Physiological responses and adaptations to high methane production in Japanese Black cattle

In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured at early (age 13 months), middle (20 months), and late fattening phases (28 months). Cattle with the highest and lowest methane emissions were...

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Published inScientific reports Vol. 12; no. 1; p. 11154
Main Authors Kim, Minji, Masaki, Tatsunori, Ikuta, Kentaro, Iwamoto, Eiji, Nishihara, Koki, Hirai, Makoto, Uemoto, Yoshinobu, Terada, Fuminori, Roh, Sanggun
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 01.07.2022
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Abstract In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured at early (age 13 months), middle (20 months), and late fattening phases (28 months). Cattle with the highest and lowest methane emissions were selected based on the residual methane emission values, and their liver transcriptome, blood metabolites, hormones, and rumen fermentation characteristics were analyzed. Blood β-hydroxybutyric acid and insulin levels were high, whereas blood amino acid levels were low in cattle with high methane emissions. Further, propionate and butyrate levels differed depending on the enteric methane emissions. Hepatic genes, such as SERPINI2, SLC7A5, ATP6 , and RRAD , which were related to amino acid transport and glucose metabolism, were upregulated or downregulated during the late fattening phase. The above mentioned metabolites and liver transcriptomes could be used to evaluate enteric methanogenesis in Japanese Black cattle.
AbstractList Abstract In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured at early (age 13 months), middle (20 months), and late fattening phases (28 months). Cattle with the highest and lowest methane emissions were selected based on the residual methane emission values, and their liver transcriptome, blood metabolites, hormones, and rumen fermentation characteristics were analyzed. Blood β-hydroxybutyric acid and insulin levels were high, whereas blood amino acid levels were low in cattle with high methane emissions. Further, propionate and butyrate levels differed depending on the enteric methane emissions. Hepatic genes, such as SERPINI2, SLC7A5, ATP6 , and RRAD , which were related to amino acid transport and glucose metabolism, were upregulated or downregulated during the late fattening phase. The above mentioned metabolites and liver transcriptomes could be used to evaluate enteric methanogenesis in Japanese Black cattle.
In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured at early (age 13 months), middle (20 months), and late fattening phases (28 months). Cattle with the highest and lowest methane emissions were selected based on the residual methane emission values, and their liver transcriptome, blood metabolites, hormones, and rumen fermentation characteristics were analyzed. Blood β-hydroxybutyric acid and insulin levels were high, whereas blood amino acid levels were low in cattle with high methane emissions. Further, propionate and butyrate levels differed depending on the enteric methane emissions. Hepatic genes, such as SERPINI2, SLC7A5, ATP6 , and RRAD , which were related to amino acid transport and glucose metabolism, were upregulated or downregulated during the late fattening phase. The above mentioned metabolites and liver transcriptomes could be used to evaluate enteric methanogenesis in Japanese Black cattle.
Abstract In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured at early (age 13 months), middle (20 months), and late fattening phases (28 months). Cattle with the highest and lowest methane emissions were selected based on the residual methane emission values, and their liver transcriptome, blood metabolites, hormones, and rumen fermentation characteristics were analyzed. Blood β-hydroxybutyric acid and insulin levels were high, whereas blood amino acid levels were low in cattle with high methane emissions. Further, propionate and butyrate levels differed depending on the enteric methane emissions. Hepatic genes, such as SERPINI2, SLC7A5, ATP6, and RRAD, which were related to amino acid transport and glucose metabolism, were upregulated or downregulated during the late fattening phase. The above mentioned metabolites and liver transcriptomes could be used to evaluate enteric methanogenesis in Japanese Black cattle.
In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured at early (age 13 months), middle (20 months), and late fattening phases (28 months). Cattle with the highest and lowest methane emissions were selected based on the residual methane emission values, and their liver transcriptome, blood metabolites, hormones, and rumen fermentation characteristics were analyzed. Blood β-hydroxybutyric acid and insulin levels were high, whereas blood amino acid levels were low in cattle with high methane emissions. Further, propionate and butyrate levels differed depending on the enteric methane emissions. Hepatic genes, such as SERPINI2, SLC7A5, ATP6, and RRAD, which were related to amino acid transport and glucose metabolism, were upregulated or downregulated during the late fattening phase. The above mentioned metabolites and liver transcriptomes could be used to evaluate enteric methanogenesis in Japanese Black cattle.
ArticleNumber 11154
Author Masaki, Tatsunori
Roh, Sanggun
Terada, Fuminori
Uemoto, Yoshinobu
Iwamoto, Eiji
Ikuta, Kentaro
Hirai, Makoto
Kim, Minji
Nishihara, Koki
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  email: sanggun.roh@tohoku.ac.jp
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CitedBy_id crossref_primary_10_1093_jas_skad198
crossref_primary_10_3390_ani13030487
crossref_primary_10_3390_ani14060829
crossref_primary_10_2478_acve_2023_0006
crossref_primary_10_1111_asj_13954
crossref_primary_10_1371_journal_pone_0299268
crossref_primary_10_1016_j_animal_2023_100830
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Snippet In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were measured...
Abstract In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were...
Abstract In this study, using enteric methane emissions, we investigated the metabolic characteristics of Japanese Black cattle. Their methane emissions were...
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Publisher
StartPage 11154
SubjectTerms 631/443/319/320
631/601/1737
Adaptation
Amino acids
Blood
Cattle
Efficiency
Emission measurements
Emissions
Energy
Feeds
Fermentation
Glucose
Glucose metabolism
Glucose transport
Hormones
Humanities and Social Sciences
Insulin
Insulin-like growth factors
Liver
Livestock
Metabolism
Metabolites
Methane
Methanogenesis
Microorganisms
multidisciplinary
Phosphatase
Physiological responses
Physiology
Production increases
Propionic acid
Science
Science (multidisciplinary)
Transcriptomes
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Title Physiological responses and adaptations to high methane production in Japanese Black cattle
URI https://link.springer.com/article/10.1038/s41598-022-15146-1
https://www.proquest.com/docview/2683055665
https://search.proquest.com/docview/2684096891
https://pubmed.ncbi.nlm.nih.gov/PMC9249741
https://doaj.org/article/701071e7c194461199375df0abc431b7
Volume 12
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