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Implicating a Temperature-Dependent Clock in the Regulation of Torpor Bout Duration in Classic Hibernation

机译:在经典冬眠中触发搏击持续时间的调节中暗示温度依赖的时钟

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Syrian hamsters may present 2 types of torpor when exposed to ambient temperatures in the winter season, from 8 degrees C to 22 degrees C (short photoperiod). The first is daily torpor, which is controlled by the master circadian clock of the body, located in the SCN. In this paper, we show that daily torpor bout duration is unchanged over the 8 degrees C to 22 degrees C temperature range, as predicted from the thermal compensation of circadian clocks. These findings contrast with the second type of torpor: multi-day torpor or classic hibernation. In multi-day torpor, bout duration increases as temperature decreases, following Arrhenius thermodynamics. We found no evidence of hysteresis from metabolic inhibition and the process was thus reversible. As a confirmation, at any temperature, the arousal from multi-day torpor occurred at about the same subjective time given by this temperature-dependent clock. The temperature-dependent clock controls the reduced torpor metabolic rate while providing a reversible recovery of circadian synchronization on return to euthermy.
机译:叙利亚仓鼠可能在冬季暴露于环境温度的情况下,从8摄氏度到22摄氏度(短光周期)时,可以提出2种皮革。第一个是每日托罗,它由位于SCN的主体主昼夜昼夜昼夜昼夜控制。在本文中,我们表明,从昼夜钟表的热补偿预测,日常晕击持续时间不变。这些发现与第二种Tireper或经典冬眠形成鲜明对比。在多日托波尔,随着温度降低,追随持续时间随着Arrhenius热力学而降低而增加。我们发现没有代谢抑制滞后的证据,因此该过程是可逆的。作为确认,在任何温度下,来自多日托波的唤醒发生在该温度依赖的时钟所给出的相同主观上。温度依赖的时钟控制了减少的旋转代谢速率,同时提供了昼夜循环同步的可逆恢复,以返回Euthermy。

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