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日本鹌鹑昼夜节律和光周期系统的形式特性:相位响应曲线及T周期的影响。

Formal properties of the circadian and photoperiodic systems of Japanese quail: phase response curve and effects of T-cycles.

作者信息

Zivkovic B D, Underwood H, Steele C T, Edmonds K

机构信息

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

出版信息

J Biol Rhythms. 1999 Oct;14(5):378-90. doi: 10.1177/074873099129000786.

Abstract

A role for the circadian system in photoperiodic time measurement in Japanese quail is controversial. The authors undertook studies of the circadian and photoperiodic system of Japanese quail to try to identify a role for the circadian system in photoperiodic time measurement. The circadian studies showed that the circadian system acts like a low-amplitude oscillator: It is readily reset by light without significant transients, has a Type 0 phase response curve (PRC), and has a large range of entrainment. In fact, a cycle length that is often used in resonance protocols (LD 6:30) is within the range of entrainment. The authors employed T-cycle experiments; that is, LD cycles with 6- and 14-h photoperiods and period lengths ranging from 18 to 36 h to test for circadian involvement in photoperiodic time measurement. The results did not give evidence for circadian involvement in photoperiodic time measurement: T-cycles utilizing 6-h photoperiods were uniformly noninductive (that is, did not stimulate the reproductive system), whereas T-cycles utilizing 14-h photoperiods were inductive (stimulatory). A good match was observed between the phase-angles exhibited on the T-cycles employing 6-h photoperiods and the predicted phase-angles calculated from a PRC generated from 6-h light pulses.

摘要

昼夜节律系统在日本鹌鹑光周期时间测量中的作用存在争议。作者对日本鹌鹑的昼夜节律和光周期系统进行了研究,试图确定昼夜节律系统在光周期时间测量中的作用。昼夜节律研究表明,昼夜节律系统的作用类似于一个低振幅振荡器:它很容易被光重置,且无明显瞬变现象,具有0型相位响应曲线(PRC),并且有较大的夹带范围。事实上,共振实验中常用的一个周期长度(LD 6:30)就在夹带范围内。作者采用了T周期实验;也就是说,采用6小时和14小时光周期、周期长度在18至36小时之间的LD周期,来测试昼夜节律在光周期时间测量中的参与情况。结果并未提供证据表明昼夜节律参与了光周期时间测量:采用6小时光周期的T周期均无诱导作用(即不刺激生殖系统),而采用14小时光周期的T周期具有诱导作用(刺激性)。在采用6小时光周期的T周期上呈现的相位角与根据6小时光脉冲产生的PRC计算出的预测相位角之间观察到了良好的匹配。

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