Tropical butterflies use thermal buffering and thermal tolerance as alternative strategies to cope with temperature increase

Author:

Ashe‐Jepson Esme1ORCID,Arizala Cobo Stephany2,Basset Yves2345ORCID,Bladon Andrew J.1ORCID,Kleckova Irena3ORCID,Laird‐Hopkins Benita C.346ORCID,Mcfarlane Alex2,Sam Katerina34ORCID,Savage Amanda F.2,Zamora Ana Cecilia2,Turner Edgar C.1,Lamarre Greg P. A.23

Affiliation:

1. Department of Zoology University of Cambridge Cambridge UK

2. ForestGEO Smithsonian Tropical Research Institute Panama Republic of Panama

3. Biology Centre of the Czech Academy of Sciences Institute of Entomology České Budějovice Czech Republic

4. Faculty of Science University of South Bohemia České Budějovice Czech Republic

5. Maestria de Entomologia University of Panama Panama Republic of Panama

6. Smithsonian Tropical Research Institute Panama Republic of Panama

Abstract

Abstract Climate change poses a severe threat to many taxa, with increased mean temperatures and frequency of extreme weather events predicted. Insects can respond to high temperatures using behaviour, such as angling their wings away from the sun or seeking cool local microclimates to thermoregulate or through physiological tolerance. In a butterfly community in Panama, we compared the ability of adult butterflies from 54 species to control their body temperature across a range of air temperatures (thermal buffering ability), as well as assessing the critical thermal maxima for a subset of 24 species. Thermal buffering ability and tolerance were influenced by family, wing length, and wing colour, with Pieridae, and butterflies that are large or darker in colour having the strongest thermal buffering ability, but Hesperiidae, small, and darker butterflies tolerating the highest temperatures. We identified an interaction between thermal buffering ability and physiological tolerance, where species with stronger thermal buffering abilities had lower thermal tolerance, and vice versa. This interaction implies that species with more stable body temperatures in the field may be more vulnerable to increases in ambient temperatures, for example heat waves associated with ongoing climate change. Our study demonstrates that tropical species employ diverse thermoregulatory strategies, which is also reflected in their sensitivity to temperature extremes.

Publisher

Wiley

Subject

Animal Science and Zoology,Ecology, Evolution, Behavior and Systematics

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