were linked to signal transduction. A total of 318 OR genes (289 functional genes, 10 partial genes, and 19 pseudogenes) were annotated in the swamp eel genome, significantly surpassing other fish species. Clusters of OR genes were detected on chromosome 4, chromosome 8, chromosome 9, and chromosome 12 in the swamp eel, sharing the same transcriptional orientation, which indicated that tandem duplication was a possible mechanism for the OR gene expansion. Phylogenetic analysis revealed the obvious expansion pattern of OR genes in groups δ and ζ for the swamp eel. Conserved motifs were detected in the OR genes, which indicated the similar functions of OR genes. Our findings unveiled the genomic basis for the olfactory evolution in the swamp eel, providing insights for a better understanding of swamp eel's environmental adaptation and contributing to further investigation of olfactory function in fish. This study enriches the genomic research on the olfactory system of benthic nocturnal fishes and provides a useful evolutionary case for understanding olfactory adaptation to ecological niches in fish.
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Chuang Zhou
Zi Wang
Chenhao Zhang
SHILAP Revista de lepidopterología
Sichuan University
Sichuan Normal University
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Zhou et al. (Fri,) studied this question.
www.synapsesocial.com/papers/69f6e5ac8071d4f1bdfc6482 — DOI: https://doi.org/10.1002/ece3.73586