Search bioRxiv⌕ Search

Biology subjects

Norden, K. K.

Publications and source records attributed to Norden, K. K..

2 recordsLinked to original sources

On metallic luster and iridescence in animal coloration

Some structural colors in nature are frequently described as metallic. For example, hummingbird plumage, jewel beetles and Morpho butterflies have this attribute. While much attention has been paid to describing the often-shifting hues of these structural colors, there has been little interest in explaining why they appear metallic. In this paper, we argue that the metallic luster (the metallic appearance or sheen) of some structural colors arises in part from a combination of two factors: a colored specular reflection and a very low diffuse reflection. Reflections with these characteristics are found in metals and are distinct from other material reflections in nature. We propose that metallic luster can be classified based on these two reflectance properties (colored specular reflection and low diffuse reflection). We also suggest that some of the ambiguity surrounding the term "iridescent structural color" can be traced to the frequent confounding of metallic luster with a common definition of iridescence: a shift of peak spectral wavelength (often referred to as hue) with viewing angle. We show using optical models and cross-polarization imaging of bird plumage that two types of structural colors that are often classified as "iridescent" and "non-iridescent" both display iridescence--but only one type has metallic luster. By considering metallic luster and iridescence separately, we simultaneously clarify terminology in structural colors and open up many new lines of inquiry regarding the perception of metallic luster in animals.

evolutionary biology↗

Evolution of brilliant iridescent feather nanostructures

The brilliant iridescent plumage of birds creates some of the most stunning color displays known in the natural world. Iridescent plumage colors are produced by nanostructures in feathers and have evolved in a wide variety of birds. The building blocks of these structures--melanosomes (melanin-filled organelles)--come in a variety of forms, yet how these different forms contribute to color production across birds remains unclear. Here, we leverage evolutionary analyses, optical simulations and reflectance spectrophotometry to uncover general principles that govern the production of brilliant iridescence. We find that a key feature that unites all melanosome forms in brilliant iridescent structures is thin melanin layers. Birds have achieved this in multiple ways: by decreasing the size of the melanosome directly, by hollowing out the interior, or by flattening the melanosome into a platelet. The evolution of thin melanin layers unlocks color-producing possibilities, more than doubling the range of colors that can be produced with a thick melanin layer and simultaneously increasing brightness. We discuss the implications of these findings for the evolution of iridescent structures in birds and propose two evolutionary paths to brilliant iridescence.

evolutionary biology↗