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日本蝾螈运动活动的昼夜节律与松果体生物钟之间的分离。

Dissociation between the circadian rhythm of locomotor activity and the pineal clock in the Japanese newt.

作者信息

Chiba A, Kikuchi M, Aoki K

机构信息

Life Science Institute, Sophia University, Tokyo 102-8554, Japan.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2003 Aug;189(8):655-9. doi: 10.1007/s00359-003-0439-6. Epub 2003 Jul 3.

Abstract

The circadian locomotor activity rhythm of the Japanese newt has been thought to be driven by a putative brain oscillator(s) subordinate to the pineal clock. The existence of mutual coupling between the pineal clock and the brain oscillator(s) in vivo was examined. We covered the newt's skull with aluminum foil and simultaneously reversed the light-dark cycle, thereby allowing the pineal organ to be exposed to constant darkness while the rest of the animal was exposed to the reversed light-dark cycle. In control animals, whose heads were covered with transparent plastic, the rhythm of synaptic ribbon number in the pineal photoreceptor cells was entrained to the reversed light-dark cycle. Rhythms from newts whose heads were shielded, however, were similar to those observed in the unoperated newts kept under constant darkness. The locomotor activity rhythms of both head-covered animals and control animals were entrained to the reversed light-dark cycle. These data suggest that extrapineal photoreception can entrain the putative brain oscillator(s), but not the pineal clock. Thus, at least in an aspect of photic entrainment, there seems to be little or no mutual coupling between the pineal clock and the putative brain oscillator(s) in the circadian system of the Japanese newt.

摘要

日本蝾螈的昼夜运动活动节律一直被认为是由一个假定的、从属于松果体生物钟的脑振荡器驱动的。我们研究了体内松果体生物钟与脑振荡器之间相互耦合的存在情况。我们用铝箔覆盖蝾螈的头骨,同时颠倒明暗周期,从而使松果体器官暴露于持续黑暗中,而动物的其他部分则暴露于颠倒的明暗周期中。在头部覆盖透明塑料的对照动物中,松果体光感受器细胞中突触带数量的节律与颠倒的明暗周期同步。然而,头部被遮蔽的蝾螈的节律与在持续黑暗中饲养的未手术蝾螈中观察到的节律相似。头部覆盖动物和对照动物的运动活动节律都与颠倒的明暗周期同步。这些数据表明,松果体外光感受可以使假定的脑振荡器同步,但不能使松果体生物钟同步。因此,至少在光同步的一个方面,在日本蝾螈的昼夜节律系统中,松果体生物钟与假定的脑振荡器之间似乎很少或没有相互耦合。

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