Fighting Through the Heat: How Sexual Selection Influences Demography Under Recurrent Heatwaves
Porwal, N.; Parrett, J. M.; Kruszynska, A. S.; Pandey, N.; Knell, R. J.; Cameron, T. C.; Radwan, J.
Show abstract
Sexual selection is a potent evolutionary force with complex effects. Strong sexual selection can enhance adaptation and reduce mutational load, while simultaneously reducing survival, or causing sexual conflict that reduces fitness for one or both sexes. Many populations today face not only gradual environmental changes but also extreme, short-term stress events like droughts or heatwaves. The combined effects of sexual and environmental selection on population demography during and after such events remain poorly understood, even though such combined effects could be crucial for the persistence of small, endangered populations under climate change. In this study, we investigated how sexual selection affects survival during environmental stress by manipulating the expression of an aggressive fighter morph in small populations of the male-dimorphic soil mite Sancassania berlesei, exposing some of these populations to recurrent periods of extreme heat and monitoring survival over eight generations. We found that heat exposure reduced survival, more severely in females than in males, and survival was lower in populations with higher fighter prevalence, but there was no interaction between temperature and fighter morph prevalence. Furthermore, survival declined across generations, and the decline was steeper in populations with lower prevalence of fighters, leading to the loss of their initial survival advantage by the last generation. T265625hree populations exposed to heat became extinct during the experiment, all from the reduced fighter expression treatment. Our findings imply that despite its cost to individual survival, sexual selection does not modulate population sensitivity to heatwaves over several generations. Furthermore, we demonstrate that these mortality costs of sexual selection are gradually compensated over successive generations, which could be a result of a more effective purging of inbreeding depression. Thus, while the additive effect of sexual selection and heatwaves on survival may increase demographic risks for bottlenecked populations in the short term, sexual selection may increase resilience of populations to prolonged bottlenecks.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Within population plastic responses to combined thermal-nutritional stress differ from those in response to single stressors, and are genetically independent across traits in both males and females. 95%
- Evolution of phenotypic plasticity during environmental fluctuations 95%
- Immigration delays but does not prevent adaptation following environmental change: experimental evidence 95%
Similar papers in this journal
- No evidence for short-term evolutionary response to a warming environment in Drosophila 96%
- Genetic variance in fitness and its cross-sex covariance predict adaptation during experimental evolution 95%
- Rapid wing size evolution in African fig flies (Zaprionus indianus) following temperate colonization 95%
Similar papers in this journal
Similar papers in this journal
- Pre- and post-oviposition behavioural strategies to protect eggs against extreme winter cold in an insect with maternal care 96%
- How do invasion syndromes evolve? An experimental evolution approach using the ladybird Harmonia axyridis 95%
- Relationship between weapon size and six key behavioural and physiological traits in males of the European earwig 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.