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October 23, 2025Nature Genetics11 citationsOpen Access

Complete genome assemblies of two mouse subspecies reveal structural diversity of telomeres and centromeres

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BFB. Magnus FrancisLGLanden GozashtiKCKevin R Costello

Key Points

  • Significant variability observed in telomeres and centromeres in C57BL/6J and CAST/EiJ mouse subspecies, contributing to genetic diversity.
  • Complete telomere-to-telomere genome assemblies added 213 Mb, comprising 517 protein-coding genes across both strains.
  • Assessment identified structural differences in the pseudoautosomal region and segmental duplications, revealing new genetic information.
  • Findings call for an improved understanding of mouse genome structure, emphasizing potential biomedical relevance in genetic research.

Abstract

Abstract It has been more than 20 years since the publication of the C57BL/6J mouse reference genome, which has been a key catalyst for understanding the biology of mammalian diseases. However, the mouse reference genome still lacks telomeres and centromeres, contains 281 chromosomal sequence gaps and only partially represents many biomedically relevant loci. Here we present the first telomere-to-telomere (T2T) mouse genomes for two key inbred strains, C57BL/6J and CAST/EiJ. These T2T genomes reveal substantial variability in telomere and centromere sizes and structural organization. We thus add an additional 213 Mb of new sequence to the reference genome, which contains 517 protein-coding genes. We also examined two important but incomplete loci in the mouse genome—the pseudoautosomal region (PAR) on the sex chromosomes and KRAB zinc-finger protein loci. We identified distant locations of the PAR boundary, different copy numbers and sizes of segmental duplications and a multitude of amino acid substitution mutations in PAR genes.

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Cite This Study

Francis et al. (2025) studied this question.

synapsesocial.com/papers/68f9840c1881b68f3b7ae939https://doi.org/10.1038/s41588-025-02367-z
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