Preserved reptile scales retain microscopic features, revealing a new instance of convergent evolution
Riiska, C. A.; Schuett, G. W.; Mendelson, J. R.; Rieser, J. M.
Show abstract
Small-scale structures on biological surfaces can profoundly impact how animals move, appear, and interact with their environments. Such textures may be especially important for limbless reptiles, such as snakes and legless lizards, because their skin serves as the primary interface with the world around them. Here, we examine ventral microstructures of several limbless reptiles, which are hypothesized to be highly specialized to aid locomotion via frictional interactions. Inspired by prior studies that investigated potential links between microtextures, phylogeny, habitat, and locomotion--but that were limited by their reliance on shed skins--we characterized the structures present on preserved museum specimens and found that they are quantitatively similar to those found on shed skins. Using this result, we confirmed a previously hypothesized--but untested due to the lack of shed skins--third independent evolution of sidewinding-specific isotropic microtexture. Specifically, we examined a museum-preserved Bitis peringueyi specimen and identified a new instance of convergent evolution in sidewinding viper microstructures: the loss of micro-spikes (present on many snake species) and the appearance of micro-pits with a characteristic spacing. Our results reveal that museum-preserved specimens retain intact microtextures, greatly expanding the availability of samples for evolutionary studies.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Morphogenesis of the diamond-type stereom microlattice and the origin of saddle-shaped minimal surfaces in the echinoderm skeleton 93%
- Ex vivo SIM-AFM measurements reveal the spatial correlation of stiffness and molecular distributions in 3D living tissue 92%
- How a sticky fluid facilitates prey retention in a carnivorous pitcher plant (Nepenthes rafflesiana) 91%
Similar papers in this journal
- Structural color in Junonia butterflies evolves by tuning scale lamina thickness 95%
- Optical mapping of ground reaction force dynamics in freely behaving Drosophila melanogaster larvae 92%
- Extreme suction attachment performance from specialised insects living in mountain streams (Diptera: Blephariceridae) 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.