Sfrp2 is a multifunctional regulator of rodent color patterns
Johnson, M. R.; Li, S.; Guerrero-Juarez, C. F.; Miller, P.; Brack, B. J.; Mereby, S.; Feigin, C. Y.; Gaska, J.; Ploss, A.; Nie, Q.; Rivera-Perez, J. A.; Shvartsman, S. Y.; Mallarino, R.
Show abstract
Animal pigment patterns are excellent models to elucidate mechanisms of biological organization. Although theoretical simulations, such as Turing reaction-diffusion systems, recapitulate many animal patterns, they are insufficient to account for those showing a high degree of spatial organization and reproducibility. Here, we compare the coats of the African striped mouse (Rhabdomys pumilio) and the laboratory mouse (Mus musculus) to study the molecular mechanisms controlling stripe pattern formation. By combining transcriptomics, mathematical modeling, and mouse transgenics, we show that Sfrp2 regulates the distribution of hair follicles and establishes an embryonic prepattern that foreshadows pigment stripes. Moreover, by developing and employing in vivo gene editing experiments in striped mice, we find that Sfrp2 knockout is sufficient to alter the stripe pattern. Strikingly, mutants also exhibit changes in coat color, revealing an additional function of Sfrp2 in regulating hair color. Thus, a single factor controls coat pattern formation by acting both as an orienting signaling mechanism and a modulator of pigmentation. By uncovering a multifunctional regulator of stripe formation, our work provides insights into the mechanisms by which spatial patterns are established in developing embryos and the molecular basis of phenotypic novelty.
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