Hierarchical morphogenesis of swallowtail butterfly wing scale nanostructures

Author:

Seah Kwi Shan12ORCID,Saranathan Vinodkumar12345ORCID

Affiliation:

1. Division of Science, Yale-NUS College

2. Department of Biological Science, National University of Singapore

3. NUS Nanoscience and Nanotechnology Initiative (NUSNNI-NanoCore), National University of Singapore

4. Lee Kong Chian Natural History Museum, National University of Singapore

5. Present Address: Division of Sciences, School of Interwoven Arts and Sciences, Krea University, Central Expressway

Abstract

The study of color patterns in the animal integument is a fundamental question in biology, with many lepidopteran species being exemplary models in this endeavor due to their relative simplicity and elegance. While significant advances have been made in unraveling the cellular and molecular basis of lepidopteran pigmentary coloration, the morphogenesis of wing scale nanostructures involved in structural color production is not well understood. Contemporary research on this topic largely focuses on a few nymphalid model taxa (e.g., Bicyclus, Heliconius), despite an overwhelming diversity in the hierarchical nanostructural organization of lepidopteran wing scales. Here, we present a time-resolved, comparative developmental study of hierarchical scale nanostructures in Parides eurimedes and five other papilionid species. Our results uphold the putative conserved role of F-actin bundles in acting as spacers between developing ridges, as previously documented in several nymphalid species. Interestingly, while ridges are developing in P. eurimedes, plasma membrane manifests irregular mesh-like crossribs characteristic of Papilionidae, which delineate the accretion of cuticle into rows of planar disks in between ridges. Once the ridges have grown, disintegrating F-actin bundles appear to reorganize into a network that supports the invagination of plasma membrane underlying the disks, subsequently forming an extruded honeycomb lattice. Our results uncover a previously undocumented role for F-actin in the morphogenesis of complex wing scale nanostructures, likely specific to Papilionidae.

Funder

Society for the Study of Evolution

Yale-NUS College

National Research Foundation Singapore

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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