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A Network Characteristic That Correlates Environmental and Genetic Robustness

机译:与环境和遗传稳健性相关的网络特性

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摘要

As scientific advances in perturbing biological systems and technological advances in data acquisition allow the large-scale quantitative analysis of biological function, the robustness of organisms to both transient environmental stresses and inter-generational genetic changes is a fundamental impediment to the identifiability of mathematical models of these functions. An approach to overcoming this impediment is to reduce the space of possible models to take into account both types of robustness. However, the relationship between the two is still controversial. This work uncovers a network characteristic, transient responsiveness, for a specific function that correlates environmental imperturbability and genetic robustness. We test this characteristic extensively for dynamic networks of ordinary differential equations ranging up to 30 interacting nodes and find that there is a power-law relating environmental imperturbability and genetic robustness that tends to linearity as the number of nodes increases. Using our methods, we refine the classification of known 3-node motifs in terms of their environmental and genetic robustness. We demonstrate our approach by applying it to the chemotaxis signaling network. In particular, we investigate plausible models for the role of CheV protein in biochemical adaptation via a phosphorylation pathway, testing modifications that could improve the robustness of the system to environmental and/or genetic perturbation.
机译:由于扰动生物系统的科学进步和数据采集的技术进步允许对生物功能进行大规模定量分析,因此生物体对瞬态环境压力和代际遗传变化的鲁棒性是识别生物数学模型的根本障碍。这些功能。克服此障碍的一种方法是减少可能的模型的空间,以考虑两种类型的鲁棒性。但是,两者之间的关系仍然存在争议。这项工作揭示了网络特性,即瞬态响应性,用于与环境不可干扰性和遗传稳健性相关的特定功能。我们针对多达30个相互作用的节点的常微分方程的动态网络广泛地测试了该特性,发现存在与环境不可扰度和遗传鲁棒性有关的幂律,随着幂数的增加,该幂律趋于线性。使用我们的方法,我们根据环境和遗传稳健性完善了已知的3节点基序的分类。我们通过将其应用于趋化性信号网络来证明我们的方法。特别是,我们研究了CheV蛋白通过磷酸化途径在生化适应中的作用的合理模型,测试了可以改善系统对环境和/或基因扰动的鲁棒性的修饰。

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