Open Access
Open access
volume 14

A chromosome-level, haplotype-resolved genome assembly and annotation for the Eurasian minnow (Leuciscidae: Phoxinus phoxinus) provide evidence of haplotype diversity

Temitope O Oriowo 1
Ioannis Chrysostomakis 1
Sebastian Martin 1
Sandra Kukowka 1
Tom Brown 2
E. W. Myers 2, 3
Astrid Böhne 1
Madlen Stange 1
Publication typeJournal Article
Publication date2025-01-29
scimago Q1
wos Q1
SJR5.314
CiteScore20.0
Impact factor3.9
ISSN2047217X
Abstract
Background

In this study, we present an in-depth analysis of the Eurasian minnow (Phoxinus phoxinus) genome, highlighting its genetic diversity, structural variations, and evolutionary adaptations. We generated an annotated haplotype-phased, chromosome-level genome assembly (2n = 50) by integrating high-fidelity (HiFi) long reads and chromosome conformation capture data (Hi-C).

Results

We achieved a haploid size of 940 megabase pairs (Mbp) for haplome 1 and 929 Mbp for haplome 2 with high scaffold N50 values of 36.4 Mb and 36.6 Mb and BUSCO scores of 96.9% and 97.2%, respectively, indicating a highly complete genome assembly. We detected notable heterozygosity (1.43%) and a high repeat content (approximately 54%), primarily consisting of DNA transposons, which contribute to genome rearrangements and variations. We found substantial structural variations within the genome, including insertions, deletions, inversions, and translocations. These variations affect genes enriched in functions such as dephosphorylation, developmental pigmentation, phagocytosis, immunity, and stress response. In the annotation of protein-coding genes, 30,980 messenger RNAs and 23,497 protein-coding genes were identified with a high completeness score, which further underpins the high contiguity of our genome assemblies. We performed a gene family evolution analysis by comparing our proteome to 10 other teleost species, which identified immune system gene families that prioritize histone-based disease prevention over NB-LRR-related-based immune responses. Additionally, demographic analysis indicates historical fluctuations in the effective population size of P. phoxinus, likely correlating with past climatic changes.

Conclusions

This annotated, phased reference genome provides a crucial resource for resolving the taxonomic complexity within the genus Phoxinus and highlights the importance of haplotype-phased assemblies in understanding haplotype diversity in species characterized by high heterozygosity.

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Oriowo T. O. et al. A chromosome-level, haplotype-resolved genome assembly and annotation for the Eurasian minnow (Leuciscidae: Phoxinus phoxinus) provide evidence of haplotype diversity // GigaScience. 2025. Vol. 14.
GOST all authors (up to 50) Copy
Oriowo T. O., Chrysostomakis I., Martin S., Kukowka S., Brown T., Winkler S., Myers E. W., Böhne A., Stange M. A chromosome-level, haplotype-resolved genome assembly and annotation for the Eurasian minnow (Leuciscidae: Phoxinus phoxinus) provide evidence of haplotype diversity // GigaScience. 2025. Vol. 14.
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TY - JOUR
DO - 10.1093/gigascience/giae116
UR - https://academic.oup.com/gigascience/article/doi/10.1093/gigascience/giae116/7985877
TI - A chromosome-level, haplotype-resolved genome assembly and annotation for the Eurasian minnow (Leuciscidae: Phoxinus phoxinus) provide evidence of haplotype diversity
T2 - GigaScience
AU - Oriowo, Temitope O
AU - Chrysostomakis, Ioannis
AU - Martin, Sebastian
AU - Kukowka, Sandra
AU - Brown, Tom
AU - Winkler, Sylke
AU - Myers, E. W.
AU - Böhne, Astrid
AU - Stange, Madlen
PY - 2025
DA - 2025/01/29
PB - Oxford University Press
VL - 14
SN - 2047-217X
ER -
BibTex
Cite this
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@article{2025_Oriowo,
author = {Temitope O Oriowo and Ioannis Chrysostomakis and Sebastian Martin and Sandra Kukowka and Tom Brown and Sylke Winkler and E. W. Myers and Astrid Böhne and Madlen Stange},
title = {A chromosome-level, haplotype-resolved genome assembly and annotation for the Eurasian minnow (Leuciscidae: Phoxinus phoxinus) provide evidence of haplotype diversity},
journal = {GigaScience},
year = {2025},
volume = {14},
publisher = {Oxford University Press},
month = {jan},
url = {https://academic.oup.com/gigascience/article/doi/10.1093/gigascience/giae116/7985877},
doi = {10.1093/gigascience/giae116}
}