Single-Molecule DNA Sequencing of a Viral Genome

2008 Science 683 citations

Abstract

The full promise of human genomics will be realized only when the genomes of thousands of individuals can be sequenced for comparative analysis. A reference sequence enables the use of short read length. We report an amplification-free method for determining the nucleotide sequence of more than 280,000 individual DNA molecules simultaneously. A DNA polymerase adds labeled nucleotides to surface-immobilized primer-template duplexes in stepwise fashion, and the asynchronous growth of individual DNA molecules was monitored by fluorescence imaging. Read lengths of >25 bases and equivalent phred software program quality scores approaching 30 were achieved. We used this method to sequence the M13 virus to an average depth of >150× and with 100% coverage; thus, we resequenced the M13 genome with high-sensitivity mutation detection. This demonstrates a strategy for high-throughput low-cost resequencing.

Keywords

GenomePrimer (cosmetics)DNA sequencingBiologyDNAComputational biologyGenomicsGeneticsMultiple displacement amplificationSequence (biology)Polymerase chain reactionSequence assemblyDNA nanoball sequencingHuman genomeGenomic libraryGeneBase sequenceChemistryDNA extraction

MeSH Terms

AlgorithmsBacteriophage M13Computational BiologyDNA PrimersDNAViralGenomeViralMutationSequence AlignmentSequence AnalysisDNASoftwareTemplatesGenetic

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Publication Info

Year
2008
Type
article
Volume
320
Issue
5872
Pages
106-109
Citations
683
Access
Closed

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683
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17
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558
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Cite This

T.D. Harris, Phillip R. Buzby, Hazen P. Babcock et al. (2008). Single-Molecule DNA Sequencing of a Viral Genome. Science , 320 (5872) , 106-109. https://doi.org/10.1126/science.1150427

Identifiers

DOI
10.1126/science.1150427
PMID
18388294

Data Quality

Data completeness: 81%