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Evolution of small-world topologies in an artificial genetic regulatory network model

机译:人工遗传调控网络模型中小世界拓扑的演变

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Despite growing evidence of the prevalence and importance of small-world topologies in genetic regulatory networks, the mechanisms by which they form and persist have remained an open question. Using the artificial genome model as a framework for describing genetic regulatory networks, we propose a segmental duplication and divergence model, and distill the question of evolving small-world topologies into two simulation experiments that show: (1) the generation methods of the networks, such as segmental duplication and divergence, play an important role in this process; (2) the natural selection of the networks can accelerate the process of small-world formation.
机译:尽管越来越多的证据表明小世界拓扑在遗传调控网络中的普遍性和重要性,但它们形成和维持的机制仍是一个悬而未决的问题。使用人工基因组模型作为描述遗传调控网络的框架,我们提出了分段重复和发散模型,并将发展小世界拓扑的问题提炼为两个模拟实验,这些实验表明:(1)网络的生成方法,段重复和发散等在此过程中起着重要作用; (2)网络的自然选择可以加速小世界的形成过程。

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