Publication | Closed Access
Repetition Coding as an Effective Error Correction Code for Information Encoded in DNA
13
Citations
10
References
2011
Year
Unknown Venue
EngineeringGeneticsDna AnalysisMolecular BiologyInformation EncodedGenomicsRepetition CodingDna ComputingDna MutationsVariable-length CodeDna SequencingGenome StructureDna ReplicationDna Data EmbeddingComputer ScienceData CompressionBioinformaticsError Correction CodeComputational BiologyRobust EncodingSystems BiologyMedicineGenome EditingSequence Assembly
The goal of DNA data embedding is to enable robust encoding of non-genetic information in DNA. This field straddles the areas of bioinformatics and digital communications, since DNA mutations can be seen as akin to a noisy channel from the point of view of information encoding. In this paper we present two algorithms which, building on a variant of a method proposed by Yachie et al., rely on repetition coding to effectively counteract the impact that mutations have on an embedded message. The algorithms are designed for resynchronising multiple, originally identical, information encoded DNA sequences, embedded within non-coding DNA (ncDNA) sections of a host genome. They use both BLAST and MUSCLE algorithms to accomplish this. Bit error rates at the decoder are established for mutations rates accumulated over a number of generations of the host organism. The empirical results obtained are compared to a theoretical bound for optimal decoding.
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