Biology

Some zebra finches tolerate extreme temperatures better than others

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ThermoregulationAnimal physiology

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This study examined body temperature variation in captive male zebra finches over 14 days and found that individual birds showed consistent, repeatable differences in their body temperature patterns. Birds with higher daytime body temperatures demonstrated better cold tolerance (higher summit metabolic rate) and elevated body temperature during forced exercise, though daytime body temperature was not associated with basal or maximum exercise-induced metabolic rates. The research provides evidence that body temperature may be an individual trait in birds that relates to certain aspects of metabolic and thermoregulatory performance.


The findings suggest that individual variation in body temperature could be an important physiological trait affecting how animals cope with thermal challenges and physical activity. Understanding these relationships may help predict how bird populations respond to environmental stressors and climate change, and could inform conservation strategies for temperature-sensitive species.


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⚠️ Preprint – Noch nicht peer-reviewed

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In endotherms, body temperature is regulated by balancing the rates of metabolic heat production and dissipation. Birds and mammals maintain high and relatively constant body temperatures, but there is growing evidence that body temperature and heterothermy vary considerably between individuals of a population. Based on the interdependence of metabolic rate and body temperature, variation in body temperature could be expected to be related to metabolic performance. In this study, we aimed to determine if body temperature is a variable and repeatable trait in captive zebra finches (Taeniopygia guttata) and if body temperature could be related to different metrics of performance. We measured body temperature for 14 days in in caged male zebra finches to assess within- and among-individual variation and repeatability, as well as during measurements of three metabolic traits; basal (BMR), summit cold-induced (Msum) and maximum exercise-induced (MMR) metabolic rate. Median Tb (R = 0.48), and peak Tb (R = 0.53) body temperature were repeatable and positively correlated, suggesting that the birds show consistent differences in body temperature. We found that birds with higher daytime body temperatures showed higher thermoregulatory performance in a cold challenge and had higher body temperature during forced exercise. However, daytime body temperature was not related to MMR or BMR. Our study is one of few that have measured the repeatability of body temperature in birds. Our results show that individuals may have distinct body temperature phenotypes which could be related to metabolic and thermoregulatory performance. However, additional research is needed to disentangle the interrelated effects of metabolic capacity, body temperature, and heat dissipation on performance and how this might change with thermal conditions and activity levels.

Source: Repeatable individual variation in body temperature is associated with cold tolerance and exercise-induced hyperthermia in zebra finches