ArticleProceedings. Biological sciences2019
Red carotenoids and associated gene expression explain colour variation in frillneck lizards.
Article in Proceedings. Biological sciences, 2019. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed, 30 citations in OpenAlex.
- Expression patterns of melanin-related genes are linked to crypsis and conspicuousness in a pumpkin toadlet.Molecular ecology · 2025Article
- Genetic Basis and Evolutionary Forces of Sexually Dimorphic Color Variation in a Toad-Headed Agamid Lizard.Molecular biology and evolution · 2024Article
- Whole Genome Resequencing Reveals Selection Signals Related to Wool Color in Sheep.Animals : an open access journal from MDPI · 2023Article
- Pigment Identification and Gene Expression Analysis during Erythrophore Development in Spotted Scat (International journal of molecular sciences · 2023Article
- Astaxanthin: Past, Present, and Future.Marine drugs · 2023Review
- Colour Variation in the Crocodile Lizard (Biology · 2022Article
- The genomics of mimicry: Gene expression throughout development provides insights into convergent and divergent phenotypes in a Müllerian mimicry system.Molecular ecology · 2021Article
- Transcriptomic Analysis of Skin Color in Anole Lizards.Genome biology and evolution · 2021Article
- Testosterone regulatesProceedings. Biological sciences · 2020Article
- Many functionally connected loci foster adaptive diversification along a neotropical hybrid zone.Science advances · 2020Article
- Red carotenoids and associated gene expression explain colour variation in frillneck lizards.Proceedings. Biological sciences · 2019Article
Corrections and comments
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Authors and funding
6 authors at 2 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
A long-standing hypothesis in evolutionary ecology is that red-orange ornamental colours reliably signal individual quality owing to limited dietary availability of carotenoids and metabolic costs associated with their production, such as the bioconversion of dietary yellow carotenoids to red ketocarotenoids. However, in ectothermic vertebrates, these colours can also be produced by self-synthesized pteridine pigments. As a consequence, the relative ratio of pigment types and their biochemical and genetic basis have implications for the costs and information content of colour signals; yet they remain poorly known in most taxonomic groups. We tested whether red- and yellow-frilled populations of the frillneck lizard, Chlamydosaurus kingii, differ in the ratio of different biochemical classes of carotenoid and pteridine pigments, and examined associated differences in gene expression. We found that, unlike other squamate reptiles, red hues derive from a higher proportion of ketocarotenoids relative to both dietary yellow carotenoids and to pteridines. Whereas red frill skin showed higher expression of several genes associated with carotenoid metabolism, yellow frill skin showed higher expression of genes associated with steroid hormones. Based on the different mechanisms underlying red and yellow signals, we hypothesize that frill colour conveys different information in the two populations. More generally, the data expand our knowledge of the genetic and biochemical basis of colour signals in vertebrates.
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