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大鼠视交叉上核中生物钟基因的每日表达谱及其相位关系受光周期影响。

Clock gene daily profiles and their phase relationship in the rat suprachiasmatic nucleus are affected by photoperiod.

作者信息

Sumová Alena, Jác Martin, Sládek Martin, Sauman Ivo, Illnerová Helena

机构信息

Institute of Physiology, Academy of Sciences of the Czech Republic, Prague.

出版信息

J Biol Rhythms. 2003 Apr;18(2):134-44. doi: 10.1177/0748730403251801.

Abstract

Rhythmicity of the rat suprachiasmatic nucleus (SCN), a site of the circadian pacemaker, is affected by daylength; that is, by the photoperiod. Whereas various markers of rhythmicity have been followed, so far there have been no studies on the effect of the photoperiod on the expression of the clock genes in the rat SCN. To fill the gap and to better understand the photoperiodic modulation of the SCN state, rats were maintained either under a long photoperiod with 16 h of light and 8 h of darkness per day (LD16:8) or under a short LD8:16 photoperiod, and daily profiles of Per1, Cry1, Bmal1 and Clock mRNA in darkness were assessed by in situ hybridization method. The photoperiod affected phase, waveform, and amplitude of the rhythmic gene expression as well as phase relationship between their profiles. Under the long period, the interval of elevated Per1 mRNA lasted for a longer and that of elevated Bmal1 mRNA for a shorter time than under the short photoperiod. Under both photoperiods, the morning and the daytime Per1 and Cry1 mRNA rise as well as the morning Bmal1 mRNA decline were closely linked to the morning light onset. Amplitude of Per1, Cry1, and Bmal1 mRNA rhythms was larger under the short than under the long photoperiod. Also, under the short photoperiod, the daily Clock mRNA profile exhibited a significant rhythm. Altogether, the data indicate that the whole complex molecular clockwork in the rat SCN is photoperiod dependent and hence may differ according to the season of the year.

摘要

大鼠视交叉上核(SCN)作为昼夜节律起搏器的所在部位,其节律性受日长影响,即受光周期影响。尽管已经对各种节律性标志物进行了跟踪研究,但迄今为止,尚未有关于光周期对大鼠SCN中时钟基因表达影响的研究。为了填补这一空白并更好地理解SCN状态的光周期调节,将大鼠分别饲养在每天光照16小时、黑暗8小时的长光周期(LD16:8)或短光周期LD8:16条件下,并通过原位杂交法评估黑暗中Per1、Cry1、Bmal1和Clock mRNA的每日表达谱。光周期影响节律性基因表达的相位、波形和幅度以及它们表达谱之间的相位关系。在长光周期下,Per1 mRNA升高的持续时间比短光周期下更长,而Bmal1 mRNA升高的持续时间则较短。在两种光周期条件下,早晨和白天Per1和Cry1 mRNA的升高以及早晨Bmal1 mRNA的下降都与早晨的光照开始密切相关。Per1、Cry1和Bmal1 mRNA节律的幅度在短光周期下比长光周期下更大。此外,在短光周期下,每日Clock mRNA表达谱呈现出显著的节律。总之,这些数据表明大鼠SCN中整个复杂的分子时钟机制依赖于光周期,因此可能会因一年中的季节不同而有所差异。

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