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 in | Scientific reports Vol. 12; no. 1; p. 11154 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
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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. |
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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 |
Author_xml | – sequence: 1 givenname: Minji surname: Kim fullname: Kim, Minji organization: Graduate School of Agricultural Science, Tohoku University – sequence: 2 givenname: Tatsunori surname: Masaki fullname: Masaki, Tatsunori organization: Hyogo Prefectural Technology Center of Agriculture, Forestry and Fisheries – sequence: 3 givenname: Kentaro surname: Ikuta fullname: Ikuta, Kentaro organization: Hyogo Prefectural Technology Center of Agriculture, Forestry and Fisheries – sequence: 4 givenname: Eiji surname: Iwamoto fullname: Iwamoto, Eiji organization: Hyogo Prefectural Technology Center of Agriculture, Forestry and Fisheries – sequence: 5 givenname: Koki surname: Nishihara fullname: Nishihara, Koki organization: Graduate School of Agricultural Science, Tohoku University – sequence: 6 givenname: Makoto surname: Hirai fullname: Hirai, Makoto organization: Graduate School of Agricultural Science, Tohoku University, Central Research Laboratories, Nippon Zenyaku Kogyo Co., Ltd – sequence: 7 givenname: Yoshinobu surname: Uemoto fullname: Uemoto, Yoshinobu organization: Graduate School of Agricultural Science, Tohoku University – sequence: 8 givenname: Fuminori surname: Terada fullname: Terada, Fuminori organization: Graduate School of Agricultural Science, Tohoku University, National Institute of Livestock and Grassland Science, National Agriculture and Food Research Organization – sequence: 9 givenname: Sanggun surname: Roh fullname: Roh, Sanggun email: sanggun.roh@tohoku.ac.jp organization: Graduate School of Agricultural Science, Tohoku University |
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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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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 |
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