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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Temporal-spatial characterization of chicken clock genes: circadian expression in retina, pineal gland, and peripheral tissues.
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Temporal-spatial characterization of chicken clock genes: circadian expression in retina, pineal gland, and peripheral tissues.

机译:鸡时钟基因的时空特征:昼夜节律在视网膜,松果体和周围组织中的表达。

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摘要

The molecular core of the vertebrate circadian clock is a set of clock genes, whose products interact to control circadian changes in physiology. These clock genes are expressed in all tissues known to possess an endogenous self-sustaining clock, and many are also found in peripheral tissues. In the present study, the expression patterns of two clock genes, cBmal1 and cMOP4, were examined in the chicken, a useful model for analysis of the avian circadian system. In two tissues which contain endogenous clocks--the pineal gland and retina--circadian fluctuations of both cBmal1 and cMOP4 mRNAs were observed to be synchronous; highest levels occurred at Zeitgeber time 12. Expression of these genes is also rhythmic in several peripheral tissues; however, the phases of these rhythms differ from those in the pineal gland and retina: in the liver the peaks of cMOP4 and cBmal1 mRNAs are delayed 4-8 h and in the heart they are advanced by 4 h, relative to those in the pineal gland and retina. These results provide the first temporal characterization of cBmal1 and cMOP4 mRNAs in avian tissues: their presence in avian peripheral tissues indicates they may influence temporal features of daily rhythms in biochemical, physiological, and behavioral functions at these sites.
机译:脊椎动物生物钟的分子核心是一组生物钟基因,它们的产物相互作用以控制生物的生理变化。这些时钟基因在已知具有内源性自我维持时钟的所有组织中都有表达,并且在外周组织中也有许多。在本研究中,在鸡中检查了两个时钟基因cBmal1和cMOP4的表达模式,这是用于分析禽昼夜节律系统的有用模型。在两个包含内源性时钟的组织中(松果体和视网膜),观察到cBmal1和cMOP4 mRNA的昼夜节律是同步的。最高水平发生在Zeitgeber时间12。这些基因在几个外周组织中的表达也有节律;然而,这些节律的阶段与松果体和视网膜的阶段不同:相对于松果体,在肝脏中,cMOP4和cBmal1 mRNA的峰值延迟了4-8小时,而在心脏中,它们提前了4小时。腺体和视网膜。这些结果提供了禽类组织中cBmal1和cMOP4 mRNA的第一个时间特征:它们在禽类外周组织中的存在表明它们可能会影响这些部位的生化,生理和行为功能的日常节律。

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