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Chromosome-level genome assembly of the sand martin (Riparia riparia). / Nuriddinov, Miroslav; Malinovskaya, Lyubov; Bobrovskikh, Aleksandr et al.

In: Scientific Data, 07.05.2026.

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Harvard

Nuriddinov, M, Malinovskaya, L, Bobrovskikh, A, Gridina, M, Serdyukova, NA, Suh, A, Ruiz-Ruano, FJ & Torgasheva, A 2026, 'Chromosome-level genome assembly of the sand martin (Riparia riparia)', Scientific Data. https://doi.org/10.1038/s41597-026-07311-2

APA

Nuriddinov, M., Malinovskaya, L., Bobrovskikh, A., Gridina, M., Serdyukova, N. A., Suh, A., Ruiz-Ruano, F. J., & Torgasheva, A. (2026). Chromosome-level genome assembly of the sand martin (Riparia riparia). Scientific Data. https://doi.org/10.1038/s41597-026-07311-2

Vancouver

Nuriddinov M, Malinovskaya L, Bobrovskikh A, Gridina M, Serdyukova NA, Suh A et al. Chromosome-level genome assembly of the sand martin (Riparia riparia). Scientific Data. 2026 May 7. doi: 10.1038/s41597-026-07311-2

Author

BibTeX

@article{cdd388d71e5b4c939457c9bfe044be3f,
title = "Chromosome-level genome assembly of the sand martin (Riparia riparia)",
abstract = "The sand martin ( Riparia riparia ), a widely distributed migratory songbird, is a promising model for evolutionary and population genetics due to its unique life-history traits. It also provides a valuable system for studying germline-restricted chromosome (GRC) inheritance and evolution. However, the absence of a high-quality genomic resource has limited in-depth investigation of these phenomena. Here, we present a chromosome-level somatic genome assembly for a R. riparia male generated using PacBio HiFi long-read sequencing and Hi-C scaffolding. The pseudohaploid assembly spans 1.19 Gb across 40 chromosome models and shows high completeness (97.6% BUSCO score). Repetitive elements make up 20.2% of the assembled chromosomes. A total of 19,624 protein-coding genes were annotated by integrating transcriptome evidence, ab initio gene prediction, and homology-based approaches. This high-quality reference genome provides a valuable foundation for studying population structure, adaptation, and evolutionary history in R. riparia . It serves as a critical resource for future assembly and investigation of the GRC, and contributes to a broader understanding of genome evolution in birds. ",
author = "Miroslav Nuriddinov and Lyubov Malinovskaya and Aleksandr Bobrovskikh and Maria Gridina and Serdyukova, {Natalya A.} and Alexander Suh and Ruiz-Ruano, {Francisco J.} and Anna Torgasheva",
note = "Nuriddinov, M., Malinovskaya, L., Bobrovskikh, A. et al. Chromosome-level genome assembly of the sand martin (Riparia riparia). Sci Data 13, 1040 (2026). https://doi.org/10.1038/s41597-026-07311-2 This study was financially supported by the grant of the state program of the «Sirius» Federal Territory «Scientific and technological development of the «Sirius» Federal Territory» (Agreement №26-03, 27/09/2024) (Material isolation and fixation, chromatin conformation capture-based libraries preparation and sequencing, data analysis including genome assembly and annotation). Preliminary data analysis was supported by the Russian Science Foundation (project No. 23-14-00182) and Ministry of Science and Higher Education of the Russian Federation (grant numbers #FSUS-2024-0018 and #FWNR-2026-0024). A.T. was supported by the Bonn Institute for Organismic Biology - Animal Diversity (University of Bonn). We thank Tatiana Bikchurina for helping with RNA extraction and members of the Suh lab for helpful discussions.",
year = "2026",
month = may,
day = "7",
doi = "10.1038/s41597-026-07311-2",
language = "English",
journal = "Scientific Data",
issn = "2052-4463",
publisher = "Nature Publishing Group",

}

RIS

TY - JOUR

T1 - Chromosome-level genome assembly of the sand martin (Riparia riparia)

AU - Nuriddinov, Miroslav

AU - Malinovskaya, Lyubov

AU - Bobrovskikh, Aleksandr

AU - Gridina, Maria

AU - Serdyukova, Natalya A.

