Integrated Multi-Omics Analysis Reveals Molecular Signatures Associated with Growth Divergence in Mandarin Fish (Siniperca chuatsi)

Within-cohort growth heterogeneity constrains aquaculture productivity, and its molecular correlates in carnivorous teleosts are poorly described. We compared the three heaviest and the three lightest individuals (n = 3 biological replicates per group, one fish per replicate) from a single cohort of mandarin fish (Siniperca chuatsi) at 90 days post-hatch, which differed 3.09-fold in body mass (p = 7.1 × 10−5), by combining muscle RNA sequencing with label-free quantitative proteomics of muscle and liver. Muscle transcriptomics identified 827 differentially expressed genes. The proteasome (ko03050) was the only KEGG pathway reaching significance, with all 14 contributing subunits being more abundant in slow-growing fish, and GO enrichment recovered proteasome, peptidase and endopeptidase complexes alongside serine-type peptidase activities in the same direction. Proteomics identified 37 differentially abundant proteins in muscle and 24 in liver at a nominal threshold. Protein-level gene set enrichment analysis showed negative enrichment of oxidative phosphorylation (NES = −1.96, adjusted p = 0.001) and of mitochondrial proteins (NES = −1.77, adjusted p = 0.005) in fast-growing muscle. Haemoglobin subunits were more abundant in fast-growing muscle and liver at the protein level, while muscle haemoglobin transcripts showed paralog-specific differences. The cross-sectional extreme-phenotype design identifies molecular signatures associated with the observed growth phenotype without establishing causality. The dataset provides candidate genes and proteins for functional study in S. chuatsi.

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Journal
International Journal of Molecular Sciences
Published
2026-09-25
DOI
https://doi.org/10.3390/ijms27198578
Primary Topic
Aquaculture Nutrition and Growth
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article
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article

Integrated Multi-Omics Analysis Reveals Molecular Signatures Associated with Growth Divergence in Mandarin Fish (Siniperca chuatsi)

Ifeanyi Solomon Ahamba, Ran Cui, Xiaoli Yao, Hongxia Hu et al.
International Journal of Molecular Sciences
Aquaculture Nutrition and Growth
article

Integrated Multi-Omics Analysis Reveals Molecular Signatures Associated with Growth Divergence in Mandarin Fish (Siniperca chuatsi)

Ifeanyi Solomon Ahamba, Ran Cui, Xiaoli Yao, Hongxia Hu, Uchechukwu Christain Ekugba, Lionel Kinkpe, Xin Zhang
article en

Abstract

Within-cohort growth heterogeneity constrains aquaculture productivity, and its molecular correlates in carnivorous teleosts are poorly described. We compared the three heaviest and the three lightest individuals (n = 3 biological replicates per group, one fish per replicate) from a single cohort of mandarin fish (Siniperca chuatsi) at 90 days post-hatch, which differed 3.09-fold in body mass (p = 7.1 × 10−5), by combining muscle RNA sequencing with label-free quantitative proteomics of muscle and liver. Muscle transcriptomics identified 827 differentially expressed genes. The proteasome (ko03050) was the only KEGG pathway reaching significance, with all 14 contributing subunits being more abundant in slow-growing fish, and GO enrichment recovered proteasome, peptidase and endopeptidase complexes alongside serine-type peptidase activities in the same direction. Proteomics identified 37 differentially abundant proteins in muscle and 24 in liver at a nominal threshold. Protein-level gene set enrichment analysis showed negative enrichment of oxidative phosphorylation (NES = −1.96, adjusted p = 0.001) and of mitochondrial proteins (NES = −1.77, adjusted p = 0.005) in fast-growing muscle. Haemoglobin subunits were more abundant in fast-growing muscle and liver at the protein level, while muscle haemoglobin transcripts showed paralog-specific differences. The cross-sectional extreme-phenotype design identifies molecular signatures associated with the observed growth phenotype without establishing causality. The dataset provides candidate genes and proteins for functional study in S. chuatsi.

International Journal of Molecular SciencesVol. 27(19)
Nnamdi Azikiwe University (NG), Beijing Academy of Agricultural and Forestry Sciences (CN), Shanghai Ocean University (CN), Northwest A&F University (CN)
Openalex Percentile: Top 7%
Aquaculture Nutrition and Growth
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