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High information capacity DNA-based data storage with augmented encoding characters using degenerate bases

机译:高信息容量基于DNA的数据存储并使用简并碱基增强了编码字符

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摘要

DNA-based data storage has emerged as a promising method to satisfy the exponentially increasing demand for information storage. However, practical implementation of DNA-based data storage remains a challenge because of the high cost of data writing through DNA synthesis. Here, we propose the use of degenerate bases as encoding characters in addition to A, C, G, and T, which augments the amount of data that can be stored per length of DNA sequence designed (information capacity) and lowering the amount of DNA synthesis per storing unit data. Using the proposed method, we experimentally achieved an information capacity of 3.37 bits/character. The demonstrated information capacity is more than twice when compared to the highest information capacity previously achieved. The proposed method can be integrated with synthetic technologies in the future to reduce the cost of DNA-based data storage by 50%.
机译:基于DNA的数据存储已成为一种有前途的方法,可以满足信息存储的指数增长需求。但是,由于通过DNA合成进行数据写入的高昂成本,基于DNA的数据存储的实际实施仍然是一个挑战。在这里,我们建议使用简并碱基作为A,C,G和T之外的编码字符,这增加了设计的每个DNA序列长度可存储的数据量(信息容量),并降低了DNA量每个存储单元数据进行合成。使用提出的方法,我们通过实验获得了3.37位/字符的信息容量。与先前实现的最高信息容量相比,所展示的信息容量是其两倍以上。所提出的方法将来可以与合成技术集成,以将基于DNA的数据存储成本降低50%。

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