4.7 Article

Duplication and Divergence Effect on Network Motifs in Undirected Bio-Molecular Networks

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TBCAS.2014.2343620

关键词

Bio-molecular network; duplication and divergence; evolutionary mechanism; network growth model; network motif

资金

  1. National Science and Technology Major Project of China [2014ZX10004-001-014]
  2. National Natural Science Foundation of China [61304151, 11172158, 11472290, 61025017]
  3. Australia ARC [DP130104765]
  4. Science Foundation of Henan University [2012YBZR007, 2013YBRW005]

向作者/读者索取更多资源

Duplication and divergence are two basic evolutionary mechanisms of bio-molecular networks. Real-world bio-molecular networks and their statistical characteristics can be well mimicked by artificial algorithms based on the two mechanisms. Bio-molecular networks consist of network motifs, which act as building blocks of large-scale networks. A fundamental question is how network motifs are evolved from long time evolution and natural selection. By considering the effect of various duplication and divergence strategies, we find that the underlying duplication scheme of the real-world undirected bio-molecular networks would rather follow the anti-preference strategy than the random one. The anti-preference duplication mechanism and the dimerization processes can lead to the formation of various motifs, and robustly conserve proper quantities of motifs in the artificial networks as that in the real-world ones. Furthermore, the anti-preference mechanism and edge deletion divergence can robustly preserve the sparsity of the networks. The investigations reveal the possible evolutionary mechanisms of network motifs in real-world bio-molecular networks, and have potential implications in the design, synthesis and reengineering of biological networks for biomedical purpose.

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