Ullner Ekkehard, Buceta Javier, Díez-Noguera Antoni, García-Ojalvo Jordi
Departament de Física i Enginyeria Nuclear, Universitat Politècnica de Catalunya, Terrassa, Spain.
Biophys J. 2009 May 6;96(9):3573-81. doi: 10.1016/j.bpj.2009.02.031.
In higher organisms, circadian rhythms are generated by a multicellular genetic clock that is entrained very efficiently to the 24-h light-dark cycle. Most studies done so far of these circadian oscillators have considered a perfectly periodic driving by light, in the form of either a square wave or a sinusoidal modulation. However, in natural conditions, organisms are subject to nonnegligible fluctuations in the light level all through the daily cycle. In this article, we investigate how the interplay between light fluctuations and intercellular coupling affects the dynamics of the collective rhythm in a large ensemble of nonidentical, globally coupled cellular clocks modeled as Goodwin oscillators. On the basis of experimental considerations, we assume an inverse dependence of the cell-cell coupling strength on the light intensity, in such a way that the larger the light intensity, the weaker the coupling. Our results show a noise-induced rhythm generation for constant light intensities at which the clock is arrhythmic in the noise-free case. Importantly, the rhythm shows a resonancelike phenomenon as a function of the noise intensity. Such improved coherence can be only observed at the level of the overt rhythm and not at the level of the individual oscillators, thus suggesting a cooperative effect of noise, coupling, and the emerging synchronization between the oscillators.
在高等生物中,昼夜节律由一个多细胞遗传时钟产生,该时钟能非常有效地与24小时明暗周期同步。迄今为止,对这些昼夜振荡器的大多数研究都考虑了光以方波或正弦调制形式进行的完美周期性驱动。然而,在自然条件下,生物体在整个日常周期中都会受到不可忽略的光照水平波动的影响。在本文中,我们研究了光波动与细胞间耦合之间的相互作用如何影响一大组以古德温振荡器建模的不同的、全局耦合的细胞时钟集体节律的动力学。基于实验考虑,我们假设细胞间耦合强度与光强度呈反比关系,即光强度越大,耦合越弱。我们的结果表明,在恒定光强度下会出现噪声诱导的节律产生,而在无噪声情况下时钟是无节律的。重要的是,该节律表现出一种类似共振的现象,是噪声强度的函数。这种增强的相干性只能在明显节律的层面上观察到,而在单个振荡器的层面上则观察不到,这表明噪声、耦合以及振荡器之间新出现的同步存在协同效应。