Projects per year
Abstract
Climate warming is expected to increase the energy demands of ectotherms by accelerating their metabolic rates exponentially. However, this prediction ignores environmental complexity such as species interactions. Here, to better understand the metabolic costs of climate change for ectotherms, we reared three Drosophila species in either single-species or two-species cultures at different temperatures and projected adult metabolic responses under an intermediate climate-warming scenario across the global range of Drosophila. We determined that developmental acclimation to warmer temperatures can reduce the energetic cost of climate warming from 39% to ~16% on average by reducing the thermal sensitivity of metabolic rates. However, interspecific interactions among larvae can erode this benefit of developmental thermal acclimation by increasing the activity of adults that develop at warmer temperatures. Thus, by ignoring species interactions we risk underestimating the metabolic costs of warming by 3–16% on average.
| Original language | English |
|---|---|
| Pages (from-to) | 382–388 |
| Number of pages | 16 |
| Journal | Nature Climate Change |
| Volume | 13 |
| Issue number | 4 |
| DOIs | |
| Publication status | Published - Apr 2023 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 13 Climate Action
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Manipulative tests of metabolic theory
White, C. (Primary Chief Investigator (PCI))
16/03/22 → 31/12/24
Project: Research
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The Evolution of Biological Scaling
White, C. (Primary Chief Investigator (PCI)) & Alton, L. (Chief Investigator (CI))
1/01/18 → 31/12/21
Project: Research
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Interacting with change: inter-specific competition and climate change
Kellermann, V. (Primary Chief Investigator (PCI))
ARC - Australian Research Council, Monash University – Internal School Contribution
1/11/20 → 1/05/23
Project: Research
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