Massive Chromosome Fission and Speciation in Asian River Chub: Integrating Kinetochore Reproduction Theory with Transposable Element Dynamics
Tai, J.-H.; Wang, T.-Y.; Ma, G.-C.; Wu, Y.-W.; Yu, T.-H.; Wang, C.-F.; Liao, T.-Y.; Huang, S.-P.; Wang, F.-Y.; Terai, Y.; Wu, T.-H.; Hsu, C.-H.; Yu, H.-T.; Shao, K.-T.; Chaw, S.-M.; Wang, H.-Y.
Show abstract
Chromosomal speciation poses a paradox: if rearrangements cause postmating isolation, how do they persist and spread? We propose that centromere remodeling, driven by transposable element accumulation, provides a mechanistic solution. In Opsariichthys, a hyper-diverse lineage of Asian river chub with 2N = 76-78 chromosomes, we identify [~]15 fission events coinciding with TE-fueled centromeric DNA expansion, potentially linked to a mutation in the PIWI1 protein. These expansions enable neokinetochore formation, allowing fissioned chromosomes to segregate faithfully, while subsequent rearrangements disrupt pairing and reduce gene flow. Comparative genomics reveals that fissioned chromosomes exhibit lower migration and greater divergence, acting as reproductive barriers. Our findings show that TE-mediated kinetochore duplication can facilitate extensive chromosome fission without meiotic disruption, providing a viable and previously underappreciated path to rapid speciation.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Muscle cell type diversification driven by extensive gene duplications 96%
- Transposable elements strongly contribute to cell-specific and species-specific looping diversity in mammalian genomes. 95%
- Transposable element over-accumulation in autopolyploids results from relaxed purifying selection and provides variants for rapid local adaptation 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.