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首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Spontaneous daily torpor and fasting-induced torpor in Djungarian hamsters are characterized by distinct patterns of metabolic rate
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Spontaneous daily torpor and fasting-induced torpor in Djungarian hamsters are characterized by distinct patterns of metabolic rate

机译:Djungarian仓鼠的自发性每日热por和空腹诱发的热por的特征在于代谢率的不同模式

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摘要

The Djungarian hamster is a rodent species that expresses both spontaneous daily torpor (SDT) when acclimated to winter conditions as well as fasting-induced torpor (FIT) during summer. In an earlier report we argued that these two thermoregulatory phenomena differ in several parameters. In the present study, we further complete this comparison by showing that metabolic rate patterns differ between both SDT and FIT. SDT bouts were significantly longer and deeper compared to FIT bouts. Additionally, respiratory quotient measures support the view that SDT is entered from a state of energetic balance while FIT appears to be an emergency shutdown of energy demanding thermogenesis due to a shortage of energy sources. In a second experiment, we also confirm that brief periods of food restriction during the hamsters' torpor season increase the frequency of SDT, but do not affect its depth or duration. Although winter-acclimated animals could flexibly alter torpor frequency in order to stay in energetic balance, we also found evidence for torpor expression patterns that resembled FIT, rather than SDT. Consequently, if energetic challenges cannot be compensated with increased SDT expression any longer, the hamsters seem to be driven in a negative energy balance resulting in FIT as a last resort.
机译:Djungarian仓鼠是一种啮齿动物,在适应冬季条件时会表现出自发的日常to(SDT),在夏季也会表现出禁食引起的r(FIT)。在较早的报告中,我们认为这两个温度调节现象在几个参数上有所不同。在本研究中,我们通过显示SDT和FIT之间的代谢率模式不同来进一步完成该比较。与FIT比赛相比,SDT比赛明显更长,更深。另外,呼吸商措施支持以下观点:从能量平衡状态进入SDT,而FIT似乎是由于能源短缺而紧急关闭了需要生热的能量。在第二个实验中,我们还确认了仓鼠在玉米粥季节中短暂的食物限制会增加SDT的发生频率,但不会影响其深度或持续时间。尽管适应冬天的动物可以灵活地改变to的频率以保持能量平衡,但我们也发现了类似FIT而不是SDT的to表达模式的证据。因此,如果精力旺盛的挑战无法通过增加SDT的表达来弥补,则仓鼠似乎会受到负能量平衡的驱动,导致FIT作为最后的手段。

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