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侧斑蜥蜴(Uta stansburiana)体内的皮质酮、运动表现和新陈代谢

Corticosterone, locomotor performance, and metabolism in side-blotched lizards (Uta stansburiana).

作者信息

Miles Donald B, Calsbeek Ryan, Sinervo Barry

机构信息

Department of Biological Sciences, Ohio University, Athens, OH 45701, USA.

出版信息

Horm Behav. 2007 Apr;51(4):548-54. doi: 10.1016/j.yhbeh.2007.02.005. Epub 2007 Feb 23.

Abstract

Elevated levels of circulating corticosterone commonly occur in response to stressors in wild vertebrates. A rise in corticosterone, usually in animals of subordinate rank, results in a variety of effects on behavior and physiology. Behavioral and physiological responses to short-term increases in corticosterone are well studied. In contrast, the effects of chronic elevated levels of corticosterone are poorly understood, particularly in lizards. Here, we examined the long-term effects of exogenous corticosterone on locomotor performance, resting and active metabolic rate, and hematocrit in male side-blotched lizards Uta stansburiana. Corticosterone implantation resulted in higher levels of stamina relative to sham-surgery controls. In addition, lizards with elevated corticosterone exhibited lower resting metabolic rates relative to controls. Corticosterone had no effect on peak activity metabolism but did result in faster recovery times following exhaustive exercise. We suggest that elevated levels of corticosterone in response to dominance interactions promote enhanced locomotor abilities, perhaps as a flight response to avoid agonistic interactions. Furthermore, stressed lizards are characterized by lower resting metabolic rates, which may serve as strategy to conserve energy stores and enhance survival.

摘要

在野生脊椎动物中,循环皮质酮水平升高通常是对压力源的反应。皮质酮水平升高,通常发生在等级较低的动物身上,会对行为和生理产生多种影响。对皮质酮短期升高的行为和生理反应已有充分研究。相比之下,长期皮质酮水平升高的影响却知之甚少,尤其是在蜥蜴身上。在此,我们研究了外源性皮质酮对雄性侧斑蜥蜴(Uta stansburiana)运动能力、静息和活动代谢率以及血细胞比容的长期影响。与假手术对照组相比,植入皮质酮导致耐力水平更高。此外,皮质酮水平升高的蜥蜴相对于对照组表现出更低的静息代谢率。皮质酮对峰值活动代谢没有影响,但在力竭运动后恢复时间更快。我们认为,对优势互动产生反应时皮质酮水平升高会促进运动能力增强,这可能是一种逃避争斗互动的逃避反应。此外,应激蜥蜴的特征是静息代谢率较低,这可能是一种保存能量储备和提高生存几率的策略。

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