AU - Suh, Alexander

AU - Ruiz-Ruano, Francisco J.

AU - Torgasheva, Anna

N1 - Nuriddinov, M., Malinovskaya, L., Bobrovskikh, A. et al. Chromosome-level genome assembly of the sand martin (Riparia riparia). Sci Data 13, 1040 (2026). https://doi.org/10.1038/s41597-026-07311-2 This study was financially supported by the grant of the state program of the «Sirius» Federal Territory «Scientific and technological development of the «Sirius» Federal Territory» (Agreement №26-03, 27/09/2024) (Material isolation and fixation, chromatin conformation capture-based libraries preparation and sequencing, data analysis including genome assembly and annotation). Preliminary data analysis was supported by the Russian Science Foundation (project No. 23-14-00182) and Ministry of Science and Higher Education of the Russian Federation (grant numbers #FSUS-2024-0018 and #FWNR-2026-0024). A.T. was supported by the Bonn Institute for Organismic Biology - Animal Diversity (University of Bonn). We thank Tatiana Bikchurina for helping with RNA extraction and members of the Suh lab for helpful discussions.

PY - 2026/5/7

Y1 - 2026/5/7

N2 - The sand martin ( Riparia riparia ), a widely distributed migratory songbird, is a promising model for evolutionary and population genetics due to its unique life-history traits. It also provides a valuable system for studying germline-restricted chromosome (GRC) inheritance and evolution. However, the absence of a high-quality genomic resource has limited in-depth investigation of these phenomena. Here, we present a chromosome-level somatic genome assembly for a R. riparia male generated using PacBio HiFi long-read sequencing and Hi-C scaffolding. The pseudohaploid assembly spans 1.19 Gb across 40 chromosome models and shows high completeness (97.6% BUSCO score). Repetitive elements make up 20.2% of the assembled chromosomes. A total of 19,624 protein-coding genes were annotated by integrating transcriptome evidence, ab initio gene prediction, and homology-based approaches. This high-quality reference genome provides a valuable foundation for studying population structure, adaptation, and evolutionary history in R. riparia . It serves as a critical resource for future assembly and investigation of the GRC, and contributes to a broader understanding of genome evolution in birds.

AB - The sand martin ( Riparia riparia ), a widely distributed migratory songbird, is a promising model for evolutionary and population genetics due to its unique life-history traits. It also provides a valuable system for studying germline-restricted chromosome (GRC) inheritance and evolution. However, the absence of a high-quality genomic resource has limited in-depth investigation of these phenomena. Here, we present a chromosome-level somatic genome assembly for a R. riparia male generated using PacBio HiFi long-read sequencing and Hi-C scaffolding. The pseudohaploid assembly spans 1.19 Gb across 40 chromosome models and shows high completeness (97.6% BUSCO score). Repetitive elements make up 20.2% of the assembled chromosomes. A total of 19,624 protein-coding genes were annotated by integrating transcriptome evidence, ab initio gene prediction, and homology-based approaches. This high-quality reference genome provides a valuable foundation for studying population structure, adaptation, and evolutionary history in R. riparia . It serves as a critical resource for future assembly and investigation of the GRC, and contributes to a broader understanding of genome evolution in birds.

UR - https://www.mendeley.com/catalogue/14c6073b-c4c4-3966-8fbf-e9e729e14f10/

UR - https://www.scopus.com/pages/publications/105044813099

U2 - 10.1038/s41597-026-07311-2

DO - 10.1038/s41597-026-07311-2

M3 - Article

C2 - 42098147

JO - Scientific Data

JF - Scientific Data

SN - 2052-4463

ER -

ID: 82448540