bioRxiv · 10.1101/2020.05.26.116533
The gene cortex controls scale colour identity in Heliconius
Abstract
In Heliconius butterflies, wing pattern diversity is controlled by a few genes of large effect that regulate colour pattern switches between morphs and species across a large mimetic radiation. One of these genes, cortex, has been repeatedly associated with colour pattern evolution in butterflies. Here we carried out CRISPR knock-outs in multiple Heliconius species and show that cortex is a major determinant of scale cell identity. Chromatin accessibility profiling and introgression scans identified cis-regulatory regions associated with discrete phenotypic switches. CRISPR perturbation of these regions in black hindwing genotypes recreated a yellow bar, revealing their spatially limited activity. In the H. melpomene/timareta lineage, the candidate CRE from yellow-barred phenotype morphs is interrupted by a transposable element, suggesting that cis-regulatory structural variation underlies these mimetic adaptations. Our work shows that cortex functionally controls scale colour fate and that its cis-regulatory regions control a phenotypic switch in a modular and pattern-specific fashion.
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Livraghi, L., Hanly, J. J., Loh, L. S., Ren, A., Warren, I. A., Concha, C., Wright, C., Walker, J. M., Foley, J., Arenas-Castro, H., Brenes, L. R., Martin, A., McMillan, W. O., Jiggins, C. D.. 2020-05-29. The gene cortex controls scale colour identity in Heliconius. https://doi.org/10.1101/2020.05.26.116533
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