Title :
Quantum Genetic Algorithm for Multiple RNA Structural Alignment
Author :
Layeb, Abdesslem ; Meshoul, Souham ; Batouche, Mohamed
Author_Institution :
LIRE Lab., Univ. Mentouri Constantine, Constantine
Abstract :
RNA structural alignment is one of key issues in bioinformatics. It aims to elucidate conserved structural regions among a set of sequences. Finding an accurate conserved structure is still difficult and a time consuming task that involves structural alignment as a prerequisite. In this work, structural alignment is viewed as an optimization process. A quantum based genetic algorithm is proposed to carry out this process. The main features of this algorithm consist in the quantum structure used to represent alignments and the quantum operators defining the overall evolutionary dynamic of the genetic algorithm. The quantum structure relies on the concept of qubit and allows efficient encoding of individuals. Experiments on a wide range of data sets have shown the effectiveness of the proposed framework and its ability to achieve good quality solutions.
Keywords :
biology computing; genetic algorithms; quantum computing; bioinformatics; multiple RNA structural alignment; optimization process; quantum genetic algorithm; ribonucleic acid; Algorithm design and analysis; Bioinformatics; Biological information theory; Evolutionary computation; Genetic algorithms; Quantum computing; Quantum mechanics; RNA; Radiofrequency interference; Thermodynamics; Bioinformatics; Evolutionary Algorithms; Multiple Sequence Alignment; Quantum Computing; RNA;
Conference_Titel :
Modeling & Simulation, 2008. AICMS 08. Second Asia International Conference on
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-0-7695-3136-6
Electronic_ISBN :
978-0-7695-3136-6
DOI :
10.1109/AMS.2008.151