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Coping with climate change: limited behavioral responses to hot weather in a tropical carnivore.

Authors :
Rabaiotti, D.
Woodroffe, Rosie
Source :
Oecologia; Mar2019, Vol. 189 Issue 3, p587-599, 13p, 4 Charts, 3 Graphs
Publication Year :
2019

Abstract

Climate change is widely accepted to be one of the greatest threats to species globally. Identifying the species most at risk is, therefore, a conservation priority. Some species have the capacity to adapt to rising temperatures through changing their phenology, behavior, distribution, or physiology, and, therefore, may be more likely to persist under rising temperatures. Recent findings suggest that the African wild dog Lycaon pictus may be impacted by climate change, since reproductive success is consistently lower when pup-rearing coincides with periods of high ambient temperature. We used GPS collars, combined with generalized linear mixed-effects models, to assess wild dogs' potential to adapt to high ambient temperatures through flexible timing of hunting behavior. On days with higher maximum temperatures, wild dogs showed lower daytime activity and greater nocturnal activity, although nocturnal activity did not fully balance the decrease in daytime activity, particularly during the denning period. Increases in nocturnal activity were confined mainly to moonlit nights, and were seldom observed when packs were raising pups. Our findings suggest that nocturnal activity helps this cursorial hunter to cope with high daytime temperatures. However, wild dogs appear not to use this coping strategy when they are raising pups, suggesting that their resource needs may not be fulfilled during the pup-rearing period. Given that moonlight availability—which will not change as the climate changes—constrains wild dogs' nocturnal activity, the species may have insufficient behavioral plasticity to mitigate increasing diurnal temperatures. These findings raise concerns about climate change impacts on this endangered species, and highlight the need for behavior to be considered when assessing species' vulnerability to climate change. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00298549
Volume :
189
Issue :
3
Database :
Complementary Index
Journal :
Oecologia
Publication Type :
Academic Journal
Accession number :
135326233
Full Text :
https://doi.org/10.1007/s00442-018-04329-1