Energy is an essential ecological resource, needed to fulfill all organismal processes. In seasonal environments animals’ energy budgets are temporally restrained, exposing individuals to allocation trade-offs. To test between allocation and performance bioenergiecic mechanisms in a wild endotherm (Apodemus sylvaticus), we repeatedly determined individuals’ limits to energy budgets, aerobic capacity (VO2max) and maintenance costs (BMR), and estimated their within- and among-individuals correlations. We found that intra-individually consistent VO2max (τ=0.29-0.59) depleted in winter (∼15%), while BMR (τ=0.40-0.44) was invariable in females (1.2%) and increased in males in winter (7.7%). In females the budget components were positively correlated at the among- (rind=0.56) and negatively at within-individual (re=-0.32) levels, reflecting simultaneous operation of the performance and allocation mechanisms, respectively. In males VO2max and BMR expressed independently (r≈-0.05), with their budgets 41% more plastic than in females. Our results corroborate the performance mechanisms and parental provisioning model for the evolution of endothermy, but only in females and conditioned by seasonal trade-offs. We conclude that bioenergetic mechanisms are not only condition dependent, but also their ecological context is sexually dimorphic, and their synchronous operation may mask overall phenotypic covariation among components of energy budgets.
Boratyński et al. (Thu,) studied this question.
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