Non-Torpid Heterothermy in Mammals: Another Category along the Homeothermy–Hibernation Continuum

Author:

Levesque Danielle L1ORCID,Breit Ana M1ORCID,Brown Eric1ORCID,Nowack Julia2ORCID,Welman Shaun3ORCID

Affiliation:

1. School of Biology and Ecology, University of Maine , 04469 Orono, ME , USA

2. School of Biological and Environmental Sciences, Liverpool John Moores University , L3 3AF Liverpool , UK

3. Department of Zoology, Nelson Mandela University , Gqeberha 6031 , South Africa

Abstract

Synopsis Variability in body temperature is now recognized to be widespread among whole-body endotherms with homeothermy being the exception rather than the norm. A wide range of body temperature patterns exists in extant endotherms, spanning from strict homeothermy, to occasional use of torpor, to deep seasonal hibernation with many points in between. What is often lost in discussions of heterothermy in endotherms are the benefits of variations in body temperature outside of torpor. Endotherms that do not use torpor can still obtain extensive energy and water savings from varying levels of flexibility in normothermic body temperature regulation. Flexibility at higher temperatures (heat storage or facultative hyperthermia) can provide significant water savings, while decreases at cooler temperatures, even outside of torpor, can lower the energetic costs of thermoregulation during rest. We discuss the varying uses of the terms heterothermy, thermolability, and torpor to describe differences in the amplitude of body temperature cycles and advocate for a broader use of the term “heterothermy” to include non-torpid variations in body temperature.

Funder

National Science Foundation

Company of Biologists

University of Maine

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Animal Science and Zoology

Reference89 articles.

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