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Potential unsatisfiability of cyclic constraints on stochastic biological networks biases selection towards hierarchical architectures

机译:随机生物网络上循环约束的潜在不满足性将选择偏向于层次结构

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摘要

Constraints placed upon the phenotypes of organisms result from their interactions with the environment. Over evolutionary time scales, these constraints feed back onto smaller molecular subnetworks comprising the organism. The evolution of biological networks is studied by considering a network of a few nodes embedded in a larger context. Taking into account this fact that any network under study is actually embedded in a larger context, we define network architecture, not on the basis of physical interactions alone, but rather as a specification of the manner in which constraints are placed upon the states of its nodes. We show that such network architectures possessing cycles in their topology, in contrast to those that do not, may be subjected to unsatisfiable constraints. This may be a significant factor leading to selection biased against those network architectures where such inconsistent constraints are more likely to arise. We proceed to quantify the likelihood of inconsistency arising as a function of network architecture finding that, in the absence of sampling bias over the space of possible constraints and for a given network size, networks with a larger number of cycles are more likely to have unsatisfiable constraints placed upon them. Our results identify a constraint that, at least in isolation, would contribute to a bias in the evolutionary process towards more hierarchical -modular versus completely connected network architectures. Together, these results highlight the context dependence of the functionality of biological networks.
机译:对生物表型的限制是由于它们与环境的相互作用。在进化的时间尺度上,这些限制条件会反馈到包含该生物体的较小分子子网络中。通过考虑在较大范围内嵌入几个节点的网络来研究生物网络的演化。考虑到以下事实,即所研究的任何网络实际上都嵌入了较大的上下文中,因此,我们不仅仅根据物理交互来定义网络体系结构,而是作为对对其状态进行约束的方式的规范。节点。我们表明,与那些没有拓扑结构的网络体系结构相比,在拓扑结构中具有周期的网络体系结构可能会受到无法满足的约束。这可能是导致选择偏向于那些更可能出现这种不一致约束的那些网络体系结构的重要因素。我们继续量化因网络架构而引起的不一致的可能性,发现在没有可能的约束空间且对于给定的网络大小的采样偏差的情况下,周期数较大的网络更有可能无法满足需求约束。我们的结果确定了一个约束条件,至少在孤立的情况下,该约束条件将导致进化过程中偏向于更加分层的模块化与完全连接的网络体系结构。总之,这些结果突出了生物网络功能的上下文依赖性。

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