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1.
Gen Comp Endocrinol ; 172(3): 382-91, 2011 Jul 01.
Article in English | MEDLINE | ID: mdl-21501613

ABSTRACT

Climate change and industrial development are contributing to synchronous declines in Rangifer populations across the Arctic. Chronic stress has been implicated as a proximate factor associated with decline in free-ranging populations, but its role in Rangifer is unspecified. Analysis of glucocorticosteroid (GC) concentration in feces, and more recently in hair, is a non-invasive method for monitoring stress in wildlife. Adrenocorticotropic hormone (ACTH) released from the pituitary gland stimulates GC release from the adrenals and can be administered to reflect adrenal activation. In this study, we assessed concentrations of GC metabolites in feces and cortisol in hair of Alaskan caribou (Rangifer tarandus granti) and reindeer (R. t. tarandus) following ACTH treatment. We predicted that ACTH challenge would increase concentrations of fecal GCs, but not hair cortisol because steroid deposited into the hair shaft occurs over an extended period of time (months) and is likely insensitive to acute adrenal stimulation. Adult caribou (n=10; mean age, 6.5 years old) exhibited a peak increase in fecal GCs 8h following a 2 IU/kg dose of ACTH compared to pre-injection concentrations. In contrast, sub-adult reindeer (n=10, 0.8 years old) elicited a diminished response to the same dose. Quadrupling the dose (8 IU/kg) prolonged the fecal GC response in female reindeer, but male reindeer were unresponsive. Hair cortisol was unaffected by a single ACTH challenge. Further investigation is required to ascertain whether subspecific differences in adrenal sensitivity are attributed to age or sex differences, or historical selective pressures from semi-domestication and/or sedentary life cycle in reindeer.


Subject(s)
Adrenocorticotropic Hormone/pharmacology , Deer/metabolism , Feces/chemistry , Glucocorticoids/metabolism , Hair/chemistry , Reindeer/metabolism , Animals , Deer/physiology , Female , Hydrocortisone/blood , Male , Reindeer/physiology , Stress, Physiological
2.
Am J Physiol Regul Integr Comp Physiol ; 285(3): R594-600, 2003 Sep.
Article in English | MEDLINE | ID: mdl-12791587

ABSTRACT

We examined plasticity of the stress response among three populations of the white-crowned sparrow (Zonotrichia leucophrys). These populations breed at different elevations and latitudes and thus have breeding seasons that differ markedly in length. We hypothesize that in populations where birds raise only one or rarely two broods in a season, the fitness costs of abandoning a nest are substantially larger than in closely related populations that raise up to three broods per season. Thus individuals with short breeding seasons should be less responsive to stressors and therefore less likely to abandon their young. In our study, baseline and handling-induced corticosterone levels were similar among populations, but corticosteroid-binding globulins differed, leading to a direct relationship between stress-induced free corticosteroid levels and length of breeding season. There were also population-specific differences in intracellular low-affinity (glucocorticoid-like) receptors in both liver and brain tissue. Although investigations of population-based differences in glucocorticoid secretion are common, this is the first study to demonstrate population-level differences in binding globulins. These differences could lead to dramatically different physiological and behavioral responses to stress.


Subject(s)
Seasons , Songbirds/physiology , Stress, Physiological/physiopathology , Adrenal Cortex/drug effects , Adrenal Cortex/physiology , Animals , Antineoplastic Agents, Hormonal/pharmacology , Corticosterone/blood , Male , Mitotane/pharmacology , North America , Receptors, Steroid/metabolism , Reproduction/physiology , Species Specificity , Transcortin/metabolism
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