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Article
PCAP: A Whole-Genome Assembly Program
Genome Research
  • Xiaoqiu Huang, Iowa State University
  • Jianmin Wang, Iowa State University
  • Srinivas Aluru, Iowa State University
  • Shiaw-Pyng Yang, Washington University Medical School
  • LaDeana Hillier, Washington University Medical School
Document Type
Article
Publication Version
Published Version
Publication Date
1-1-2003
DOI
10.1101/gr.1390403
Abstract

We describe a whole-genome assembly program named PCAP for processing tens of millions of reads. The PCAP program has several features to address efficiency and accuracy issues in assembly. Multiple processors are used to perform most time-consuming computations in assembly. A more sensitive method is used to avoid missing overlaps caused by sequencing errors. Repetitive regions of reads are detected on the basis of many overlaps with other reads, instead of many shorter word matches with other reads. Contaminated end regions of reads are identified and removed. Generation of a consensus sequence for a contig is based on an alignment of reads in the contig, in which both base quality values and coverage information are used to determine every consensus base. The PCAP program was tested on a mouse whole-genome data set of 30 million reads and a human Chromosome 20 data set of 1.7 million reads. The program is freely available for academic use.

Comments

This article is published as Huang, Xiaoqiu, Jianmin Wang, Srinivas Aluru, Shiaw-Pyng Yang, and LaDeana Hillier. "PCAP: a whole-genome assembly program." Genome research 13, no. 9 (2003): 2164-2170. doi: 10.1101/gr.1390403. Posted with permission.

Creative Commons License
Creative Commons Attribution-Noncommercial 4.0
Copyright Owner
Cold Spring Harbor Laboratory Press
Language
en
File Format
application/pdf
Citation Information
Xiaoqiu Huang, Jianmin Wang, Srinivas Aluru, Shiaw-Pyng Yang, et al.. "PCAP: A Whole-Genome Assembly Program" Genome Research Vol. 13 Iss. 9 (2003) p. 2164 - 2170
Available at: http://works.bepress.com/xiaoqiu-huang/18/