Title :
Design and Analysis of DNA Fragment Assembly´s Converter and Checker Modules using De Bruijin Graph
Author :
Yaakub, Tuan Norjihan Tuan ; Hassan, Haitham ; Halim, Abdul Karimi ; Hassan, Siti Lailatul Mohd ; Helmi, Mohd Shafiq B. Mohd
Author_Institution :
Fac. of Electr. Eng., Univ. Teknol. MARA, Shah Alam, Malaysia
Abstract :
This paper presents the Design and Analysis of DNA Fragment Assembly´s Converter and Checker Modules using De Bruijin Graph. There are several objectives of this paper. The first objective is to design and analyze edges and vertices converter. Secondly, this paper will also discuss about designing and analyzing common edge and branch checker. In addition, all the modules will be integrated in one top module. Lastly, the integrated module will be simulated in Xilinx ISE software. Based on the objectives, this paper will discuss on constructing a DNA Fragment Assembly module that consist of four submodules which is Edges Converter, Vertices Converter, Common Edge Checker and Branch Checker. The sequencing method used in this paper is Hybridization method. Hybridization method is an option to shotgun sequencing. Hybridization uses the array identifying algorithm to identify the sequence. The algorithm used to construct the module is Bruijn Graph. De Bruijn Graph represents sequences of symbols from an alphabet, and edges that indicate where the sequence may overlap. First, the set of DNA will inserted in to the module, and then the module will do all the converting and checking process of the input before produce the output of vertices and the branch of edges. The entire algorithm and theory then been simulated in Xilinx to test the functionality.
Keywords :
DNA; biological techniques; biology computing; DNA fragment assembly converter; DNA sequencing method; De Bruijin graph; Xilinx ISE software; alphabet; branch checker; checker modules; checking process; common edge checker; hybridization method; integrated module; vertices converter; Assembly; DNA; Educational institutions; Flowcharts; Hardware design languages; Image edge detection; Sequential analysis; Common Edge and Branch Edges; Deoxyribonucleic Acid (DNA); Edge; Hybridization; Shotgun; Vertices;
Conference_Titel :
Business Engineering and Industrial Applications Colloquium (BEIAC), 2013 IEEE
Conference_Location :
Langkawi
Print_ISBN :
978-1-4673-5967-2
DOI :
10.1109/BEIAC.2013.6560200