bioRxiv · 10.1101/2025.06.13.659549
Evolution of opsin genes in closely-related species of butterflies specialized in different microhabitats.
Abstract
How do adaptive processes acting on the coevolution of opsin genes shape the evolution of colour vision in animals? At large phylogenetic scales, natural selection due to the contrasted light environments has been found to impact the evolution of photoreceptor genes. However, in closely-related species, species interactions due to sexual selection or competition may also influence opsin evolution. Here, we investigate the diversification of opsin sequences and their expression in closely-related blue Morpho butterfly species, living in different vertical strata within tropical forests, to shed light on the biotic and abiotic selective pressures shaping the coordinated evolution of opsin genes. We combined comparative genomics, transcriptomics, and immunochemistry to characterize the expression and the spatial distribution of the opsin proteins found in the eyes of Morpho helenor. We detected a double duplication of the LW opsin and found unique ommatidial types compared to other butterfly species. We then investigated the evolution of opsin genes among 21 Morpho species, found signatures of positive selection on two opsin genes (LW3Rh and BRh), and identified key co-evolving amino-acids within and among these two opsin genes. We showed that such opsin evolution was correlated with both light environment and wing coloration, highlighting the joint effect of several selective pressures in the coordinated evolution of proteins.
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Ledamoisel, J., Dang, A., Devilliers, J., Marvillet, T., Lemoine, S., Lopez Villavicencio, M., Briscoe, A. D., Debat, V., Llaurens, V.. 2025-06-19. Evolution of opsin genes in closely-related species of butterflies specialized in different microhabitats.. https://doi.org/10.1101/2025.06.13.659549
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