Convergent evolution through independent rearrangements in the primate amylase locus
Karageorgiou, C.; Ruhl, S.; Gokcumen, O.
Show abstract
Structurally complex genomic regions can foster evolutionary convergence by repeatedly generating gene duplications that yield similar expression patterns and traits across lineages. Focusing on the primate amylase locus, we leveraged high-quality genome assemblies from 53 primate species and multi-tissue transcriptomes from Old World monkeys to reconstruct the evolutionary history of recurrent duplications. We show that lineage-specific long terminal repeat retrotransposon insertions may be associated with initial structural instability, while subsequent duplications are primarily driven by non-allelic homologous recombination. Independent duplications in rhesus macaques, olive baboons, and great apes produced distinct amylase copies with convergent expression in pancreas and salivary glands and signals of episodic diversifying selection, consistent with emerging functional divergence. Our analyses indicate that a ancestral gene with dual pancreas and salivary expression in Catarrhini duplicated in great apes, facilitating subfunctionalization and regulatory rewiring. These findings illuminate how modular structural and regulatory variation drives evolutionary innovation and molecular convergence.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Still waters run deep: Large scale genome rearrangements in the evolution of morphologically conservative Polyplacophora 95%
- The evolutionary history of human spindle genes includes back-and-forth gene flow with Neandertals 95%
- Bacterial contribution to genesis of the novel germ line determinant oskar 95%
Similar papers in this journal
"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.