Hanley Daniel, Grim Tomáš, Cassey Phillip, Hauber Mark E
Department of Zoology and Laboratory of Ornithology, Palacký University, 17. listopadu 50, Olomouc 77146, Czech Republic
Department of Zoology and Laboratory of Ornithology, Palacký University, 17. listopadu 50, Olomouc 77146, Czech Republic.
Biol Lett. 2015 May;11(5):20150087. doi: 10.1098/rsbl.2015.0087.
Birds' eggshells are renowned for their striking colours and varied patterns. Although often considered exceptionally diverse, we report that avian eggshell coloration, sampled here across the full phylogenetic diversity of birds, occupies only 0.08-0.10% of the avian perceivable colour space. The concentrations of the two known tetrapyrrole eggshell pigments (protoporphyrin and biliverdin) are generally poor predictors of colour, both intra- and interspecifically. Here, we show that the constrained diversity of eggshell coloration can be accurately predicted by colour mixing models based on the relative contribution of both pigments and we demonstrate that the models' predictions can be improved by accounting for the reflectance of the eggshell's calcium carbonate matrix. The establishment of these proximate links between pigmentation and colour will enable future tests of hypotheses on the functions of perceived avian eggshell colours that depend on eggshell chemistry. More generally, colour mixing models are not limited to avian eggshell colours but apply to any natural colour. Our approach illustrates how modelling can aid the understanding of constraints on phenotypic diversity.
鸟类的蛋壳以其醒目的颜色和多样的图案而闻名。尽管通常被认为极其多样,但我们报告称,在此处对鸟类全系统发育多样性进行采样的情况下,鸟类蛋壳颜色仅占据鸟类可感知颜色空间的0.08 - 0.10%。两种已知的四吡咯蛋壳色素(原卟啉和胆绿素)的浓度,无论在种内还是种间,通常都不是颜色的良好预测指标。在此,我们表明基于两种色素的相对贡献的颜色混合模型能够准确预测蛋壳颜色的有限多样性,并且我们证明通过考虑蛋壳碳酸钙基质的反射率可以改进模型的预测。色素沉着与颜色之间这些直接联系的建立,将使未来能够对依赖于蛋壳化学性质的鸟类蛋壳颜色的功能假说进行检验。更普遍地说,颜色混合模型不仅限于鸟类蛋壳颜色,而是适用于任何自然颜色。我们的方法说明了建模如何有助于理解对表型多样性的限制。