Thermal-safety margins and the necessity of thermoregulatory behavior across latitude and elevation
Author(s) -
Jennifer M. Sunday,
Amanda E. Bates,
Michael Kearney,
Robert K. Colwell,
Nicholas K. Dulvy,
John T. Longino,
Raymond B. Huey
Publication year - 2014
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1316145111
Subject(s) - ectotherm , extreme heat , latitude , habitat , thermoregulation , global warming , environmental science , atmospheric sciences , extreme cold , climate change , high latitude , ecology , elevation (ballistics) , operative temperature , climatology , meteorology , geography , biology , thermal , geology , physics , geodesy , astronomy
Physiological thermal-tolerance limits of terrestrial ectotherms often exceed local air temperatures, implying a high degree of thermal safety (an excess of warm or cold thermal tolerance). However, air temperatures can be very different from the equilibrium body temperature of an individual ectotherm. Here, we compile thermal-tolerance limits of ectotherms across a wide range of latitudes and elevations and compare these thermal limits both to air and to operative body temperatures (theoretically equilibrated body temperatures) of small ectothermic animals during the warmest and coldest times of the year. We show that extreme operative body temperatures in exposed habitats match or exceed the physiological thermal limits of most ectotherms. Therefore, contrary to previous findings using air temperatures, most ectotherms do not have a physiological thermal-safety margin. They must therefore rely on behavior to avoid overheating during the warmest times, especially in the lowland tropics. Likewise, species living at temperate latitudes and in alpine habitats must retreat to avoid lethal cold exposure. Behavioral plasticity of habitat use and the energetic consequences of thermal retreats are therefore critical aspects of species' vulnerability to climate warming and extreme events.
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