing steers, thereby decreasing Methanobrevibacter abundance in the rumen. In addition, ENS can promote fumarate-reducer and lactate-producer bacteria, thereby reducing acetate production during rumen fermentation. Frontiers Media S.A. 2019-03-29 /pmc/articles/PMC6449429/ /pubmed/30984141 http://dx.doi.org/10.3389/fmicb.2019.00614 Text en Copyright © 2019 Granja-Salcedo, Fernandes, Araujo, Kishi, Berchielli, Resende, Berndt and Siqueira. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Granja-Salcedo, Yury Tatiana
Fernandes, Rodolfo Maciel
de Araujo, Rafael Canonenco
Kishi, Luciano Takeshi
Berchielli, Telma Teresinha
de Resende, Flávio Dutra
Berndt, Alexandre
Siqueira, Gustavo Rezende
Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers
title Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers
title_full Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers
title_fullStr Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers
title_full_unstemmed Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers
title_short Long-Term Encapsulated Nitrate Supplementation Modulates Rumen Microbial Diversity and Rumen Fermentation to Reduce Methane Emission in Grazing Steers
title_sort long-term encapsulated nitrate supplementation modulates rumen microbial diversity and rumen fermentation to reduce methane emission in grazing steers
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6449429/
https://www.ncbi.nlm.nih.gov/pubmed/30984141
http://dx.doi.org/10.3389/fmicb.2019.00614
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