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Eggshell pigment composition covaries with phylogeny but not with life history or with nesting ecology traits of British passerines

机译:蛋壳色素成分随系统发育而协变但与生命史或英国雀形目的筑巢生态特征无关

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摘要

No single hypothesis is likely to explain the diversity in eggshell coloration and patterning across birds, suggesting that eggshell appearance is most likely to have evolved to fulfill many nonexclusive functions. By controlling for nonindependent phylogenetic associations between related species, we describe this diversity using museum eggshells of 71 British breeding passerine species to examine how eggshell pigment composition and concentrations vary with phylogeny and with life‐history and nesting ecology traits. Across species, concentrations of biliverdin and protoporphyrin, the two main pigments found in eggshells, were strongly and positively correlated, and both pigments strongly covaried with phylogenetic relatedness. Controlling for phylogeny, cavity‐nesting species laid eggs with lower protoporphyrin concentrations in the shell, while higher biliverdin concentrations were associated with thicker eggshells for species of all nest types. Overall, these relationships between eggshell pigment concentrations and the biology of passerines are similar to those previously found in nonpasserine eggs, and imply that phylogenetic dependence must be considered across the class in further explanations of the functional significance of avian eggshell coloration.
机译:没有一个单一的假设可能解释禽类蛋壳颜色和图案的多样性,这表明蛋壳外观最有可能演变为履行许多非排他性功能。通过控制相关物种之间非独立的系统发生关联,我们使用71个英国繁殖的雀形目物种的博物馆蛋壳来描述这种多样性,以检查蛋壳色素成分和浓度如何随系统发育,生活史和筑巢生态特征而变化。在整个物种中,存在于蛋壳中的两种主要色素Biliverdin和Protoporphyrin的浓度呈强正相关,并且这两种色素与系统发育相关性也呈强协变关系。控制系统发育的巢穴物种在壳中产卵的原卟啉浓度较低,而对于所有巢类型的物种,较高的胆绿素浓度与较厚的蛋壳相关。总体而言,蛋壳色素浓度与雀形目生物学之间的这些关系与以前在非雀形目卵中发现的相似,这意味着在进一步解释禽蛋壳着色的功能意义时,必须在整个类别中考虑系统发育依赖性。

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