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首页> 外文期刊>American Journal of Physiology >The respiratory metabolism of a lizard (Lacerta vivipara) in supercooled and frozen states.
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The respiratory metabolism of a lizard (Lacerta vivipara) in supercooled and frozen states.

机译:蜥蜴(Lacerta vivipara)在过冷和冷冻状态下的呼吸代谢。

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摘要

We investigated the respiratory metabolism of the overwintering lizard Lacerta vivipara while in either supercooled or frozen states. With a variable pressure and volume microrespirometer and a chromatograph, we show that the oxygen consumption of the supercooled animals showed a nonlinear relationship with temperature and an aerobic metabolism demand between 0.5 and -1.5 degrees C. A significant increase in the respiratory quotient (RQ) values indicated an increasing contribution by the anaerobic pathways with decreasing temperature. In the frozen state, two phases are easily detectable and are probably linked to the ice formation within the body. During the first 5-6 h, the animals showed an oxygen consumption of 3.52 +/- 0.28 microl. g(-1). h(-1) and a RQ value of 0.52 +/- 0.09. In contrast, after ice equilibrium, oxygen consumption decreased sharply (0.55 +/- 0.09 microl. g(-1). h(-1)) and the RQ values increased (2.49 +/- 0.65). The present study confirms the fact that supercooled invertebrates and vertebrates respond differently to subzero temperatures, in terms of aerobic metabolism, and it shows that aerobic metabolism persists under freezing conditions.
机译:我们调查了过冷或冷冻状态下越冬蜥蜴天牛的呼吸代谢。使用可变压力和容量的微呼吸计和色谱仪,我们显示过冷动物的耗氧量与温度和需氧代谢需求在0.5至-1.5摄氏度之间呈非线性关系。呼吸商(RQ)显着增加值表明随着温度的降低,厌氧途径的贡献增加。在冷冻状态下,很容易检测到两个阶段,并且可能与体内冰的形成有关。在最初的5-6小时内,动物的耗氧量为3.52 +/- 0.28微升。 g(-1)。 h(-1),RQ值为0.52 +/- 0.09。相反,在冰平衡之后,耗氧量急剧下降(0.55 +/- 0.09微升g(-1).h(-1)),RQ值增加(2.49 +/- 0.65)。本研究证实了以下事实:在有氧代谢方面,过冷的无脊椎动物和脊椎动物对零度以下温度的反应不同,并且表明有氧代谢在冰冻条件下持续存在。

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