Genomic signatures associated with recurrent scale loss in cyprinid fish

Yongli DING , Ming ZOU , Baocheng GUO

Integrative Zoology ›› 2025, Vol. 20 ›› Issue (3) : 535 -550.

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Integrative Zoology ›› 2025, Vol. 20 ›› Issue (3) : 535 -550. DOI: 10.1111/1749-4877.12851
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Genomic signatures associated with recurrent scale loss in cyprinid fish

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Abstract

Scale morphology represents a fundamental feature of fish and a key evolutionary trait underlying fish diversification. Despite frequent and recurrent scale loss throughout fish diversification, comprehensive genome-wide analyses of the genomic signatures associated with scale loss in divergent fish lineages remain scarce. In the current study, we investigated genome-wide signatures, specifically convergent protein-coding gene loss, amino acid substitutions, and cis-regulatory sequence changes, associated with recurrent scale loss in two divergent Cypriniformes lineages based on large-scale genomic, transcriptomic, and epigenetic data. Results demonstrated convergent changes in many genes related to scale formation in divergent scaleless fish lineages, including loss of P/Q-rich scpp genes (e.g. scpp6 and scpp7), accelerated evolution of non-coding elements adjacent to the fgf and fgfr genes, and convergent amino acid changes in genes (e.g. snap29) under relaxed selection. Collectively, these findings highlight the existence of a shared genetic architecture underlying recurrent scale loss in divergent fish lineages, suggesting that evolutionary outcomes may be genetically repeatable and predictable in the convergence of scale loss in fish.

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amino acid substitution / CNEs / convergence / fgf/fgfr genes / scpp genes

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Yongli DING, Ming ZOU, Baocheng GUO. Genomic signatures associated with recurrent scale loss in cyprinid fish. Integrative Zoology, 2025, 20(3): 535-550 DOI:10.1111/1749-4877.12851

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2024 International Society of Zoological Sciences, Institute of Zoology/Chinese Academy of Sciences and John Wiley & Sons Australia, Ltd.

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