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精度降低促成了蜥蜴的缺氧体温调节反应。

Decreased precision contributes to the hypoxic thermoregulatory response in lizards.

作者信息

Cadena Viviana, Tattersall Glenn J

机构信息

Department of Biological Sciences, Brock University, St Catharines, ON, Canada, L2S 3A1.

出版信息

J Exp Biol. 2009 Jan;212(Pt 1):137-44. doi: 10.1242/jeb.023531.

Abstract

The decrease in body temperature (T(b)) observed in most vertebrate classes in response to hypoxia has been attributed to a regulated decrease in set-point, protecting organs against tissue death due to oxygen depletion. Hypoxia, however, imparts particular challenges to metabolic function which may, in turn, affect thermoregulation. In ectotherms, where thermoregulation is mainly behavioural, stressors that influence the propensity to move and respond to temperature gradients are expected to have an impact on thermoregulatory control. Using low oxygen as a potent stressor, we evaluated the variability and level of thermoregulation of inland bearded dragons. To examine the source of thermoregulatory variability, we studied their behaviour in an electronically controlled temperature-choice shuttle box, a constant temperature dual-choice shuttle box, and a linear thermal gradient. A significant increase in the size of the T(b) range was observed at the lowest oxygen concentration (4% O(2)), reflecting a decrease in thermoregulatory precision in the temperature-choice shuttle box. This was also accompanied by a drop of approximately 2-4 degrees C in T(b), the drop being greatest in situations where T(b) must be actively defended. Situations that force the lizards to continually choose temperatures, rather than passively remain at a given temperature, lead to an increase in the variability in the manifested T(b), which is further exaggerated in hypoxia. This study reveals that a decrease in thermoregulatory precision caused by a diminished propensity to move or effect appropriate thermoregulatory responses may be a contributing component in the lowering of selected body temperatures observed in many hypoxic ectotherms.

摘要

在大多数脊椎动物类别中,因缺氧而观察到的体温(Tb)下降被归因于设定点的调节性降低,从而保护器官免受因氧气耗尽导致的组织死亡。然而,缺氧给代谢功能带来了特殊挑战,而这反过来可能会影响体温调节。在变温动物中,体温调节主要是行为性的,预计影响移动倾向和对温度梯度做出反应的应激源会对体温调节控制产生影响。我们以低氧作为一种强效应激源,评估了内陆鬃狮蜥体温调节的变异性和水平。为了探究体温调节变异性的来源,我们研究了它们在电控温度选择穿梭箱、恒温双选穿梭箱和线性热梯度中的行为。在最低氧浓度(4% O₂)下,观察到Tb范围大小显著增加,这反映了温度选择穿梭箱中体温调节精度的降低。这还伴随着Tb下降约2 - 4摄氏度,在必须积极维持Tb的情况下下降幅度最大。迫使蜥蜴不断选择温度而非被动保持在给定温度的情况,会导致所表现出的Tb变异性增加,在缺氧情况下这种变异性会进一步加剧。这项研究表明,移动倾向减弱或无法做出适当体温调节反应导致的体温调节精度下降,可能是许多缺氧变温动物体温降低的一个促成因素。

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