Prediction of individual differences in non-iridescent structural plumage colour from nanostructural periodicity and regularity

Author:

Hegyi Gergely12ORCID,Laczi Miklós123ORCID,Wacha András4ORCID,Gyarmathy Helga1,Klein Ákos3,Rosivall Balázs1ORCID,Sarkadi Fanni1ORCID,Szabó Gyula15ORCID,Török János12ORCID

Affiliation:

1. Department of Systematic Zoology and Ecology, ELTE Eötvös Loránd University, Pázmány Péter sétány 1/C , Budapest 1117, Hungary

2. HUN-REN-ELTE-MTM Integrative Ecology Research Group, Pázmány Péter sétány 1/C , Budapest 1117, Hungary

3. The Barn Owl Foundation, Temesvári út 8 , Orosztony 8744, Hungary

4. Biological Nanochemistry Research Group, Institute of Materials and Environmental Chemistry, HUN-REN Research Centre for Natural Sciences, Magyar Tudósok körútja 2 , Budapest 1117, Hungary

5. Lendület Ecosystem Services Research Group, Institute of Ecology and Botany, HUN-REN Centre for Ecological Research, Alkotmány út 2-4 , Vácrátót 2163, Hungary

Abstract

Non-iridescent structural plumage reflectance is a sexually selected indicator of individual quality in several bird species. However, the structural basis of individual differences remains unclear. In particular, the dominant periodicity of the quasi-ordered feather barb nanostructure is of key importance in colour generation, but no study has successfully traced back reflectance parameters, and particularly hue, to nanostructural periodicity, although this would be key to deciphering the information content of individual variation. We used matrix small-angle X-ray scattering measurements of intact, stacked feather samples from the blue tit crown to estimate the sex-dependence and individual variation of nanostructure and its effects on light reflectance. Measures of nanostructural periodicity successfully predicted brightness, ultraviolet chroma and also hue, with statistically similar effects in the two sexes. However, we also observed a lack of overall effect of the nanostructural inhomogeneity estimate on reflectance chromaticity, sex-dependent accuracy in hue prediction and strong sex-dependence in position estimation error. We suggest that reflectance attributes are modified by other feather structures in a sex-specific manner, and that within-individual variation in nanostructural parameters exists within or among feathers and this confounds the interpretation of structure–reflectance relationships at the plumage area level.

Funder

Nemzeti Kutatási Fejlesztési és Innovációs Hivatal

Publisher

The Royal Society

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