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Optimising time-series experimental design for modelling of circadian rhythms: the value of transient data

机译:优化昼夜节律建模的时间序列实验设计:瞬态数据的价值

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Circadian clocks consist of complex networks that coordinate the daily cycle of most organisms. In light/dark cycles, the clock is synchronized (or entrained) by the environment, which corresponds to a constant rephasing of the oscillations and leads to a steady state regime. Some circadian clocks are endogenous oscillators with rhythms of about 24-hours that persist in constant light or constant darkness. This operating mechanism with and without entrainment provides flexibility and robustness to the clock against perturbations. Most of the clock-oriented experiments are performed under constant photoperiodic regime, overlooking the transitory regime that takes place between light/dark cycles and constant light or darkness. This paper provides a comparative analysis of the informative potential of the transient time-series data with the other regimes for clock modelling. Realistic data were simulated from 2 experimentally validated plant circadian clock models and sliced into several time windows. These windows represent the different regimes that take place before, meanwhile and after the switch to constant light. Then, a network inference tool was used over each window and its capability of retrieving the ground-truth of the network was compared for each window. The results suggest that including the transient data to the network inference technique significally improves its performance.
机译:昼夜节奏包括复杂网络,可协调大多数生物的日常循环。在光/暗循环中,时钟由环境同步(或夹带),其对应于振荡的恒定重新位,并导致稳态状态。一些昼夜钟表是内源性振荡器,节奏约24小时,持续亮或恒定的黑暗。这种具有和没有夹带的操作机制为扰动时钟提供了灵活性和鲁棒性。大多数时钟取向的实验在恒定的光周期区域下进行,俯视在光/暗循环和恒定光或黑暗之间发生的暂时性状态。本文提供了与时钟建模的其他方案的瞬态时间序列数据的信息潜力的比较分析。从2个实验验证的植物昼夜节奏模型模拟现实数据,并切成几个时间窗口。这些窗口代表了之前发生的不同政权,同时和开关以后的恒定光线。然后,对每个窗口使用网络推理工具,并对每个窗口进行检索到网络的地面真实的能力。结果表明,包括对网络推理技术的瞬态数据表示其性能。

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