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Base-Calling of Automated Sequencer Traces Using<i>Phred.</i> I. Accuracy Assessment

Genome Research · 1998 · Vol. 8(3) · pp. 175–185
Brent EwingLaDeana HillierMichael C. WendlPhil Green

Abstract

The availability of massive amounts of DNA sequence information has begun to revolutionize the practice of biology. As a result, current large-scale sequencing output, while impressive, is not adequate to keep pace with growing demand and, in particular, is far short of what will be required to obtain the 3-billion-base human genome sequence by the target date of 2005. To reach this goal, improved automation will be essential, and it is particularly important that human involvement in sequence data processing be significantly reduced or eliminated. Progress in this respect will require both improved accuracy of the data processing software and reliable accuracy measures to reduce the need for human involvement in error correction and make human review more efficient. Here, we describe one step toward that goal: a base-calling program for automated sequencer traces, phred, with improved accuracy. phred appears to be the first base-calling program to achieve a lower error rate than the ABI software, averaging 40%-50% fewer errors in the data sets examined independent of position in read, machine running conditions, or sequencing chemistry.

Genomics and Phylogenetic StudiesRNA and protein synthesis mechanismsAlgorithms and Data CompressionPaceBiologySoftwareAutomationHuman genomeBase (topology)Computer scienceSequence (biology)Knowledge baseDNA sequencing

MeSH terms

AlgorithmsBase SequenceHumansSensitivity and SpecificitySoftwareReproducibility of ResultsHuman Genome ProjectSequence AlignmentSequence Analysis, DNA

Funding

  • National Human Genome Research Institute
Citations
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