Title :
Poster: Accurate scaffolding of large genomes using integer programming and Non-Serial Dynamic Programming
Author :
J. Lindsay;I. Măndoiu;H. Salooti;A. Zelikovsky
Author_Institution :
Computer Science &
Abstract :
The precipitous drop in sequencing costs has generated much enthusiasm for very large scale genome sequencing initiatives. However, assembling high-quality genome sequences from the short reads currently generated by high-throughput sequencing (HTS) technologies represents a formidable computational challenge that has yet to be met. In this work we address the scaffolding step of genome assembly pipelines, whereby sets of assembled contigs are oriented, ordered, and combined into larger structures called scaffolds. Scaffolding is a critical step of practical genome assembly, as the larger structures significantly increase the usefulness of assembled genomes to biologists.
Keywords :
"Genomics","High temperature superconductors","Assembly","Silicon","Agriculture","Couplings","Computer science"
Conference_Titel :
Computational Advances in Bio and Medical Sciences (ICCABS), 2012 IEEE 2nd International Conference on
Print_ISBN :
978-1-4673-1320-9
DOI :
10.1109/ICCABS.2012.6182653