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脊椎动物的光周期与体温调节:体温节律和产热适应

Photoperiod and thermoregulation in vertebrates: body temperature rhythms and thermogenic acclimation.

作者信息

Heldmaier G, Steinlechner S, Ruf T, Wiesinger H, Klingenspor M

机构信息

Fachbereich Biologie, Philipps-Universität, Marburg, Federal Republic of Germany.

出版信息

J Biol Rhythms. 1989 Summer;4(2):251-65.

PMID:2519592
Abstract

Evidence has recently begun to accumulate that photoperiodic responses of mammals and birds may affect the control of energy balance and thermoregulation. Exposure to short photoperiod can lower the set point for body temperature regulation in birds and mammals, as well as the voluntarily selected body temperature in ectothermic lizards. This decrease is accompanied by a reorganization of circadian or ultradian rhythms of body temperature, particularly an increase in periods spent at rest with minimum body temperatures. Short photoperiod is also used as an environmental cue for induction of seasonal torpor or facilitation of hibernation. During winter, cold tolerance of small mammals is improved by an increase of nonshivering thermogenesis in brown fat. Thermogenic capacity of brown fat (respiratory enzymes, mitochondria, uncoupling protein) is enhanced in response to short photoperiod. This response is mediated via an increase in the activity of sympathetic innervation in brown fat. Moreover, an exposure to short photoperiod prior to low temperatures may act in preparing brown fat for facilitated thermogenesis during acclimation to cold. This shows that photoperiodic control not only affects energy balance indirectly via the control of reproduction or body mass, but may directly interact with central control of thermoregulation and may influence the process of acclimatization.

摘要

最近有证据开始积累,表明哺乳动物和鸟类的光周期反应可能会影响能量平衡和体温调节的控制。暴露于短光周期可降低鸟类和哺乳动物体温调节的设定点,以及变温蜥蜴自主选择的体温。这种降低伴随着体温昼夜节律或超昼夜节律的重新组织,特别是在最低体温下休息时间的增加。短光周期也被用作诱导季节性蛰伏或促进冬眠的环境线索。在冬季,小型哺乳动物的耐寒性通过棕色脂肪中不颤抖产热的增加而提高。棕色脂肪的产热能力(呼吸酶、线粒体、解偶联蛋白)会因短光周期而增强。这种反应是通过棕色脂肪中交感神经支配活动的增加介导的。此外,在低温之前暴露于短光周期可能有助于棕色脂肪在适应寒冷期间为促进产热做好准备。这表明光周期控制不仅通过繁殖或体重控制间接影响能量平衡,还可能直接与体温调节的中枢控制相互作用,并可能影响适应过程。

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