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August 14, 2001Proceedings of the National Academy of Sciences1,414 citationsOpen Access

An Eulerian path approach to DNA fragment assembly

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PPPavel A. PevznerHTHaixu TangMWMichael S. Waterman

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Abstract

For the last 20 years, fragment assembly in DNA sequencing followed the "overlap-layout-consensus" paradigm that is used in all currently available assembly tools. Although this approach proved useful in assembling clones, it faces difficulties in genomic shotgun assembly. We abandon the classical "overlap-layout-consensus" approach in favor of a new euler algorithm that, for the first time, resolves the 20-year-old "repeat problem" in fragment assembly. Our main result is the reduction of the fragment assembly to a variation of the classical Eulerian path problem that allows one to generate accurate solutions of large-scale sequencing problems. euler, in contrast to the celera assembler, does not mask such repeats but uses them instead as a powerful fragment assembly tool.

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Pevzner et al. (2001) studied this question.

synapsesocial.com/papers/6a087d567f7fcd1344ddec06https://doi.org/10.1073/pnas.171285098
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