AI Article Synopsis

  • The common carp is a key species in Chinese aquaculture due to its adaptability and nutritional value, but the specific molecular mechanisms behind its nutritional deposition are not well understood.
  • A study analyzed the nutritional content and gene expression in the liver and muscle of three carp varieties, finding that FFRC carp had higher fat and polyunsaturated fatty acid levels, while Huanghe carp had more flavor and essential amino acids.
  • These differences were linked to changes in gene expression related to fatty acid transport and amino acid metabolism, providing insights for optimizing nutritional quality in carp.

Article Abstract

The common carp () is one of the most important aquaculture species in China, known for its remarkable adaptability and nutritional profile. However, the specific molecular response mechanisms regulating the nutritional deposition of carp remain inadequately elucidated. This study conducted a comprehensive analysis of muscle nutritional content and transcriptome data from liver and muscle tissues of three distinct carp varieties. The aim was to elucidate the key genes and signaling pathways that regulate muscle nutritional composition in carp. The findings revealed that FFRC carp (FFRC) exhibited significantly higher levels of crude fat, total n-3 polyunsaturated fatty acids, and total n-6 polyunsaturated fatty acids in muscle tissue compared to Ying carp (YC) and Huanghe carp (HC) ( < 0.05). Transcriptomic analyses correlated these elevated levels with a marked upregulation of genes involved in the activation and transportation of fatty acid (, , ) as well as biosynthesis and elongation of long-chain unsaturated fatty acids (, ) within the liver. Furthermore, the flavor amino acid, essential amino acids, and crude protein content in the muscle of HC were significantly higher than in FFRC and YC ( < 0.05). Transcriptomic analyses indicated that this was associated with significant changes in the expression of genes related to amino acid metabolism (, , , , , , , ) within their muscle tissue. This research provides a theoretical foundation for the precise modulation of the muscle nutritional composition in carp.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11240310PMC
http://dx.doi.org/10.3390/ani14131939DOI Listing

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