【2h】

Structure of deviations from optimality in biological systems

机译:生物系统中偏离最优性的结构

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摘要

Optimization theory has been used to analyze evolutionary adaptation. This theory has explained many features of biological systems, from the genetic code to animal behavior. However, these systems show important deviations from optimality. Typically, these deviations are large in some particular components of the system, whereas others seem to be almost optimal. Deviations from optimality may be due to many factors in evolution, including stochastic effects and finite time, that may not allow the system to reach the ideal optimum. However, we still expect the system to have a higher probability of reaching a state with a higher value of the proposed indirect measure of fitness. In systems of many components, this implies that the largest deviations are expected in those components with less impact on the indirect measure of fitness. Here, we show that this simple probabilistic rule explains deviations from optimality in two very different biological systems. In Caenorhabditis elegans, this rule successfully explains the experimental deviations of the position of neurons from the configuration of minimal wiring cost. In Escherichia coli, the probabilistic rule correctly obtains the structure of the experimental deviations of metabolic fluxes from the configuration that maximizes biomass production. This approach is proposed to explain or predict more data than optimization theory while using no extra parameters. Thus, it can also be used to find and refine hypotheses about which constraints have shaped biological structures in evolution.
机译:优化理论已用于分析进化适应。该理论解释了生物系统的许多特征,从遗传密码到动物行为。但是,这些系统显示出与最优性的重要偏差。通常,这些偏差在系统的某些特定组件中较大,而其他偏差似乎几乎是最佳的。偏离最佳性的原因可能是进化中的许多因素,包括随机效应和有限的时间,这些因素可能不允许系统达到理想的最佳状态。但是,我们仍然希望系统具有更高的可能性,以所建议的间接适应性度量的较高值达到状态。在包含多个组件的系统中,这意味着可以预期这些组件中的最大偏差,而对间接适应度的影响较小。在这里,我们证明了这个简单的概率规则解释了在两个截然不同的生物系统中最优性的偏离。在秀丽隐杆线虫中,该规则成功地解释了神经元位置与最小接线成本配置之间的实验偏差。在大肠杆菌中,概率规则从最大化生物量生产的配置中正确获取了代谢通量实验偏差的结构。提出了这种方法来解释或预测比优化理论更多的数据,而无需使用额外的参数。因此,它也可以用来寻找和完善假设,这些假设限制了进化中的生物结构。

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