Abstract
Phenotypic plasticity may enable individuals to cope with predictable and unpredictable environments during their life-cycle. In that context, studying glucocorticoids—corticosterone (CORT) in birds—is relevant because of their primary role in allostasis. Higher baseline CORT levels are classically associated with environmental constraints and lower fitness (the CORT-fitness hypothesis). However, in some environments, higher baseline CORT levels can promote reproduction, therefore being associated with higher fitness (the CORT-adaptation hypothesis). These two hypotheses have been tested in multiple systems but rarely in a context of fluctuating predation threat. We used a long-term individual-based monitoring of baseline CORT levels in female common eiders Somateria mollissima (n CORT = 1537; n individual = 790; 2009–2022) to disentangle the context-dependent links between environmental conditions, CORT and fitness. Importantly, the study population has been facing a drastic increase in predation pressure over the past decades, linked to the recovery of the white-tailed eagle Haliaeetus albicilla. Additionally, eiders breed on open or forested islands, further affecting adult and nest predation risk. This system allowed us to disentangle the relative contributions of within- and among-individual variation in baseline CORT levels under predation. Supporting the CORT-adaptation hypothesis, baseline CORT levels were positively associated with reproductive investment (clutch size), age and hatching success. By partitioning within- and among-individual effects, we showed that at the individual level, CORT flexibly increased with clutch size and age. Females displaying higher CORT levels were more successful, suggesting a link between CORT and individual quality. At both the population and individual levels, baseline CORT levels decreased over the study period. This decrease was correlated with an increase in predation risk. Females had reduced baseline CORT when nesting under high eagle abundance or adult predation risk (within-individual effect). Interestingly, apparent plasticity towards adult predation risk was only observed on open islands, likely reflecting habitat-dependent strategies. Consistent with the CORT-adaptation hypothesis, we show that changes in predation regime not only correlate with changes in reproductive investment, but also with rapid plastic adjustment of glucocorticoid levels and therefore individual strategies to cope with predation risk. Given the correlative nature of our study, we encourage further experimental studies testing for a causal relationship between predation and corticosterone levels. Read the free Plain Language Summary for this article on the Journal blog.
| Original language | English |
|---|---|
| Pages (from-to) | 2868-2882 |
| Number of pages | 15 |
| Journal | Functional Ecology |
| Volume | 37 |
| Issue number | 11 |
| DOIs | |
| Publication status | Published - Nov 2023 |
| MoE publication type | A1 Journal article-refereed |
Funding
We thank Tvärminne Zoological Station for providing facilities and access to monitoring islands. We are grateful to all field assistants, with special acknowledgments to Ben Steele, Heikki Eriksson, Niilo Aro and Ida Hermansson. We thank observers at HALIAS and Aleksi Lehikoinen for providing the eagle index. This research was funded by the Swedish Cultural Foundation in Finland (Grant Nos. 17/3317, 16/1476, 15/3296, 14/2657, 13/2654, 138139, 149014, 158026, 168333, 177733 and 188437 to MÖ), the Academy of Finland (Grant No. 266208 to KJ and Grant No. 128039 to MÖ), grants from the Ministry of Agriculture and Forestry of Finland and the Sophie von Julins Stiftelse (to KJ through the Nature and Game Management Trust Finland), and French CNRS fund (to FA).
Keywords
- baseline corticosterone
- common eider Somateria mollissima
- corticosterone-adaptation hypothesis
- corticosterone-fitness hypothesis
- glucocorticoids
- predation risk
- reproduction
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