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Transcriptome analysis of the muscle of fast‐ and slow‐growing phoenix barb ( Spinibarbus denticulatus denticulatus )

Xi Xie; Xianping Liao; Zhengsheng Xu; Wenlang Liang; Yilin Su; Li Lin; Jungang Xie; Weiqiang Lin
Journal of Fish Biology · Vol. 102, Issue 2 · pp. 504-515 · 2023

Abstract

Growth rate is a commercial trait in aquaculture that is influenced by multiple factors, among which genetic composition plays a fundamental role in the growth rate of species. The phoenix barb ( Spinibarbus denticulatus denticulatus ) is a widely distributed freshwater fish species in South China. Although S. d. denticulatus is reared in South China, the molecular mechanisms underlying the growth rate of the species remain unclear. Here, the authors performed transcriptome analysis of muscle tissues from fast‐growing (FG) and slow‐growing (SG) S. d. denticulatus at 90, 150, and 300 days after hatch (DAH) to elucidate its growth mechanism. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis revealed that differentially expressed genes (DEGs) between the two groups were enriched in pathways related to muscle growth, glycolysis, and energy and lipid metabolism. Nonetheless, a higher number of DEGs were identified in the FG vs. SG groups at 90 and 300 DAH compared with 150 DAH. DEGs identified at 90 DAH were mainly enriched in the GH/IGF axis, PI3K‐Akt signalling pathway, AMPK signalling pathway and lipid metabolism highly expressed in FG individuals. DEGs identified at 300 DAH were mainly enriched in PI3K‐Akt signalling pathway, glycolysis/gluconeogenesis, gene translation and lipid metabolism. In addition, some genes were expressed during the early growth stage in FG individuals but expressed during the late stage in SG individuals, indicating considerable variations in the expression profiles of growth‐related genes at different developmental stages. Overall, these findings contribute to the understanding of the growth mechanism of S. d. denticulatus , which would be useful for the propagation of fast‐growing breeds.

Bibliographic Information

JournalJournal of Fish Biology
PublisherWiley
Publication Date2023-02-01
Publication Year2023
Volume102
Issue2
Pages504-515
Document TypeJournal Article
Print ISSN0022-1112
eISSN1095-8649
DOI10.1111/jfb.15280
SubjectGeneral Aquaculture, Fisheries & Fish Science

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/10958649
Publisher PageOpen Publisher Page
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