A molecular mechanism for bright color variation in parrots.

Arbore, Roberto; Barbosa, Soraia; Brejcha, Jindřich; Ogawa, Yohey; Liu, Yu; Nicolaï, Michaël P J; Pereira, Paulo; Sabatino, Stephen J et al. · Science · 2024

basic_science · Level V

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Abstract

Parrots produce stunning plumage colors through unique pigments called psittacofulvins. However, the mechanism underlying their ability to generate a spectrum of vibrant yellows, reds, and greens remains enigmatic. We uncover a unifying chemical basis for a wide range of parrot plumage colors, which result from the selective deposition of red aldehyde- and yellow carboxyl-containing psittacofulvin molecules in developing feathers. Through genetic mapping, biochemical assays, and single-cell genomics, we identified a critical player in this process, the aldehyde dehydrogenase <i>ALDH3A2</i>, which oxidizes aldehyde psittacofulvins into carboxyl forms in late-differentiating keratinocytes during feather development. The simplicity of the underlying molecular mechanism, in which a single enzyme influences the balance of red and yellow pigments, offers an explanation for the exceptional evolutionary lability of parrot coloration.

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