Research Article Open Access

OSCILLATORY SYNTHETIC BIOLOGICAL SYSTEM CONSTRUCTION USING INTERACTIVE EVOLUTIONARY COMPUTATIONS

Quang Huy Dinh1, Nasimul Noman2 and Hitoshi Iba1
  • 1 The University of Tokyo, Japan
  • 2 The University of Newcastle, Australia

Abstract

In this study, we propose an Interactive Evolutionary Computation system to design gene networks for synthetic biology, of which the objective is to construct new organisms through the artificial synthesis of gene networks. Wet laboratories typically design gene networks through trial and error methods, which makes the construction of complex networks difficult. As a solution, automation can significantly improve the efficiency of identification of useful networks. However, guidance and feedback from biologists are required for the automation of this process, primarily because models that are sufficiently accurate at precisely simulating network behavior do not exist yet. Therefore, we have implemented an Interactive Evolutionary Computation system that allows the automation of the gene network design task while incorporating expert knowledge. Our results show that the system can efficiently design oscillating networks and can successfully identify complex networks, which are difficult to generate manually.

Journal of Computer Science
Volume 10 No. 12, 2014, 2640-2652

DOI: https://doi.org/10.3844/jcssp.2014.2640.2652

Submitted On: 18 August 2014 Published On: 14 January 2015

How to Cite: Dinh, Q. H., Noman, N. & Iba, H. (2014). OSCILLATORY SYNTHETIC BIOLOGICAL SYSTEM CONSTRUCTION USING INTERACTIVE EVOLUTIONARY COMPUTATIONS. Journal of Computer Science, 10(12), 2640-2652. https://doi.org/10.3844/jcssp.2014.2640.2652

  • 4,265 Views
  • 2,166 Downloads
  • 0 Citations

Download

Keywords

  • Synthetic Biology
  • Evolutionary Computation
  • Interactive
  • Oscillation