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Mathematical methods for inferring regulatory networks interactions:application to genetic regulation

机译:推断调控网络相互作用的数学方法:在遗传调控中的应用

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This paper deals with the problem of reconstruction of the intergenic interaction graph from the raw data of genetic co-expression coming with new technologies of bio-arrays (DNA-arrays,protein-arrays,etc.).These new imaging devices in general only give information about the asymptotical part (fixed configurations of co-expression or limit cycles of such configurations) of the dynamical evolution of the regulatory networks (genetic and/or proteic) underlying the functioning of living systems.Extracting the casual structure and interaction coefficients of a gene interaction network from the observed configurations is a complex problem.But if all the fixed configurations are supposedly observed and if they are factorizable into two or more subsets of values,then the interaction graph possesses as many connected components as the number of factors and the solution is obtained in polynomial time.This new result allows us for example to partly solve the topology of the genetic regulatory network ruling the flowering in Arabidopsis thaliana.
机译:本文从遗传共表达的原始数据与生物阵列新技术(DNA阵列,蛋白质阵列等)一起解决基因间相互作用图的重建问题。这些新的成像设备仅在一般情况下提供有关生命系统功能基础调节网络(遗传和/或蛋白质)动态演变的无症状部分(共表达的固定构型或此类构型的极限环)的信息。从观察到的构型中寻找基因相互作用网络是一个复杂的问题。但是,如果假设所有固定构型都被观察到,并且可以将它们分解为两个或多个值子集,则相互作用图所具有的连接分量与因子数和新的结果使我们可以部分解决遗传调控网络的拓扑问题。 twork决定拟南芥中的开花。

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