The Institute for Chemical Physics, Beijing Institute of Technology, Beijing, 100081, China.
Biophys Chem. 2009 Dec;145(2-3):57-63. doi: 10.1016/j.bpc.2009.08.009. Epub 2009 Sep 6.
An internal noise-driven oscillator was studied in a two-variable Drosophila model, where both positive feedback and negative feedback are crucial to the circadian oscillations. It is shown that internal noise could sustain reliable oscillations for the parameter which produces a stable steady state in the deterministic system. The noise-sustained oscillations are interpreted by using phase plane analysis. The period of such oscillations fluctuates slightly around the period of deterministic oscillations and the coherence of oscillations becomes the best at an optimal internal noise intensity, indicating the occurrence of intrinsic coherence resonance. In addition, in the oscillatory region, the coherence of noisy circadian oscillations is suppressed by the internal noise, but the period is hardly affected, demonstrating the robustness of the Drosophila model for circadian rhythms to the intrinsic noise.
研究了双变量果蝇模型中的内部噪声驱动振荡器,其中正反馈和负反馈对生物钟振荡至关重要。结果表明,内部噪声可以维持参数的可靠振荡,该参数在确定性系统中产生稳定的稳态。利用相平面分析解释了噪声维持的振荡。这种振荡的周期在确定性振荡的周期附近略有波动,并且在最佳内部噪声强度下,振荡的相干性达到最佳,表明存在固有相干共振。此外,在振荡区域,内部噪声抑制了噪声生物钟振荡的相干性,但周期几乎不受影响,表明果蝇模型生物钟对内在噪声具有鲁棒性。