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卡罗来纳安乐蜥的松果体褪黑素节律:II. 光感受性输入。

Pineal melatonin rhythms in the lizard Anolis carolinensis: II. Photoreceptive inputs.

作者信息

Underwood H, Calaban M

机构信息

Department of Zoology, North Carolina State University, Raleigh 27695.

出版信息

J Biol Rhythms. 1987 Fall;2(3):195-206. doi: 10.1177/074873048700200303.

Abstract

The pineal organ of the lizard Anolis carolinensis acts as a transducer of photoperiodic information, since light can affect the pineal melatonin rhythm (PMR). The synthesis and secretion of melatonin may be a major mechanism whereby a circadian pacemaker within the pineal can control circadian clocks located elsewhere. An investigation into potential routes by which light could affect the PMR showed that (1) removal of the photosensory parietal eye did not affect the PMR as compared to controls under either a light-dark (LD) 12:12 cycle and a constant temperature (32 degrees C) or an LD 12:12 cycle and a daily temperature cycle (32 degrees C/20 degrees C); (2) removal of both the parietal eye and the lateral eyes did not affect the PRM of anoles held in LD 12:12 (constant 32 degrees C); (3) the PMR of blinded anoles re-entrained to a 10-hr shift in the phase of the LD cycle as rapidly as that of sighted anoles; (4) blocking light penetration to the brains of anoles, but leaving the lateral eyes exposed, blocked the ability of anoles to re-entrain to a 10-hr shift in the phase of an LD cycle. The data support the hypothesis that light directly affects the PMR in Anolis and that other potential photic inputs (parietal eye, lateral eyes) play little or no role. This conclusion is supported by previous neurophysiological and ultrastructural studies showing that the lizard pineal possesses functional photoreceptors.

摘要

卡罗来纳安乐蜥的松果体器官充当光周期信息的传感器,因为光可影响松果体褪黑素节律(PMR)。褪黑素的合成与分泌可能是松果体内的昼夜节律起搏器控制位于其他部位的昼夜节律时钟的主要机制。一项关于光影响PMR的潜在途径的研究表明:(1)与处于明暗(LD)12:12循环和恒定温度(32摄氏度)或LD 12:12循环和每日温度循环(32摄氏度/20摄氏度)下的对照组相比,切除光感受顶眼不会影响PMR;(2)切除顶眼和侧眼不会影响处于LD 12:12(恒定32摄氏度)环境中的安乐蜥的PRM;(3)失明安乐蜥的PMR重新适应LD循环相位10小时的偏移的速度与有视力的安乐蜥一样快;(4)阻止光穿透安乐蜥的大脑,但让侧眼暴露,会阻止安乐蜥重新适应LD循环相位10小时的偏移。这些数据支持了以下假设:光直接影响安乐蜥的PMR,而其他潜在的光输入(顶眼、侧眼)作用很小或不起作用。这一结论得到了先前神经生理学和超微结构研究的支持,这些研究表明蜥蜴松果体具有功能性光感受器。

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