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光诱导的叙利亚仓鼠视交叉上核中c-Fos的表达及活动起始延迟情况下的行为相位偏移

Light-induced c-Fos expression in the SCN and behavioural phase shifts of Djungarian hamsters with a delayed activity onset.

作者信息

Schöttner Konrad, Vuillez Patrick, Challet Etienne, Pévet Paul, Weinert Dietmar

机构信息

Department of Zoology, Martin-Luther-University Halle-Wittenberg , Halle , Germany .

出版信息

Chronobiol Int. 2015 Jun;32(5):596-607. doi: 10.3109/07420528.2015.1018422. Epub 2015 May 4.

Abstract

C-Fos expression in the suprachiasmatic nucleus (SCN) and phase shifts of the activity rhythm following photic stimulation were investigated in Djungarian hamsters (Phodopus sungorus) of two different circadian phenotypes. Wild-type (WT) hamsters display robust daily patterns of locomotor activity according to the light/dark conditions. Hamsters of the DAO (delayed activity onset) phenotype, however, progressively delay the activity onset, whereas activity offset remains coupled to "light-on". Although the exact reason for the delayed activity onset is not yet clarified, it is connected with a disturbed interaction between the light/dark cycle and the circadian clock. The aim was to test the link between photoreception and the behavioral output of the circadian system in hamsters of both phenotypes, to get further insight in the underlying mechanism of the DAO phenomenon. Animals were exposed to short light pulses at different times during the dark period to analyze phase shifts of the activity rhythm and expression of Fos protein in the SCN. The results indicate that the photosensitive phase in DAO hamsters is shifted like the activity onset. Also, phase shifts were significantly smaller in DAO hamsters. At the same time, levels of Fos expression did not differ between phenotypes regarding the circadian phase. The results provide evidence that the shifted photosensitivity of the circadian system in DAO hamsters does not differ from that of WT animals, and lead us to conclude that processes within the SCN that enable light information to reset the circadian pacemaker might offer an explanation for the DAO phenomenon.

摘要

在两种不同昼夜节律表型的黑线仓鼠(Phodopus sungorus)中,研究了视交叉上核(SCN)中的C-Fos表达以及光刺激后活动节律的相位偏移。野生型(WT)仓鼠根据光/暗条件表现出强烈的日常运动活动模式。然而,DAO(活动开始延迟)表型的仓鼠活动开始时间逐渐延迟,而活动结束时间仍与“开灯”时间相关。尽管活动开始延迟的确切原因尚未明确,但它与光/暗周期和昼夜节律时钟之间的相互作用紊乱有关。目的是测试两种表型仓鼠的光感受与昼夜节律系统行为输出之间的联系,以进一步了解DAO现象的潜在机制。在黑暗期的不同时间,让动物暴露于短光脉冲下,以分析活动节律的相位偏移和SCN中Fos蛋白的表达。结果表明,DAO仓鼠的光敏期与活动开始时间一样发生了偏移。此外,DAO仓鼠的相位偏移明显较小。同时,就昼夜节律相位而言,两种表型之间的Fos表达水平没有差异。结果提供了证据,表明DAO仓鼠昼夜节律系统的光敏性偏移与WT动物并无不同,并使我们得出结论,SCN内使光信息重置昼夜节律起搏器的过程可能为DAO现象提供一种解释。

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