Sex-specific responses to cold in a very cold-tolerant, northern Drosophila species
Abstract
Organisms can plastically alter resource allocation in response to changing environmental factors. For example, in harsh conditions, organisms are expected to shift investment from reproduction toward survival; however, the factors and mechanisms that govern the magnitude of such shifts are relatively poorly studied. Here we compared the impact of cold on males and females of the highly cold-tolerant species Drosophila montana at the phenotypic and transcriptomic levels. Although both sexes showed similar changes in cold tolerance and gene expression in response to cold treatment, indicating that the majority of changes are concordant between the sexes, we identified a clear reduction in sexually dimorphic gene expression, suggesting that preparing for the colder season involves reducing investment in sex-specific traits. This reduction was larger in males than females, as expected if male sexual traits are more condition-dependent than female traits, as predicted by theory. Gene expression changes were primarily associated with shifts in metabolic profile, which likely play a role in increasing cold tolerance. Finally, we found that the expression of immune genes was reduced following cold treatment, suggesting that reduced investment in costly immune function may be important in helping flies survive colder periods.
Main Authors
Format
Articles
Research article
Published
2021
Series
Subjects
Publication in research information system
Publisher
Nature Publishing Group
The permanent address of the publication
https://urn.fi/URN:NBN:fi:jyu-202102021393Use this for linking
Review status
Peer reviewed
ISSN
0018-067X
DOI
https://doi.org/10.1038/s41437-020-00398-2
Language
English
Published in
Heredity
Citation
- Parker, D. J., Envall, T., Ritchie, M. G., & Kankare, M. (2021). Sex-specific responses to cold in a very cold-tolerant, northern Drosophila species. Heredity, 126(4), 695-705. https://doi.org/10.1038/s41437-020-00398-2
Funder(s)
Research Council of Finland
Research Council of Finland
Funding program(s)
Academy Research Fellow, AoF
Academy Project, AoF
Akatemiatutkija, SA
Akatemiahanke, SA

Additional information about funding
This work was supported by Academy of Finland projects 268214 and 322980 to MK and a NERC (UK) grant NE/P000592/1 to MGR. Open Access funding provided by Université de Lausanne.
Copyright© Authors, 2021