Related Experiment Video
Updated: Aug 20, 2026

Determining Basal Energy Expenditure and the Capacity of Thermogenic Adipocytes to Expend Energy in Obese Mice
Published on: November 11, 2021
The Cost of Phenotypic Mismatch in Avian Energy Intake: Limited Spare Capacity in Extreme Phenotypes Is Compensated
François Vézina1,2, Oliver P Love3, Lyette Régimbald1,2
1Département de Biologie, Chimie et Géographie, Université du Québec à Rimouski, 300 Allée des Ursulines, Rimouski, Québec G5L 3A1, Canada.
Abstract:
AbstractDaily energy intake in animals is flexible but takes days to adjust when needs surpass capacity. To buffer mismatches between intake and demand, individuals maintain immediate spare capacity for food consumption. The declining spare capacity model posits that this capacity declines as traits approach maximal values. In contrast, the high midrange capacity model suggests that animals may maintain higher spare capacity at intermediate levels between baseline and maximal capacity when facing challenging environments. We tested these models by examining how captive pine siskins (Spinus pinus) acclimated to -5°C, 5°C, and 20°C responded to a 10°C temperature drop. Within 72 h, food intake increased by 22% in birds acclimated to 20°C, 14% in birds from 5°C, and 6% in birds from -5°C, with a treatment effect persisting for 37 d. Despite their highest spare capacity, 20°C-acclimated birds lost nearly three times more fat than those acclimated to -5°C. However, -5°C birds compensated by increasing lean mass and recovered 53% of their initial fat loss. These results support the reduced spare capacity model but also show that although cold-acclimated birds have limited immediate capacity to increase intake, they can still defend and restore energy reserves during mismatches between intake and demand, likely through physiological trade-offs.
Related Concept Videos
Energy Budgets and Reproductive Strategies
Limits to Natural Selection
Optimal Foraging
Background and Environment Affect Phenotype
An example of how genetic background affects phenotype can be seen in horses. The Extension gene in horses is responsible for their coat color. A wild-type gene (EE) produces black pigment in the coat, while a mutant gene (ee) produces red pigment. A...
Frequency-dependent Selection
Types of Selection

