Ecological Bases of Hormone—Behavior Interactions: The “Emergency Life History Stage”
1998/02/01 by John C. Wingfield, JOHN C. WINGFIELD, DONNA L. MANEY +11 · 1,386 citations
Agricultural and Biological Sciences · Medicine · #Animal Behavior and Reproduction #Animal Nutrition and Physiology #Biology #Ecology #Endocrinology #Facultative #Foraging #Hormone #Internal medicine #Life history #Medicine #Physiology #Reproductive Physiology in Livestock
paper · doi:10.1093/icb/38.1.191
published in American Zoologist 38(1), 191-206 (Oxford University Press)
openalex publication_date 1998/02/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/06
Abstract
SYNOPSIS. Superimposed upon seasonal changes in morphology, physiology and behavior, are facultative responses to unpredictable events known as labile (i.e., short-lived) perturbation factors (LPFs). These responses include behavioral and physiological changes that enhance survival and collectively make up the “emergency” life history stage. There is considerable evidence that glucocorticosteroids, and other hormones in the hypothalamo—pituitary—adrenal (HPA) cascade, initiate and orchestrate the emergency life history stage within minutes to hours. This stage has a number of sub—stages that promote survival and avoid potential deleterious effects of stress that may result from chronically elevated levels of circulating glucocorticosteroids over days and weeks. These sub—stages may include: redirection of behavior from a normal life history stage to increased foraging, irruptivetype migration during the day, enhanced restfulness at night, and elevated gluconeogenesis. Once the perturbation passes, glucocorticosteroids may also promote recovery. Additional evidence from birds indicates that glucocorticosteroid responses to a standardized capture, handling and restraint protocol are modulated both on seasonal and individual levels. Field work reveals that these changes in responsiveness to LPFs have ecological bases, such as reproductive state, body condition etc., that in turn indicate different hormonal control mechanisms in the HPA cascade.
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