City limits: Heat tolerance is influenced by body size and hydration state in an urban ant community
Document Type
Article
Publication Title
Ecology and Evolution
Department
Biological Sciences
ISSN
20457758
Volume
10
Issue
11
DOI
10.1002/ece3.6247
First Page
4944
Last Page
4955
Publication Date
4-15-2020
Abstract
Cities are rapidly expanding, and global warming is intensified in urban environments due to the urban heat island effect. Therefore, urban animals may be particularly susceptible to warming associated with ongoing climate change. We used a comparative and manipulative approach to test three related hypotheses about the determinants of heat tolerance or critical thermal maximum (CTmax) in urban ants—specifically, that (a) body size, (b) hydration status, and (c) chosen microenvironments influence CTmax. We further tested a fourth hypothesis that native species are particularly physiologically vulnerable in urban environments. We manipulated water access and determined CTmax for 11 species common to cities in California's Central Valley that exhibit nearly 300-fold variation in body size. There was a moderate phylogenetic signal influencing CTmax, and inter (but not intra) specific variation in body size influenced CTmax where larger species had higher CTmax. The sensitivity of ants’ CTmax to water availability exhibited species-specific thresholds where short-term water limitation (8 hr) reduced CTmax and body water content in some species while longer-term water limitation (32 hr) was required to reduce these traits in other species. However, CTmax was not related to the temperatures chosen by ants during activity. Further, we found support for our fourth hypothesis because CTmax and estimates of thermal safety margin in native species were more sensitive to water availability relative to non-native species. In sum, we provide evidence of links between heat tolerance and water availability, which will become critically important in an increasingly warm, dry, and urbanized world that others have shown may be selecting for smaller (not larger) body size.
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This work is licensed under a Creative Commons Attribution 4.0 International License.
Recommended Citation
Johnson, Dustin J. and Stahlschmidt, Zachary R., "City limits: Heat tolerance is influenced by body size and hydration state in an urban ant community" (2020). Pacific Faculty Work. 248.
https://scholarlycommons.pacific.edu/all-faculty/248