Improving Dependability and Precision of Data Encoding in DNA

Siguna Mueller, Farhad Jafari, D. Roth
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引用次数: 1

Abstract

DNA storage of information is emerging as the next-generation approach to archiving vast amounts of data. Various sophisticated approaches for data storage in DNA have been proposed. Herein we present a multistep algorithm designed to detect and/or correct errors introduced at any stage of the DNA storage process, including those during message DNA generation, and propose refinements designed to ensure authenticity and correctness of each individual encoded DNA block. In addition, the algorithm allows authentic decoding without a reference sequence or message meaning. The algorithm is designed based on principles underlying provably secure cryptographic systems. Importantly, our new algorithm compares favorably with current ones in terms of ease of implementation and message expansion. In cases where reads are error-free, our algorithm should be faster than current alignment techniques. Without knowing the original data, a certificate is generated that confirms that the obtained data are exactly the same as the original. Our algorithm has applications to DNA steganography, sequence alignment, fast identification of correct reads in next generation sequencing and to message security.
提高DNA数据编码的可靠性和精度
DNA信息存储正在成为下一代存储海量数据的方法。已经提出了各种复杂的DNA数据存储方法。在此,我们提出了一种多步骤算法,旨在检测和/或纠正在DNA存储过程的任何阶段引入的错误,包括在信息DNA生成过程中引入的错误,并提出了改进设计,以确保每个编码DNA块的真实性和正确性。此外,该算法允许在没有参考序列或消息含义的情况下进行真实解码。该算法是基于可证明的安全密码系统的基本原理设计的。重要的是,我们的新算法在易于实现和消息扩展方面优于当前算法。在读取没有错误的情况下,我们的算法应该比当前的对齐技术更快。在不知道原始数据的情况下,生成一个证书,确认获得的数据与原始数据完全相同。该算法可应用于DNA隐写、序列比对、下一代测序中正确读段的快速识别和信息安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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