Duplication-Correcting Codes for Data Storage in the DNA of Living Organisms
arXiv:1606.00397 · doi:10.1109/ISIT.2016.7541455
Abstract
The ability to store data in the DNA of a living organism has applications in a variety of areas including synthetic biology and watermarking of patented genetically-modified organisms. Data stored in this medium is subject to errors arising from various mutations, such as point mutations, indels, and tandem duplication, which need to be corrected to maintain data integrity. In this paper, we provide error-correcting codes for errors caused by tandem duplications, which create a copy of a block of the sequence and insert it in a tandem manner, i.e., next to the original. In particular, we present two families of codes for correcting errors due to tandem-duplications of a fixed length, the first family can correct any number of errors while the second corrects a bounded number of errors. We also study codes for correcting tandem duplications of length up to a given constant , where we are primarily focused on the cases of . Finally, we provide a full classification of the sets of lengths allowed in tandem duplication that result in a unique root for all sequences.
Submitted to IEEE Transactions on Information Theory
References in corpus (1)
Cited by in corpus (7)
- Codes in the Space of Multisets---Coding for Permutation Channels with Impairments
- Asymptotically Optimal Codes Correcting Fixed-Length Duplication Errors in DNA Storage Systems
- Duplication-Correcting Codes for Data Storage in the DNA of Living Organisms
- Modular non-repeating codes for DNA storage
- Bounds and Constructions for Multi-Symbol Duplication Error Correcting Codes
- Constrained de Bruijn Codes: Properties, Enumeration, Constructions, and Applications
- Duplication Distance to the Root for Binary Sequences