A genetic mechanism for sexual dichromatism in birds.

Gazda, Małgorzata A; Araújo, Pedro M; Lopes, Ricardo J; Toomey, Matthew B; Andrade, Pedro; Afonso, Sandra; Marques, Cristiana; Nunes, Luís et al. · Science · 2020

basic_science · Level V

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Abstract

Sexual dichromatism, a difference in coloration between males and females, may be due to sexual selection for ornamentation and mate choice. Here, we show that carotenoid-based dichromatism in <i>mosaic</i> canaries, a hybrid phenotype that arises in offspring of the sexually dichromatic red siskin and monochromatic canaries, is controlled by the gene that encodes the carotenoid-cleaving enzyme β-carotene oxygenase 2 (<i>BCO2</i>). Dichromatism in <i>mosaic</i> canaries is explained by differential carotenoid degradation in the integument, rather than sex-specific variation in physiological functions such as pigment uptake or transport. Transcriptome analyses suggest that carotenoid degradation in the integument might be a common mechanism contributing to sexual dichromatism across finches. These results suggest that differences in ornamental coloration between sexes can evolve through simple molecular mechanisms controlled by genes of major effect.

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