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Differential Resetting Process of Circadian Gene Expression in Rat Pineal Glands after the Reversal of the Light/Dark Cycle via a 24h Light or Dark Period Transition

机译:通过24h亮或暗周期转变逆转明/暗循环后大鼠松果体昼夜节律基因表达的差异重置过程

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Although studies involving the circadian response to time-zone transitions indicate that the circadian clock usually takes much longer to phase advance than delay, the discrepancy between the circadian resetting induced by photoperiod alteration via a dark or light period transition has yet to be investigated. In mammals, the pineal gland is an important component in the photoneuroendocrine axis, regulating biological rhythms. However, few studies have systematically examined the resetting process of pineal clock-gene expression to date. We investigated the resetting processes of four clock genes (Bmal1, Cry1, Per1, Dec1) and AANAT in the rat pineal gland after the light-dark (LD) reversal via a 24h light or dark period transition. The resynchronization of the SCN-driven gene AANAT was nearly complete in three days in both situations, displaying similar resetting rates and processes after the differential LD reversals. The resetting processes of the clock genes were characterized by gene-specific, phase-shift modes and differential phase-shift rates between the two different LD reversal modes. The resetting processes of these clock genes were noticeably lengthened after the LD reversal via the light period transition in comparison to via the dark period transition. In addition, among the four examined clock genes, Per1 adjusted most rapidly after the differential LD reversals, while the rhythmic Cry1 expression adjusted most slowly.
机译:尽管涉及昼夜节律对时区转变的响应的研究表明,昼夜节律通常需要比延迟时间长得多的相位提前,但是由光周期通过暗或亮周期转变引起的昼夜节律重置之间的差异尚待研究。在哺乳动物中,松果体是光神经内分泌轴的重要组成部分,调节着生物节律。然而,迄今为止,很少有研究系统地检查松果体时钟基因表达的重置过程。我们研究了通过24h亮或暗周期过渡进行明暗(LD)反转后,大鼠松果腺中四个时钟基因(Bmal1,Cry1,Per1,Dec12)和ANAT的复位过程。在两种情况下,SCN驱动基因AANAT的重新同步在三天内几乎完成,在差异LD反转后显示出相似的重置速率和过程。时钟基因的重置过程的特征在于特定于基因的相移模式以及两种不同LD反向模式之间的相移率差异。与通过暗周期过渡相比,通过亮周期过渡,LD反转后,这些时钟基因的复位过程明显延长。此外,在所检查的四个时钟基因中,差异LD逆转后Per1调节最快,而有节奏的Cry1表达调节最慢。

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