Trace Reconstruction Problems in Computational Biology

October 12, 2020 ยท The Ethereal ยท ๐Ÿ› IEEE Transactions on Information Theory

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Authors Vinnu Bhardwaj, Pavel A. Pevzner, Cyrus Rashtchian, Yana Safonova arXiv ID 2010.06083 Category cs.CC: Computational Complexity Cross-listed cs.IT, cs.LG, q-bio.GN Citations 34 Venue IEEE Transactions on Information Theory Last Checked 1 month ago
Abstract
The problem of reconstructing a string from its error-prone copies, the trace reconstruction problem, was introduced by Vladimir Levenshtein two decades ago. While there has been considerable theoretical work on trace reconstruction, practical solutions have only recently started to emerge in the context of two rapidly developing research areas: immunogenomics and DNA data storage. In immunogenomics, traces correspond to mutated copies of genes, with mutations generated naturally by the adaptive immune system. In DNA data storage, traces correspond to noisy copies of DNA molecules that encode digital data, with errors being artifacts of the data retrieval process. In this paper, we introduce several new trace generation models and open questions relevant to trace reconstruction for immunogenomics and DNA data storage, survey theoretical results on trace reconstruction, and highlight their connections to computational biology. Throughout, we discuss the applicability and shortcomings of known solutions and suggest future research directions.
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