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Updated: May 2, 2026

Heat Tolerance Assays Using the Drosophila Activity Monitor System: A Guide to an Executable Application for Data Analysis
Published on: December 13, 2024
Improved heat tolerance in air drives the recurrent evolution of air-breathing
Folco Giomi1, Marco Fusi, Alberto Barausse
1Section of Integrative Ecophysiology, Alfred-Wegener-Institute for Polar and Marine Research, , Am Handelshafen 12, Bremerhaven 27570, Germany, DeFENS, Department of Food, Environmental and Nutritional Sciences, University of Milan, , Via Mangiagalli 25, Milan 20133, Italy, Department of Biology, University of Florence, , Via Madonna del Piano 6, Sesto Fiorentino 50019, Italy, Environmental Systems Analysis Laboratory, Department of Industrial Engineering, University of Padua, , via Marzolo 9, Padua 35131, Italy, Department of Zoology and Entomology, Rhodes University, , PO Box 94, Grahamstown 6140, South Africa.
Abstract:
The transition to air-breathing by formerly aquatic species has occurred repeatedly and independently in fish, crabs and other animal phyla, but the proximate drivers of this key innovation remain a long-standing puzzle in evolutionary biology. Most studies attribute the onset of air-breathing to the repeated occurrence of aquatic hypoxia; however, this hypothesis leaves the current geographical distribution of the 300 genera of air-breathing crabs unexplained. Here, we show that their occurrence is mainly related to high environmental temperatures in the tropics. We also demonstrate in an amphibious crab that the reduced cost of oxygen supply in air extends aerobic performance to higher temperatures and thus widens the animal's thermal niche. These findings suggest that high water temperature as a driver consistently explains the numerous times air-breathing has evolved. The data also indicate a central role for oxygen- and capacity-limited thermal tolerance not only in shaping sensitivity to current climate change but also in underpinning the climate-dependent evolution of animals, in this case the evolution of air-breathing.
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