Dickens Molly J, Romero L Michael
Department of Biology, Tufts University, Medford, Massachusetts 02155, USA.
Physiol Biochem Zool. 2009 Sep-Oct;82(5):603-10. doi: 10.1086/603633.
Although research on wild species typically involves capture, handling, and some degree of captivity, few studies examine how these actions affect and/or alter the animal's underlying stress physiology. Furthermore, we poorly understand the immediate changes that occur as wild animals adjust to captive conditions. Most studies to date have investigated relatively long-term changes in the glucocorticoid response to an acute stressor, but immediate changes in the fight-or-flight response are relatively understudied in wild-caught species. In this study, we investigated changes to the cardiovascular stress response during the first 10 d of captivity of freshly captured wild European starlings (Sturnus vulgaris). We demonstrated that (1) baseline heart rate (HR) remains elevated for several days following transport into captivity, (2) the normal balance between sympathetic nervous system (SNS) and parasympathetic nervous system regulation of HR is disrupted, with the SNS exerting relatively greater control over baseline HR for the first days of captivity, and (3) the HR response to startle, a mild stressor, becomes significantly reduced compared to that of starlings maintained in captivity for several months and remains below the control response for at least 10 d. These data are the first to show that successive acute stressors and introduction to a captive setting significantly alter the physiology and responsiveness of the cardiovascular stress response system.
尽管对野生动物的研究通常涉及捕获、处理以及一定程度的圈养,但很少有研究考察这些行为如何影响和/或改变动物潜在的应激生理学。此外,我们对野生动物适应圈养条件时发生的即时变化了解甚少。迄今为止,大多数研究调查了糖皮质激素对急性应激源反应的相对长期变化,但对野生捕获物种中应激反应的即时变化研究相对较少。在本研究中,我们调查了新捕获的野生欧洲椋鸟(Sturnus vulgaris)圈养的前10天内心血管应激反应的变化。我们证明:(1)在转入圈养后的几天里,基线心率(HR)持续升高;(2)交感神经系统(SNS)和副交感神经系统对心率调节的正常平衡被打破,在圈养的头几天里,交感神经系统对基线心率的控制相对更强;(3)与圈养几个月的椋鸟相比,对轻度应激源惊吓的心率反应显著降低,并且至少在10天内低于对照反应。这些数据首次表明,连续的急性应激源和引入圈养环境会显著改变心血管应激反应系统的生理学和反应性。