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羽毛反射率与鸟类性二态性的客观评估

Plumage Reflectance and the Objective Assessment of Avian Sexual Dichromatism.

作者信息

Cuthill I C, Bennett A T D, Partridge J C, Maier E J

出版信息

Am Nat. 1999 Feb;153(2):183-200. doi: 10.1086/303160.

Abstract

Assessment of color using human vision (or standards based thereon) is central to tests of many evolutionary hypotheses. Yet fundamental differences in color vision between humans and other animals call this approach into question. Here we use techniques for objectively assessing color patterns that avoid reliance on species-specific (e.g., human) perception. Reflectance spectra are the invariant features that we expect the animal's color cognition to have evolved to extract. We performed multivariate analyses on principal components derived from >2,600 reflectance spectra (300-720 nm) sampled in a stratified random design from different body regions of male and female starlings in breeding plumage. Starlings possess spatially complex plumage patterns and extensive areas of iridescence. Our study revealed previously unnoticed sex differences in plumage coloration and the nature of iridescent and noniridescent sex differences. Sex differences occurred in some body regions but not others, were more pronounced at some wavelengths (both ultraviolet and human visible), and involved differences in mean reflectance and spectral shape. Discriminant analysis based on principal components were sufficient to sex correctly 100% of our sample. If hidden sexual dichromatism is widespread, then it has important implications for classifications of animals as mono- or dimorphic and for taxonomic and conservation purposes.

摘要

利用人类视觉(或基于此的标准)评估颜色是许多进化假说检验的核心。然而,人类与其他动物在颜色视觉上的根本差异使这种方法受到质疑。在此,我们使用客观评估颜色模式的技术,避免依赖特定物种(如人类)的感知。反射光谱是我们期望动物的颜色认知进化以提取的不变特征。我们对从处于繁殖羽的雄性和雌性椋鸟不同身体部位以分层随机设计采样的2600多个反射光谱(300 - 720纳米)得出的主成分进行了多变量分析。椋鸟拥有空间复杂的羽毛图案和大面积的虹彩。我们的研究揭示了先前未被注意到的羽毛颜色的性别差异以及虹彩和非虹彩性别差异的本质。性别差异在某些身体部位出现而在其他部位未出现,在某些波长(紫外线和人类可见波长)更为明显,并且涉及平均反射率和光谱形状的差异。基于主成分的判别分析足以对我们样本中的100%正确进行性别鉴定。如果隐藏的两性异色现象普遍存在,那么它对于将动物分类为单态或双态以及对于分类学和保护目的具有重要意义。

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