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时光之箭如飞鸟般飞逝:鸟类昼夜节律生物学的两个悖论。

Time's arrow flies like a bird: two paradoxes for avian circadian biology.

作者信息

Cassone Vincent M, Paulose Jiffin K, Whitfield-Rucker Melissa G, Peters Jennifer L

机构信息

Department of Biology, Thomas Hunt Morgan Building, University of Kentucky, 675 Rose Street, Lexington, KY 40506, USA.

出版信息

Gen Comp Endocrinol. 2009 Sep 1;163(1-2):109-16. doi: 10.1016/j.ygcen.2009.01.003. Epub 2009 Jan 23.

Abstract

Biological timekeeping in birds is a fundamental feature of avian physiology, behavior and ecology. The physiological basis for avian circadian rhythmicity has pointed to a multi-oscillator system of mutually coupled pacemakers in the pineal gland, eyes and hypothalamic suprachiasmatic nuclei (SCN). In passerines, the role of the pineal gland and its hormone melatonin is particularly important. More recent molecular biological studies have pointed to a highly conserved mechanism involving rhythmic transcription and translation of "clock genes". However, studies attempting to reconcile the physiological role of pineal melatonin with molecular studies have largely failed. Recent work in our laboratory has suggested that melatonin-sensitive physiological processes are only loosely coupled to transcriptional oscillations. Similarly, although the pineal gland has been shown to be critical for overt circadian behaviors, its role in annual cycles of reproductive function appears to be minimal. Recent work on the seasonal control of birdsong, however, suggests that, although the pineal gland does not directly affect gonadal cycles, it is important for seasonal changes in song. Experimental analyses that address these paradoxes will shed light on the roles the biological clock play in birds and in vertebrates in general.

摘要

鸟类的生物钟是鸟类生理学、行为学和生态学的一个基本特征。鸟类昼夜节律的生理基础指向了一个由松果体、眼睛和下丘脑视交叉上核(SCN)中相互耦合的起搏器组成的多振荡器系统。在雀形目鸟类中,松果体及其激素褪黑素的作用尤为重要。最近的分子生物学研究指向了一种涉及“时钟基因”节律性转录和翻译的高度保守机制。然而,试图协调松果体褪黑素的生理作用与分子研究的工作大多失败了。我们实验室最近的研究表明,对褪黑素敏感的生理过程仅与转录振荡松散耦合。同样,尽管松果体已被证明对明显的昼夜行为至关重要,但其在生殖功能年度周期中的作用似乎微乎其微。然而,最近关于鸟类鸣叫季节性控制的研究表明,尽管松果体不直接影响性腺周期,但它对鸣叫的季节性变化很重要。解决这些矛盾的实验分析将阐明生物钟在鸟类以及一般脊椎动物中所起的作用。

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