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March 29, 2026Scientific Data0 citationsOpen Access

A telomere-to-telomere reference genome assembly of the Hypomesus nipponensis

YZYanfeng ZhouDFDi’an FangYYYang You

Key Points

  • The aim is to create a complete reference genome assembly of Hypomesus nipponensis for further genetic studies.
  • Utilized a combined sequencing strategy including MGI short reads, PacBio HiFi reads, Oxford Nanopore Technologies ultra-long reads, and Hi-C data.
  • Generated gap-free telomere-to-telomere genome assembly of 526.31 Mb, with contig N50 of 20.23 Mb.
  • Anchored genomic sequences to 28 pseudochromosomes and performed BUSCO assessment for completeness.
  • Achieved 98.19% completeness with 3,548 single-copy and 26 duplicated orthologs from 3,640 conserved genes.
  • Identified repeat elements making up 39.17% of the genome, totaling 206.18 Mb.
  • Annotated 31,310 protein-coding genes, facilitating advanced research on evolutionary traits.

Abstract

A small cold-water teleost endemic to Northeast Asia, Hypomesus nipponensis possesses a short lifecycle, high fecundity, and rapid population growth, with extensive introductions for aquacultural purposes across East Asia. In this study, we generated a gap-free, telomere-to-telomere (T2T) genome assembly of H. nipponensis using a combined sequencing strategy, incorporating MGI short reads, PacBio High-Fidelity (HiFi) reads, Oxford Nanopore Technologies (ONT) ultra-long reads, and Hi-C data. The final assembly spans 526. 31 Mb with a contig N50 of 20. 23 Mb, and all genomic sequences were successfully anchored to 28 pseudochromosomes. BUSCO assessment (Actinopterygiiₒdb10) confirms 98. 19% completeness, including 3, 548 single-copy and 26 duplicated orthologs out of 3, 640 conserved genes. Repeat elements account for 39. 17% (206. 18 Mb) of the genome, and 31, 310 protein-coding genes are annotated. This gap-free T2T assembly resolves previously uncharacterized genomic regions, providing a high-quality reference for molecular breeding, evolutionary analyses of the Hypomesus genus, and functional investigations into adaptive traits of cold-water fishes.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69c8c336de0f0f753b39dd76https://doi.org/10.1038/s41597-026-07078-6
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