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首页> 外文期刊>Acta Biotheoretica >Genotype Components as Predictors of Phenotype in Model Gene Regulatory Networks
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Genotype Components as Predictors of Phenotype in Model Gene Regulatory Networks

机译:基因型组分作为模型基因监管网络中表型的预测因素

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摘要

Models of gene regulatory networks (GRN) have proven useful for understanding many aspects of the highly complex behavior of biological control networks. Randomly generated non-Boolean networks were used in experimental simulations to generate data on dynamic phenotypes as a function of several genotypic parameters. We found that predictive relationships between some phenotypes and quantitative genotypic parameters such as number of network genes, interaction density, and initial condition could be derived depending on the strength of the topological (positional) genotype on specific phenotypes. We quantitated the strength of the topological genotype effect (TGE) on a number of phenotypes in multi-gene networks. For phenotypes with a low influence of topological genotype, derived and empirical relationships using quantitative genotype parameters were accurate in phenotypic outcomes. We found a number of dynamic network properties, including oscillation behaviors, that were largely dependent on genotype topology, and for which no such general quantitative relationships were determinable. It remains to be determined if these results are applicable to biological gene regulatory networks.
机译:基因监管网络(GRN)的模型已经证明有助于了解生物控制网络的高度复杂行为的许多方面。实际生成的非布尔网络用于实验模拟中,以产生动态表型的数据作为几种基因型参数的函数。我们发现,根据特定表型上的拓扑(位置)基因型的强度,可以导出诸如网络基因,相互作用密度和初始条件的一些表型和定量基因型参数之间的预测关系。我们在多基因网络中的许多表型上量化了拓扑基因型效应(TGE)的强度。对于具有低拓扑基因型影响的表型,使用定量基因型参数的衍生和经验关系是准确的表型结果。我们发现许多动态网络属性,包括振荡行为,这些性能在很大程度上依赖于基因型拓扑,并且没有确定这种一般的定量关系是可确定的。如果这些结果适用于生物基因监管网络,则仍有待确定。

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