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光周期调节绵羊肝脏中的生物钟基因节律。

Photoperiod regulates clock gene rhythms in the ovine liver.

作者信息

Andersson Håkan, Johnston Jonathan D, Messager Sophie, Hazlerigg David, Lincoln Gerald

机构信息

Medical Research Council, Human Reproductive Sciences Unit, Centre for Reproductive Biology, Edinburgh, Scotland, UK.

出版信息

Gen Comp Endocrinol. 2005 Jul;142(3):357-63. doi: 10.1016/j.ygcen.2005.02.012. Epub 2005 Mar 17.

Abstract

To investigate the photoperiodic entrainment of peripheral rhythms in ruminants, we studied the expression of clock genes in the liver in the highly seasonal Soay sheep. Animals were kept under long (LD 16:8) or short photoperiod (LD 8:16). Daily rhythms in locomotor activity were recorded, and blood concentrations of melatonin and cortisol were measured by RIA. Per2, Bmal1, and Cry1 gene expression was determined by Northern blot analyses using ovine RNA probes in liver collected every 4h for 24h. Liver Per2 and Bmal1, but not Cry1, expression was rhythmic in all treatments. Under long days, peak Per2 expression occurred at end of the night with a similar timing to Bmal1, whereas, under short days the Per2 maximum was in the early night with an inverse pattern to Bmal1. There was a photoperiodxtime interaction for only Per2 (P < 0.001). The 24-h pattern in plasma cortisol matched the observed phasing of Per2 expression, suggesting that it may act as an endocrine entraining factor. The clock gene rhythms in the peripheral tissues were different in timing compared with the ovine suprachiasmatic nucleus (SCN, central pacemaker) and pars tuberalis (melatonin target tissue), and the hepatic rhythms were of lower amplitude compared with photoperiodic rodents. Thus, there are likely to be important species differences in the way the central and peripheral clockwork encodes external photoperiod.

摘要

为了研究反刍动物外周节律的光周期同步化,我们在高度季节性的索艾羊中研究了肝脏中生物钟基因的表达。将动物饲养在长光照(LD 16:8)或短光照周期(LD 8:16)下。记录其日常活动节律,并通过放射免疫分析法测定褪黑素和皮质醇的血药浓度。每4小时采集一次肝脏样本,共采集24小时,使用绵羊RNA探针通过Northern印迹分析测定Per2、Bmal1和Cry1基因的表达。在所有处理中,肝脏中Per2和Bmal1(而非Cry1)的表达具有节律性。在长日照条件下,Per2表达峰值出现在夜晚结束时,与Bmal1的时间相似;而在短日照条件下,Per2的最大值出现在夜晚早期,与Bmal1呈相反模式。仅Per2存在光周期×时间交互作用(P < 0.001)。血浆皮质醇的24小时模式与观察到的Per2表达相位相匹配,表明它可能作为一种内分泌同步因子。外周组织中的生物钟基因节律在时间上与绵羊视交叉上核(SCN,中央起搏器)和结节部(褪黑素靶组织)不同,并且肝脏节律的幅度低于光周期敏感的啮齿动物。因此,在中枢和外周生物钟编码外部光周期的方式上可能存在重要的物种差异。

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