bioRxiv · 10.1101/2024.05.22.595308
GTP cyclohydrolase 1 and axanthism in ball pythons: a new vertebrate model for pterin-based pigmention
Abstract
Pterin pigments are responsible for many of the bright colours observed across the animal kingdom. However, unlike melanin, the genetics of pterin-based pigmentation has received relatively little attention in animal colouration studies. Here, we investigate a lineage of axanthic ball pythons (Python regius) found in captivity as a model system to study pterin pigmentation in vertebrates. By crowdsourcing shed skin samples from commercial breeders and applying a case-control study design, we utilized whole-genome pool sequencing (pool-seq) and variant annotation. We identified a premature stop codon in the gene GTP cyclohydrolase II (gch2), which is associated with the axanthic phenotype. GCH2 catalyzes the first rate-limiting step in riboflavin biosynthesis. This study provides the first identification of an axanthism-associated gene in vertebrates and highlights the utility of ball pythons as a model to study pterin-based pigmentation.
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Garcia-Elfring, A., Roffey, H. L., Abergas, J. M., Hendry, A. P., Barrett, R. D. H.. 2024-05-26. GTP cyclohydrolase 1 and axanthism in ball pythons: a new vertebrate model for pterin-based pigmention. https://doi.org/10.1101/2024.05.22.595308
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