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Effects of Stochastic Noise on the Evolution of Canalization

机译:随机噪声对渠化演变的影响

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Canalization is a form of network robustness found in genetic regulatory networks that results in a reduction of the variation of phenotypic expression relative to the complexity of the genome. Recently, it was discovered that canalization can evolve in a complex network through a self-organization of node (gene) behavior resulting from a competition of a network's nodes that selects for a diversity of behavior [K.E. Bassler, C. Lee, and Y. Lee, Phys. Rev. Lett. 93, 038101 (2004)]. Previously, this "self-organized" mechanism for the evolution of canalization has been studied only in deterministic model systems. This paper considers the effects of stochastic noise in the signals exchanged between nodes on the self-organized evolution of canalization. We find that small levels of stochastic noise increase the amount of canalization produced. At higher levels of noise, the amount of canalization produced levels off and reaches a maximum value, before it reduces at large levels of noise.
机译:渠化是遗传调控网络中发现的一种网络健壮性形式,相对于基因组复杂性而言,其导致表型表达变化的减少。最近,人们发现,通过网络节点竞争选择行为的多样性而产生的节点(基因)行为的自组织,渠化可以在复杂的网络中发展。 Bassler,C. Lee和Y. Lee,Phys。牧师93,038101(2004)]。以前,仅在确定性模型系统中研究了渠化发展的这种“自组织”机制。本文考虑了节点之间交换的信号中随机噪声对渠化自组织演化的影响。我们发现,少量的随机噪声会增加渠化的数量。在较高的噪声水平下,所产生的渠化量趋于平稳并达到最大值,然后在较大的噪声水平下降低。

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