4.6 Article

Metabolism of Imidazole Dipeptides, Taurine, Branched-Chain Amino Acids, and Polyamines of the Breast Muscle Are Affected by Post-Hatch Development in Chickens

期刊

METABOLITES
卷 12, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/metabo12010086

关键词

metabolomics; skeletal muscle; plasma; growth; carnosine; insulin; IGF-1 signaling

资金

  1. Ito Foundation
  2. JSPS KAKENHI [24688027]
  3. Grants-in-Aid for Scientific Research [24688027] Funding Source: KAKEN

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Metabolomic analyses of breast muscle and plasma in chickens revealed significant growth-related changes in metabolite levels between seven and 28 days of age. Some essential nutrients and growth-promoting metabolites were identified. The levels of imidazole dipeptides increased in the muscle, while taurine levels decreased. Upstream metabolites in branched-chain amino acid metabolism decreased in the muscle.
To explore metabolic characteristics during the post-hatch developmental period, metabolomic analyses of breast muscle and plasma were performed in chickens. The most significant growth-related changes in metabolite levels were observed between seven and 28 days of age. Some of these metabolites are essential nutrients or reported as growth-promoting metabolites. In the muscle, two imidazole dipeptides-carnosine and its methylated metabolite, anserine-increased with the development. These dipeptide levels may be, in part, regulated transcriptionally because in the muscle mRNA levels of carnosine synthase and carnosine methylation enzyme increased. In contrast, taurine levels in the muscle decreased. This would be substrate availability-dependent because some upstream metabolites decreased in the muscle or plasma. In branched-chain amino acid metabolism, valine, leucine, and isoleucine decreased in the muscle, while some of their downstream metabolites decreased in the plasma. The polyamines, putrescine and spermidine, decreased in the muscle. Furthermore, mRNA levels associated with insulin/insulin-like growth factor 1 signaling, which play important roles in muscle growth, increased in the muscle. These results indicate that some metabolic pathways would be important to clarify metabolic characteristics and/or growth of breast muscle during the post-hatch developmental period in chickens.

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