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网络的结构距离与进化关系。

Structural distance and evolutionary relationship of networks.

作者信息

Banerjee Anirban

机构信息

Max Planck Institute for Molecular Genetics, Berlin, Germany.

出版信息

Biosystems. 2012 Mar;107(3):186-96. doi: 10.1016/j.biosystems.2011.11.004. Epub 2011 Nov 23.

Abstract

Exploring common features and universal qualities shared by a particular class of networks in biological and other domains is one of the important aspects of evolutionary study. In an evolving system, evolutionary mechanism can cause functional changes that forces the system to adapt to new configurations of interaction pattern between the components of that system (e.g. gene duplication and mutation play a vital role for changing the connectivity structure in many biological networks. The evolutionary relation between two systems can be retraced by their structural differences). The eigenvalues of the normalized graph Laplacian not only capture the global properties of a network, but also local structures that are produced by graph evolutions (like motif duplication or joining). The spectrum of this operator carries many qualitative aspects of a graph. Given two networks of different sizes, we propose a method to quantify the topological distance between them based on the contrasting spectrum of normalized graph Laplacian. We find that network architectures are more similar within the same class compared to between classes. We also show that the evolutionary relationships can be retraced by the structural differences using our method. We analyze 43 metabolic networks from different species and mark the prominent separation of three groups: Bacteria, Archaea and Eukarya. This phenomenon is well captured in our findings that support the other cladistic results based on gene content and ribosomal RNA sequences. Our measure to quantify the structural distance between two networks is useful to elucidate evolutionary relationships.

摘要

探索生物领域和其他领域中特定类别的网络所共有的共同特征和普遍性质是进化研究的重要方面之一。在一个不断进化的系统中,进化机制会导致功能变化,迫使系统适应其组成部分之间相互作用模式的新配置(例如,基因复制和突变在改变许多生物网络的连接结构方面起着至关重要的作用。两个系统之间的进化关系可以通过它们的结构差异来追溯)。归一化图拉普拉斯算子的特征值不仅捕获网络的全局属性,还捕获由图进化产生的局部结构(如基序复制或连接)。该算子的谱承载了图的许多定性方面。给定两个不同大小的网络,我们提出一种基于归一化图拉普拉斯算子的对比谱来量化它们之间拓扑距离的方法。我们发现,与不同类别之间相比,同一类别内的网络架构更为相似。我们还表明,使用我们的方法可以通过结构差异追溯进化关系。我们分析了来自不同物种的43个代谢网络,并标记出细菌、古细菌和真核生物这三组的显著分离。这一现象在我们的研究结果中得到了很好的体现,这些结果支持了基于基因含量和核糖体RNA序列的其他分支学结果。我们用于量化两个网络之间结构距离的方法有助于阐明进化关系。

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