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Updated: Aug 29, 2026

An Automated Method to Determine the Performance of Drosophila in Response to Temperature Changes in Space and Time
Published on: October 12, 2018
Allometric and nonallometric components of Drosophila wing shape respond differently to developmental temperature
Vincent Debat1, Mattieu Bégin, Hélène Legout
1Populations Génétique et Evolution, CNRS, Avenue de la Terrasse, 91198 Gif sur Yvette Cedex, France. debat@citrus.ucr.edu
Abstract:
Phenotypic plasticity of wing size and shape of Drosophila simulans was analyzed across the entire range of viable developmental temperatures with Procrustes geometric morphometric method. In agreement with previous studies, size clearly decreases when temperature increases. Wing shape variation was decomposed into its allometric (24%) and nonallometric (76%) components, and both were shown to involve landmarks located throughout the entire wing blade. The allometric component basically revealed a progressive, monotonous variation along the temperature. Surprisingly, nonallometric shape changes were highly similar at both extremes of the thermal range, suggesting that stress, rather than temperature per se, is the key developmental factor affecting wing shape.

