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Evolving Boolean Networks with Structural Dynamism

机译:具有结构动力的布尔布尔网络

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This short article presents an abstract, tunable model of genomic structural change within the cell life cycle and explores its use with simulated evolution. A well-known Boolean model of genetic regulatory networks is extended to include changes in node connectivity based upon the current cell state to begin to capture some of the effects of transposable elements. The evolvability of such networks is explored using a version of the NK model of fitness landscapes with both synchronous and asynchronous updating. Structural dynamism is found to be selected for in nonstationary environments with both update schemes and subsequently shown capable of providing a mechanism for evolutionary innovation when such reorganizations are inherited. This is also found to be the case in stationary environments with asynchronous updating.
机译:这篇简短的文章介绍了细胞生命周期内基因组结构变化的抽象可调模型,并探讨了其在模拟进化中的用途。基因调控网络的一个众所周知的布尔模型被扩展为包括基于当前细胞状态的节点连通性变化,以开始捕获转座因子的某些作用。使用具有同步更新和异步更新功能的适应性景观NK模型版本来探索此类网络的可扩展性。发现具有两种更新方案的非动态环境都选择了结构动力,并且当这种重组被继承时,结构动力可以提供进化创新的机制。还发现在具有异步更新的固定环境中也是如此。

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