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通过对拟南芥的暗脉冲干扰来控制生物钟节律。

Controlling circadian rhythms by dark-pulse perturbations in Arabidopsis thaliana.

机构信息

Department of Mechanical Engineering, Graduate School of Engineering, Osaka Prefecture University, Sakai 599-8531, Japan.

出版信息

Sci Rep. 2013;3:1533. doi: 10.1038/srep01533.

Abstract

Plant circadian systems are composed of a large number of self-sustained cellular circadian oscillators. Although the light-dark signal in the natural environment is known to be the most powerful Zeitgeber for the entrainment of cellular oscillators, its effect is too strong to control the plant rhythm into various forms of synchrony. Here, we show that the application of pulse perturbations, i.e., short-term injections of darkness under constant light, provides a novel technique for controlling the synchronized behavior of plant rhythm in Arabidopsis thaliana. By destroying the synchronized cellular activities, circadian singularity was experimentally induced. The present technique is based upon the theory of phase oscillators, which does not require prior knowledge of the detailed dynamics of the plant system but only knowledge of its phase and amplitude responses to the pulse perturbation. Our approach can be applied to diverse problems of controlling biological rhythms in living systems.

摘要

植物生物钟系统由大量自我维持的细胞生物钟振荡器组成。虽然自然环境中的光-暗信号被认为是细胞振荡器同步的最强授时因子,但它的作用过于强大,无法将植物节律控制为各种形式的同步。在这里,我们表明,应用脉冲干扰,即在持续光照下进行短期黑暗处理,为控制拟南芥植物节律的同步行为提供了一种新的技术。通过破坏同步的细胞活动,实验诱导了生物钟奇点。本技术基于相振荡器理论,该理论不需要植物系统详细动力学的先验知识,而只需要知道其对脉冲干扰的相位和幅度响应。我们的方法可以应用于控制生命系统中生物节律的各种问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/580d/3607175/51175668e801/srep01533-f1.jpg

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