Single-library chromosome-scale diploid assemblies of vole genomes resolve a species-specific duplication implicated in pair bonding.
- Abuelanin, Mohamed;
- Kaya, Gulhan;
- Lake, Juniper A;
- Lambert, Christine;
- Wu, Melody V;
- Berendzen, Kristen M;
- Wood, Jonathan;
- Krasheninnikova, Ksenia;
- Solomon, Nancy G;
- Donaldson, Zoe R;
- Bales, Karen L;
- Howe, Kerstin;
- Korlach, Jonas;
- Manoli, Devanand;
- Tollkuhn, Jessica;
- Dennis, Megan Y
Published Web Location
https://www.cell.com/cell-genomics/fulltext/S2666-979X(26)00198-9Abstract
Comparing prairie voles (Microtus ochrogaster), a species that forms lasting pair bonds and exhibits biparental care, with meadow voles (Microtus pennsylvanicus), a non-monogamous species showing maternal care only, provides a framework to examine the genomic basis of behavioral divergence over short evolutionary time. Here, we develop a simplified assembly approach combining PacBio HiFi and CiFi sequencing in a single library and run, producing high-quality contiguous chromosome-scale diploid prairie and meadow vole genomes (2.3 Gbp). Comparative analysis reveals substantial differences, including near-complete Y chromosome divergence and a prairie-vole-specific duplication of Avpr1a, a vasopressin receptor gene implicated in social bonding and autism in humans. These extensive genomic changes suggest rapid chromosome evolution as a driver of the dramatic Microtus radiation, generating ∼60 vole species in >2 million years. This single-library approach facilitates a simplified and more affordable assembly workflow, producing near-complete genomes of diverse species using one sequencing platform.
Many UC-authored scholarly publications are freely available on this site because of the UC's open access policies. Let us know how this access is important for you.