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松果腺振荡器在鸡中的作用——光周期和褪黑素的影响。

Pineal oscillator functioning in the chicken--effect of photoperiod and melatonin.

机构信息

Department of Animal Physiology, Faculty of Biology, University of Warsaw , Warsaw , Poland and.

出版信息

Chronobiol Int. 2014 Feb;31(1):134-43. doi: 10.3109/07420528.2013.832279. Epub 2013 Oct 17.

Abstract

The avian pineal gland, apart from the hypothalamic master clock (suprachiasmatic nuclei, SCN) and retina, functions as an independent circadian oscillator, receiving external photic cues that it translates into the rhythmical synthesis of melatonin, a biochemical signal of darkness. Functional similarity to the mammalian SCN makes the avian pineal gland a convenient model for studies on biological clock mechanisms in general. Pineal melatonin is produced not only in a light-dependent manner but also remains under the control of the endogenous oscillator, while the possible involvement of melatonin in maintaining cyclic expression of the avian clock genes remains to be elucidated. The aim of the present study was to characterize the diurnal profiles of main clock genes transcription in the pineal glands of chickens exposed to continuous light (LL) and supplemented with exogenous melatonin. We hypothesized that rearing chickens from the day of hatch under LL conditions would evoke a functional pinealectomy, influencing, in turn, pineal clock function. To verify this hypothesis, we examined the diurnal transcriptional profiles of selected clock genes as well as the essential parameters of pineal gland function: transcription of the genes encoding arylalkylamine N-acetyltransferase (Aanat), a key enzyme in melatonin biosynthesis, and the melatonin receptor (Mel1c), along with the blood melatonin level. Chickens hatched in summer or winter were maintained under LD 16:8 and 8:16, corresponding to the respective photoperiods, as the seasonal control groups. Another set of chickens was kept in parallel under LL conditions and some were supplemented with melatonin to check the ability of exogenous hormone to antagonize the effects evoked by continuous light. Twelve-day-old chickens were sacrificed every 3 h over a 24-h period and the mRNAs of selected clock genes, Bmal1, Cry1, Per3, E4bp4, together with those of Aanat and Mel1c, were quantified in the isolated pineal glands. Our results indicate that the profiles of clock gene transcription are not dependent on the duration of the light phase, while LL conditions decrease the amplitude of diurnal changes, but do not abolish them entirely. Melatonin supplied in drinking water to the birds kept in LL seems to desynchronize transcription of the majority of clock genes in the summer, while in the winter, it restores the pattern, but not the diurnal rhythmicity. Rhythmic expression of Bmal1 appears to provide a direct link between the circadian clock and the melatonin output pathway, while the availability of cyclic melatonin is clearly involved in the canonical transcription pattern of Per3 in the chicken pineal gland. Regardless of the experimental conditions, a negative correlation was identified between the transcription of genes involved in melatonin biosynthesis (Aanat) and melatonin signal perception (Mel1c receptor).

摘要

除了下丘脑主钟(视交叉上核,SCN)和视网膜外,禽类的松果腺还作为一个独立的生物钟振荡器发挥作用,它接收外部的光信号,并将其转化为褪黑素的节律性合成,褪黑素是黑暗的生物信号。与哺乳动物 SCN 的功能相似,使禽类的松果腺成为研究生物钟机制的理想模型。松果腺褪黑素的产生不仅依赖于光照,而且还受到内源性振荡器的控制,而褪黑素在维持禽类时钟基因的周期性表达中的可能作用仍有待阐明。本研究的目的是描述在连续光照(LL)下饲养的鸡的松果腺中主要时钟基因转录的昼夜节律特征,并补充外源性褪黑素。我们假设从孵化日起在 LL 条件下饲养鸡会引起功能性松果腺切除术,从而反过来影响松果腺的生物钟功能。为了验证这一假设,我们检查了所选时钟基因的昼夜转录谱以及松果腺功能的基本参数:编码芳香族烷基胺 N-乙酰基转移酶(Aanat)的基因的转录,这是褪黑素生物合成的关键酶,以及褪黑素受体(Mel1c),以及血液褪黑素水平。在夏季或冬季孵化的鸡分别在 LD 16:8 和 8:16 下饲养,分别对应于相应的光周期,作为季节性对照组。另一组鸡在平行条件下保持在 LL 下,并给一些鸡补充褪黑素,以检查外源性激素是否有能力拮抗连续光照引起的效应。12 日龄的鸡每 3 小时牺牲一次,持续 24 小时,分离的松果腺中定量测定所选时钟基因 Bmal1、Cry1、Per3、E4bp4 的 mRNA,以及 Aanat 和 Mel1c 的 mRNA。我们的结果表明,时钟基因转录的模式不依赖于光相的持续时间,而 LL 条件降低了昼夜变化的幅度,但并没有完全消除它们。给在 LL 下饲养的鸡饮用水中补充褪黑素似乎使夏季大多数时钟基因的转录失同步,而在冬季,它恢复了模式,但没有昼夜节律。Bmal1 的节律性表达似乎为生物钟和褪黑素输出途径之间提供了直接联系,而循环褪黑素的可用性显然参与了鸡松果腺中 Per3 的经典转录模式。无论实验条件如何,都发现参与褪黑素生物合成的基因(Aanat)和褪黑素信号感知(Mel1c 受体)的转录之间存在负相关。

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