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昼夜节律振荡器、细胞周期与奇点:眼虫细胞分裂自由运行节律的光扰动

Circadian oscillators, cell cycles, and singularities: light perturbations of the free-running rhythm of cell division in Euglena.

作者信息

Malinowski J R, Laval-Martin D L, Edmunds L N

出版信息

J Comp Physiol B. 1985;155(2):257-67. doi: 10.1007/BF00685221.

Abstract

The free-running circadian rhythm of cell division in the algal flagellate, Euglena gracilis (Z) was perturbed by 3-h light signals of varying intensities imposed at different circadian times (CT). Light pulses within the range of 700 to 7,500 lux were found to yield the same 'strong' (Type 0) phase response curve (PRC) comprising both advance and delay phase shifts as great as 15 h. Dark signals generated a PRC of reduced amplitude with very little, if any, phase advance being observed. Light perturbations of lower intensity, however, elicited quite different responses if applied at a quite specific circadian time: A 40- to 400-lux pulse given at approximately CT 0 (late subjective night) induced total arrhythmicity, and the culture reverted to asynchronous, exponential growth. Different degrees of arrhythmicity were induced by the same low-intensity perturbations (I*) given slightly before or after this sensitive phase point (T*), but if imposed at other circadian times, they generated normal type 0 phase resetting. The demonstration of the existence of this critical pulse (T*, I*) provides further evidence that the cell division cycle of Euglena (and presumably other microorganisms) is regulated by a circadian oscillator and, in particular, by one having limit cycle dynamics.

摘要

通过在不同昼夜节律时间(CT)施加不同强度的3小时光信号,扰乱了藻类鞭毛虫纤细裸藻(Euglena gracilis,Z)细胞分裂的自由运行昼夜节律。发现700至7500勒克斯范围内的光脉冲产生相同的“强”(0型)相位响应曲线(PRC),包括提前和延迟相移,最大可达15小时。暗信号产生的PRC幅度减小,几乎没有观察到相位提前(如果有的话)。然而,如果在非常特定的昼夜节律时间施加较低强度的光扰动,则会引发截然不同的反应:在大约CT 0(主观深夜)给予40至400勒克斯的脉冲会导致完全无节律,培养物恢复为异步指数生长。在这个敏感相位点(T*)之前或之后稍微给予相同的低强度扰动(I*)会诱导不同程度的无节律,但如果在其他昼夜节律时间施加,则会产生正常的0型相位重置。这种临界脉冲(T*,I*)存在的证明提供了进一步的证据,表明裸藻(可能还有其他微生物)的细胞分裂周期受昼夜节律振荡器调节,特别是受具有极限环动力学的振荡器调节。

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