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Updated: Jul 30, 2025

High-Throughput Assays of Critical Thermal Limits in Insects
Published on: June 15, 2020
Hummingbird foraging preferences during extreme heat events
Sabina Lucke Lawrence1, Jenny Hazlehurst1
1Department of Biological Sciences California State University East Bay Hayward California USA.
Abstract:
Climate change is projected to increase global mean annual temperatures as well as the frequency and intensity of extreme heat events. These changes are anticipated to alter the behavior of animals as they seek to thermoregulate in extreme heat. An important area of research is understanding how mutualistic interactions between animals and plants, such as pollination, will be affected by the cascading effects of extreme heat on animal foraging behavior. In this study, we used an experimental and observational approach to quantify the effects of extreme heat on hummingbird foraging preferences for nectar sources in shady versus sunny microsites. We also quantified pollen deposition using artificial stigmas at these sites to quantify potential cascading effects on plant reproduction. We hypothesized that hummingbirds would respond to extreme heat by preferentially foraging in shady microsites, and that this would reduce pollen deposition in sunny microsites on hot days. We found little support for this hypothesis, instead hummingbirds preferred to forage in sunny microsites regardless of ambient temperature. We also found weak evidence for higher pollen deposition in sunny microsites on hot days.
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Optimal Foraging
Frequency-dependent Selection
Responses to Heat and Cold Stress
Predator-Prey Interactions
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