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昼夜节律振荡的幅度:温度依赖性、纬度梯度变化及光周期时间测量

The amplitude of circadian oscillations: temperature dependence, latitudinal clines, and the photoperiodic time measurement.

作者信息

Pittendrigh C S, Kyner W T, Takamura T

机构信息

Division of Neurobiology, Arizona Research Laboratories, University of Arizona, Tucson 85721.

出版信息

J Biol Rhythms. 1991 Winter;6(4):299-313. doi: 10.1177/074873049100600402.

Abstract

This paper develops several propositions concerning the lability of the amplitude of Drosophila circadian pacemakers. The first is that the amplitude of the pacemaker's motion, unlike its period, is markedly temperature-dependent. The second is that latitudinal variation in pacemaker amplitude (higher in the north) is responsible for two very different sets of observations on Drosophila circadian systems at successively higher latitudes. One of these is a cline in D. auraria's phase-shifting response to light, which steadily weakens in a succession of more northerly strains. The other, concerning D. littoralis in the very far north, is a cline in the rate at which eclosion activity becomes arrhythmic (the circadian rhythm damps out) in constant darkness; damping is faster in the north. The third proposition concerns a plausible selection pressure for the cline in pacemaker amplitude that we propose underlies the two directly observed clines. Two points are emphasized: (1) The amplitude of the pacemaker's daily oscillation declines as the duration of the entraining light pulse (photoperiod) is increased; and (2) the duration of the daily photoperiods throughout the breeding season is steadily increased as one moves toward the poles. Selection for conservation of pacemaker amplitude (during the breeding season) would produce the latitudinal cline we propose. The fourth, and final proposition is that since the amplitude of the pacemaker's daily motion responds systematically to change in photoperiod, amplitude is clearly one way--and a temperature-dependent way--in which insect circadian systems may sense seasonal change. These propositions concerning the temperature and latitude dependence of pacemaker amplitude may be relevant to a wider array of circadian pacemakers than Drosophila.

摘要

本文提出了几个关于果蝇昼夜节律起搏器振幅不稳定性的命题。第一个命题是,起搏器运动的振幅与其周期不同,明显依赖于温度。第二个命题是,起搏器振幅的纬度变化(在北方较高)导致了在相继更高纬度的果蝇昼夜节律系统上的两组截然不同的观察结果。其中之一是金果蝇对光的相移反应的梯度变化,在一系列更偏北的品系中这种反应逐渐减弱。另一个是关于极北地区的海滨果蝇,在持续黑暗中羽化活动变得无节律(昼夜节律消失)的速率存在梯度变化;在北方这种消失更快。第三个命题涉及我们提出的起搏器振幅梯度变化背后可能存在的一种合理选择压力。强调两点:(1)随着诱导光脉冲(光周期)持续时间的增加,起搏器每日振荡的振幅下降;(2)随着向极地移动,整个繁殖季节每日光周期的持续时间稳步增加。对(繁殖季节期间)起搏器振幅守恒的选择会产生我们提出的纬度梯度变化。第四个也是最后一个命题是,由于起搏器每日运动的振幅对光周期变化有系统响应,振幅显然是昆虫昼夜节律系统感知季节变化的一种方式——而且是一种依赖温度的方式。这些关于起搏器振幅对温度和纬度依赖性的命题可能适用于比果蝇更广泛的一系列昼夜节律起搏器。

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