Skip to main content

Lund University Publications

LUND UNIVERSITY LIBRARIES

Postnatal temperature triggers predictable thermoregulatory shifts in birds without a trade-off between heat and cold tolerance

Persson, Elin LU orcid ; Correia, Maria LU and Nord, Andreas LU orcid (2026) In Journal of Experimental Biology 229(9).
Abstract

Thermoregulatory competence is key to maintaining fitness in thermally unstable environments. Previous research found that development in the warmth renders birds better able to handle mild heat stress, whereas cold postnatal development gives no apparent benefit upon mild cold exposure. It is still not known how developmental temperature affects maximal temperature tolerance limits, and even less is known about any physiological trade-off between heat and cold tolerance. We investigated how postnatal development under simulated cold snap or heatwave-like conditions from hatching until reproductive maturity impacted the ontogeny of maximal heat and cold tolerance, and the trade-off between them, in Japanese quail (Coturnix japonica). To... (More)

Thermoregulatory competence is key to maintaining fitness in thermally unstable environments. Previous research found that development in the warmth renders birds better able to handle mild heat stress, whereas cold postnatal development gives no apparent benefit upon mild cold exposure. It is still not known how developmental temperature affects maximal temperature tolerance limits, and even less is known about any physiological trade-off between heat and cold tolerance. We investigated how postnatal development under simulated cold snap or heatwave-like conditions from hatching until reproductive maturity impacted the ontogeny of maximal heat and cold tolerance, and the trade-off between them, in Japanese quail (Coturnix japonica). To study whether any such effects are reversible or permanently programmed, we transferred half of each treatment group to intermediate common garden conditions once reproductive maturity was reached and repeated the measurements several weeks later. Development in heatwave-like conditions increased evaporative water loss rate and moved heat tolerance limits upwards, whereas cold snap-like development rendered more thermogenic birds with improved cold tolerance limits. However, we found no evidence for a trade-off between heat and cold tolerance. The common garden birds converged in nearly all thermoregulatory traits at the end of the study, suggesting that the prior emergence of temperature-dependent phenotypes reflected reversible plasticity. We suggest that improved temperature tolerance limits improve performance in matched thermal conditions, reducing the rate at which thermal injury accrues. Yet, in the short term, we found markedly lower capacity to acclimate heat tolerance compared with cold tolerance.

(Less)
Please use this url to cite or link to this publication:
author
; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Bird, Development, Evaporative cooling, Metabolic rate, Temperature tolerance, Thermoregulation
in
Journal of Experimental Biology
volume
229
issue
9
article number
jeb251867
publisher
The Company of Biologists Ltd
external identifiers
  • scopus:105038809658
  • pmid:41948918
ISSN
0022-0949
DOI
10.1242/jeb.251867
language
English
LU publication?
yes
id
bfe49eaf-4860-4795-8e9c-fb63aee3fd55
date added to LUP
2026-08-17 08:48:47
date last changed
2026-08-31 09:43:14
@article{bfe49eaf-4860-4795-8e9c-fb63aee3fd55,
  abstract     = {{<p>Thermoregulatory competence is key to maintaining fitness in thermally unstable environments. Previous research found that development in the warmth renders birds better able to handle mild heat stress, whereas cold postnatal development gives no apparent benefit upon mild cold exposure. It is still not known how developmental temperature affects maximal temperature tolerance limits, and even less is known about any physiological trade-off between heat and cold tolerance. We investigated how postnatal development under simulated cold snap or heatwave-like conditions from hatching until reproductive maturity impacted the ontogeny of maximal heat and cold tolerance, and the trade-off between them, in Japanese quail (Coturnix japonica). To study whether any such effects are reversible or permanently programmed, we transferred half of each treatment group to intermediate common garden conditions once reproductive maturity was reached and repeated the measurements several weeks later. Development in heatwave-like conditions increased evaporative water loss rate and moved heat tolerance limits upwards, whereas cold snap-like development rendered more thermogenic birds with improved cold tolerance limits. However, we found no evidence for a trade-off between heat and cold tolerance. The common garden birds converged in nearly all thermoregulatory traits at the end of the study, suggesting that the prior emergence of temperature-dependent phenotypes reflected reversible plasticity. We suggest that improved temperature tolerance limits improve performance in matched thermal conditions, reducing the rate at which thermal injury accrues. Yet, in the short term, we found markedly lower capacity to acclimate heat tolerance compared with cold tolerance.</p>}},
  author       = {{Persson, Elin and Correia, Maria and Nord, Andreas}},
  issn         = {{0022-0949}},
  keywords     = {{Bird; Development; Evaporative cooling; Metabolic rate; Temperature tolerance; Thermoregulation}},
  language     = {{eng}},
  month        = {{05}},
  number       = {{9}},
  publisher    = {{The Company of Biologists Ltd}},
  series       = {{Journal of Experimental Biology}},
  title        = {{Postnatal temperature triggers predictable thermoregulatory shifts in birds without a trade-off between heat and cold tolerance}},
  url          = {{http://dx.doi.org/10.1242/jeb.251867}},
  doi          = {{10.1242/jeb.251867}},
  volume       = {{229}},
  year         = {{2026}},
}