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Environmental unpredictability shapes glucocorticoid regulation across populations of tree swallows.


ABSTRACT: The ability to respond appropriately to challenges is an important contributor to fitness. Variation in the regulation of glucocorticoid hormones, which mediate the phenotypic response to challenges, can therefore influence the ability to persist in a given environment. We compared stress responsiveness in four populations of tree swallows (Tachycineta bicolor) breeding under different environmental conditions to evaluate support for different selective pressures in driving the evolution of glucocorticoid regulation. In accordance with the environmental unpredictability hypothesis, stronger stress responses were seen in more unpredictable environments. Contrary to the reproductive value hypothesis, the stress response was not lower in populations engaging in more valuable reproductive attempts. Populations with stronger stress responses also had stronger negative feedback, which supports a "mitigating" rather than a "magnifying" effect of negative feedback on stress responses. These results suggest that combining a robust stress response with strong negative feedback may be important for persisting in unpredictable or rapidly changing environments.

SUBMITTER: Zimmer C 

PROVIDER: S-EPMC7426823 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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Environmental unpredictability shapes glucocorticoid regulation across populations of tree swallows.

Zimmer Cedric C   Taff Conor C CC   Ardia Daniel R DR   Rose Alexandra P AP   Aborn David A DA   Johnson L Scott LS   Vitousek Maren N MN  

Scientific reports 20200813 1


The ability to respond appropriately to challenges is an important contributor to fitness. Variation in the regulation of glucocorticoid hormones, which mediate the phenotypic response to challenges, can therefore influence the ability to persist in a given environment. We compared stress responsiveness in four populations of tree swallows (Tachycineta bicolor) breeding under different environmental conditions to evaluate support for different selective pressures in driving the evolution of gluc  ...[more]

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