Cooling requirements fueled the collapse of a desert bird community from climate change

Потребности в охлаждении способствовали коллапсу сообщества пустынных птиц вследствие изменения климата
Eric A. Riddell, Kelly J. Iknayan, Blair O. Wolf, Barry Sinervo, Steven R. Beissinger
2019-09-30

Bergmann's ruleMojave Desert birdsclimate-driven extinctionevaporative coolingthermoregulatory costs
Climate change threatens global biodiversity by increasing extinction risk, yet few studies have uncovered a physiological basis of climate-driven species declines. Maintaining a stable body temperature is a fundamental requirement for homeothermic animals, and water is a vital resource that facilitates thermoregulation through evaporative cooling, especially in hot environments. Here, we explore the potential for thermoregulatory costs to underlie the community collapse of birds in the Mojave Desert over the past century in response to climate change. The probability of persistence was lowest for species occupying the warmest and driest sites, which imposed the greatest cooling costs. We developed a general model of heat flux to evaluate whether water requirements for evaporative cooling contributed to species' declines by simulating thermoregulatory costs in the Mojave Desert for 50 bird species representing the range of observed declines. Bird species' declines were positively associated with climate-driven increases in water requirements for evaporative cooling and exacerbated by large body size, especially for species with animal-based diets. Species exhibiting reductions in body size across their range saved up to 14% in cooling costs and experienced less decline than species without size reductions, suggesting total cooling costs as a mechanism underlying Bergmann's rule. Reductions in body size, however, are unlikely to offset the 50 to 78% increase in cooling costs threatening desert birds from future climate change. As climate change spreads warm, dry conditions across the planet, water requirements are increasingly likely to drive population declines, providing a physiological basis for climate-driven extinctions.
1
Across 50 bird species, climate-driven increases in water requirements for evaporative cooling were positively associated with population declines.
2
Bird persistence in the Mojave Desert was lowest at the warmest, driest sites, where thermoregulatory cooling costs were greatest.
3
Body-size reductions are unlikely to offset the projected 50–78% increase in cooling costs from future climate change, implicating water demands as a mechanism of desert-bird declines.
4
Large-bodied species, particularly those with animal-based diets, experienced greater climate-related declines because of higher cooling requirements.
5
Species that reduced body size saved up to 14% in cooling costs and declined less than species without size reductions.

The Mojave Desert bird community, including 50 bird species exposed to climate change

Climate-driven water requirements and thermoregulatory cooling costs, including their effects on species persistence, body-size adaptation, and population decline

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2019-09-30
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Eric A. Riddell
Kelly J. Iknayan
Blair O. Wolf
Barry Sinervo
Steven R. Beissinger
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