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首页> 外文期刊>Journal of Theoretical Biology >Velocity response curves demonstrate the complexity of modeling entrainable clocks
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Velocity response curves demonstrate the complexity of modeling entrainable clocks

机译:速度响应曲线展示了为可携式时钟建模的复杂性

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Circadian clocks are biological oscillators that regulate daily behaviors in organisms across the kingdoms of life. Their rhythms are generated by complex systems, generally involving interlocked regulatory feedback loops. These rhythms are entrained by the daily light/dark cycle, ensuring that the internal clock time is coordinated with the environment. Mathematical models play an important role in understanding how the components work together to function as a clock which can be entrained by light. For a clock to entrain, it must be possible for it to be sped up or slowed down at appropriate times. To understand how biophysical processes affect the speed of the clock, one can compute velocity response curves (VRCs). Here, in a case study involving the fruit fly clock, we demonstrate that VRC analysis provides insight into a clock's response to light. We also show that biochemical mechanisms and parameters together determine a model's ability to respond realistically to light The implication is that, if one is developing a model and its current form has an unrealistic response to light, then one must reexamine one's model structure, because searching for better parameter values is unlikely to lead to a realistic response to light. (C) 2014 The Authors. Published by Elsevier Ltd.
机译:昼夜节律生物钟是调节整个生命王国中生物日常行为的生物振荡器。它们的节奏由复杂的系统产生,通常涉及互锁的监管反馈回路。每天的明/暗循环会带动这些节奏,从而确保内部时钟时间与环境协调。数学模型在理解各组件如何协同工作以充当可被光夹带的时钟方面起着重要作用。为了使时钟train带,必须在适当的时间加速或放慢时钟。要了解生物物理过程如何影响时钟速度,可以计算速度响应曲线(VRC)。在这里,在一个涉及果蝇钟的案例研究中,我们证明了VRC分析可以洞察钟对光的响应。我们还表明,生化机制和参数共同决定了模型对光的真实响应能力。这意味着,如果正在开发模型,并且其当前形式对光具有不切实际的响应,则必须重新检查模型的结构,因为搜索为了获得更好的参数值,不太可能导致对光的真实响应。 (C)2014作者。由Elsevier Ltd.发布

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