Knabe Johannes F, Nehaniv Chrystopher L, Schilstra Maria J
Adaptive Systems Research Group, School of Computer Science, University of Hertfordshire, Hatfield, Hertfordshire AL10 9AB, United Kingdom.
Artif Life. 2008 Winter;14(1):135-48. doi: 10.1162/artl.2008.14.1.135.
We study the evolvability and dynamics of artificial genetic regulatory networks (GRNs), as active control systems, realizing simple models of biological clocks that have evolved to respond to periodic environmental stimuli of various kinds with appropriate periodic behaviors. GRN models may differ in the evolvability of expressive regulatory dynamics. A new class of artificial GRNs with an evolvable number of complex cis-regulatory control sites--each involving a finite number of inhibitory and activatory binding factors--is introduced, allowing realization of complex regulatory logic. Previous work on biological clocks in nature has noted the capacity of clocks to oscillate in the absence of environmental stimuli, putting forth several candidate explanations for their observed behavior, related to anticipation of environmental conditions, compartmentation of activities in time, and robustness to perturbations of various kinds or to unselected accidents of neutral selection. Several of these hypotheses are explored by evolving GRNs with and without (Gaussian) noise and blackout periods for environmental stimulation. Robustness to certain types of perturbation appears to account for some, but not all, dynamical properties of the evolved networks. Unselected abilities, also observed for biological clocks, include the capacity to adapt to change in wavelength of environmental stimulus and to clock resetting.
我们将人工基因调控网络(GRNs)作为主动控制系统进行研究,构建生物钟的简单模型,这些生物钟已经进化到能够以适当的周期性行为对各种周期性环境刺激做出反应。GRN模型在表达调控动力学的进化能力方面可能存在差异。我们引入了一类新型的人工GRNs,其具有数量可进化的复杂顺式调控控制位点——每个位点涉及有限数量的抑制性和激活性结合因子——从而能够实现复杂的调控逻辑。先前关于自然界生物钟的研究已经注意到生物钟在没有环境刺激的情况下仍能振荡的能力,并针对其观察到的行为提出了几种候选解释,这些解释与对环境条件的预期、活动在时间上的划分以及对各种干扰或中性选择的非选择偶然事件的鲁棒性有关。通过在有和没有(高斯)噪声以及环境刺激中断期的情况下进化GRNs,我们对其中一些假设进行了探索。对某些类型干扰的鲁棒性似乎可以解释进化网络的部分而非全部动力学特性。生物钟还具有一些非选择能力,包括适应环境刺激波长变化和生物钟重置的能力,这在本研究的进化网络中也有观察到。