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Great tits (Parus major) in a west European temperate forest show little seasonal variation in metabolic energy requirements

  • Cesare Pacioni* (Corresponding Author)
  • , Marina Sentís
  • , Catherine Hambly
  • , John R Speakman
  • , Anvar Kerimov
  • , Andrey Bushuev
  • , Luc Lens
  • , Diederik Strubbe
  • *Corresponding author for this work
  • Ghent University
  • M.V. Lomonosov Moscow State University
  • Shenzhen Institute of Advanced Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Understanding how birds annually allocate energy to cope with changing environmental conditions and physiological states is a crucial question in avian ecology. There are several hypotheses to explain species' energy allocation. One prominent hypothesis suggests higher energy expenditure in winter due to increased thermoregulatory costs. The "reallocation" hypothesis suggests no net difference in seasonal energy requirements, while the "increased demand" hypothesis predicts higher energy requirements during the breeding season. Birds are expected to adjust their mass and/or metabolic intensity in ways that are consistent with their energy requirements. Here, we look for metabolic signatures of seasonal variation in energy requirements of a resident passerine of a temperate-zone (great tit, Parus major). To do so, we measured whole-body and mass-independent basal (BMR), summit (M sum), and field (FMR) metabolic rates during late winter and during breeding in Belgian great tits. During the breeding season, birds had on average 10% higher whole-body BMR and FMR compared to winter, while their M sum decreased by 7% from winter to breeding. Mass-independent metabolic rates showed a 10% increase in BMR and a 7% decrease in M sum from winter to breeding. Whole-body BMR was correlated with M sum, but this relationship did not hold for mass-independent metabolic rates. The modest seasonal change we observed suggests that great tits in our temperature study area maintain a largely stable energy budget throughout the year, which appears mostly consistent with the reallocation hypothesis.

Original languageEnglish
Pages (from-to)103748
Number of pages9
JournalJournal of Thermal Biology
Volume118
Early online date18 Nov 2023
DOIs
Publication statusPublished - Dec 2023

Bibliographical note

This study was supported by the Research Foundation – Flanders (grant #G0E4320 N) under a bilateral research cooperation with the Russian Science Foundation (grant #20-44-01005). This study is also supported by Methusalem Project 01M00221 (Ghent University) awarded to Frederick Verbruggen, Luc Lens and A Martel. Marina Sentís acknowledges the support of FWO-Vlaanderen (project 11E1623N).

Data Availability Statement

Data availability
Seasonal variation in great tit energy requirements: reallocation
versus increased demand (Original data) (Mendeley Data)

Appendix A. Supplementary data
Supplementary data to this article can be found online at https://doi.
org/10.1016/j.jtherbio.2023.103748.

Funding

This study was supported by the Research Foundation – Flanders (grant #G0E4320 N) under a bilateral research cooperation with the Russian Science Foundation (grant #20-44-01005). This study is also supported by Methusalem Project 01M00221 (Ghent University) awarded to Frederick Verbruggen, Luc Lens and A Martel. Marina Sentís acknowledges the support of FWO-Vlaanderen (project 11E1623N).

Keywords

  • great tit
  • energy expenditure
  • metabolic rates

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