How melanism affects the sensitivity of lizards to climate change
- Author
- Sebastian Mader, Jonathan Goldenberg (UGent) , Federico Massetti, Karen Bisschop (UGent) , Liliana D'Alba Altamirano (UGent) , Rampal S. Etienne, Susana Clusella‐Trullas and Matthew Shawkey (UGent)
- Organization
- Project
- Abstract
- 1. The impact of climate change on global biodiversity is firmly established, but the differential effect of climate change on populations within the same species is rarely considered. In ectotherms, melanism (i.e. darker integument due to heavier deposition of melanin) can significantly influence thermoregulation, as dark individuals generally heat more and faster than bright ones. Therefore, darker ectotherms might be more susceptible to climate change. 2. Using the colour-polyphenic lizard Karusasaurus polyzonus (Squamata: Cordylidae), we hypothesized that, under future climatic projections, darker populations will decrease their activity time more than brighter ones due to their greater potential for overheating. 3. To test this, we mechanistically modelled the body temperatures of 56 individuals from five differently coloured populations under present and future climate conditions. We first measured morphological traits and integumentary reflectance from live animals, and then collected physiological data from the literature. We used a biophysical model to compute activity time of individual lizards as proxy for their viability, and thereby predict how different populations will cope with future climate conditions. 4. Contrary to our expectations, we found that all populations will increase activity time and, specifically, that darker populations will become relatively more active than bright ones. This suggests that darker populations of K. polyzonus may benefit from global warming. 5. Our study emphasizes the importance of accounting for variation between populations when studying responses to climate change, as we must consider these variations to develop efficient and specific conservation strategies.
- Keywords
- Ecology, Evolution, Behavior and Systematics, global warming, activity time, integument absorptivity, Karoo Girdled lizard, mechanistic model, niche model, CORDYLID LIZARDS, PHYSIOLOGICAL-MECHANISMS, GOVERNMENT FAILURE, BODY-TEMPERATURE, THERMAL MELANISM, EXTINCTION RISK, HEAT-BALANCE, EVOLUTION, THERMOREGULATION, COLORATION
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-8746648
- MLA
- Mader, Sebastian, et al. “How Melanism Affects the Sensitivity of Lizards to Climate Change.” FUNCTIONAL ECOLOGY, vol. 36, no. 4, 2022, pp. 812–25, doi:10.1111/1365-2435.13993.
- APA
- Mader, S., Goldenberg, J., Massetti, F., Bisschop, K., D’Alba Altamirano, L., Etienne, R. S., … Shawkey, M. (2022). How melanism affects the sensitivity of lizards to climate change. FUNCTIONAL ECOLOGY, 36(4), 812–825. https://doi.org/10.1111/1365-2435.13993
- Chicago author-date
- Mader, Sebastian, Jonathan Goldenberg, Federico Massetti, Karen Bisschop, Liliana D’Alba Altamirano, Rampal S. Etienne, Susana Clusella‐Trullas, and Matthew Shawkey. 2022. “How Melanism Affects the Sensitivity of Lizards to Climate Change.” FUNCTIONAL ECOLOGY 36 (4): 812–25. https://doi.org/10.1111/1365-2435.13993.
- Chicago author-date (all authors)
- Mader, Sebastian, Jonathan Goldenberg, Federico Massetti, Karen Bisschop, Liliana D’Alba Altamirano, Rampal S. Etienne, Susana Clusella‐Trullas, and Matthew Shawkey. 2022. “How Melanism Affects the Sensitivity of Lizards to Climate Change.” FUNCTIONAL ECOLOGY 36 (4): 812–825. doi:10.1111/1365-2435.13993.
- Vancouver
- 1.Mader S, Goldenberg J, Massetti F, Bisschop K, D’Alba Altamirano L, Etienne RS, et al. How melanism affects the sensitivity of lizards to climate change. FUNCTIONAL ECOLOGY. 2022;36(4):812–25.
- IEEE
- [1]S. Mader et al., “How melanism affects the sensitivity of lizards to climate change,” FUNCTIONAL ECOLOGY, vol. 36, no. 4, pp. 812–825, 2022.
@article{8746648,
abstract = {{1. The impact of climate change on global biodiversity is firmly established, but the differential effect of climate change on populations within the same species is rarely considered. In ectotherms, melanism (i.e. darker integument due to heavier deposition of melanin) can significantly influence thermoregulation, as dark individuals generally heat more and faster than bright ones. Therefore, darker ectotherms might be more susceptible to climate change.
2. Using the colour-polyphenic lizard Karusasaurus polyzonus (Squamata: Cordylidae), we hypothesized that, under future climatic projections, darker populations will decrease their activity time more than brighter ones due to their greater potential for overheating.
3. To test this, we mechanistically modelled the body temperatures of 56 individuals from five differently coloured populations under present and future climate conditions. We first measured morphological traits and integumentary reflectance from live animals, and then collected physiological data from the literature. We used a biophysical model to compute activity time of individual lizards as proxy for their viability, and thereby predict how different populations will cope with future climate conditions.
4. Contrary to our expectations, we found that all populations will increase activity time and, specifically, that darker populations will become relatively more active than bright ones. This suggests that darker populations of K. polyzonus may benefit from global warming.
5. Our study emphasizes the importance of accounting for variation between populations when studying responses to climate change, as we must consider these variations to develop efficient and specific conservation strategies.}},
author = {{Mader, Sebastian and Goldenberg, Jonathan and Massetti, Federico and Bisschop, Karen and D'Alba Altamirano, Liliana and Etienne, Rampal S. and Clusella‐Trullas, Susana and Shawkey, Matthew}},
issn = {{0269-8463}},
journal = {{FUNCTIONAL ECOLOGY}},
keywords = {{Ecology,Evolution,Behavior and Systematics,global warming,activity time,integument absorptivity,Karoo Girdled lizard,mechanistic model,niche model,CORDYLID LIZARDS,PHYSIOLOGICAL-MECHANISMS,GOVERNMENT FAILURE,BODY-TEMPERATURE,THERMAL MELANISM,EXTINCTION RISK,HEAT-BALANCE,EVOLUTION,THERMOREGULATION,COLORATION}},
language = {{eng}},
number = {{4}},
pages = {{812--825}},
title = {{How melanism affects the sensitivity of lizards to climate change}},
url = {{http://doi.org/10.1111/1365-2435.13993}},
volume = {{36}},
year = {{2022}},
}
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