DNA is a promising data storage medium due to its remarkable durability and space-efficient storage. Early bit-to-base transcoding schemes have primarily pursued information density, at the expense of introducing biocompatibility challenges or decoding failure. Here we propose a robust transcoding algorithm named the yin-yang codec, using two rules to encode two binary bits into one nucleotide, to generate DNA sequences that are highly compatible with synthesis and sequencing technologies. We encoded two representative file formats and stored them in vitro as 200ânt oligo pools and in vivo as a ~54âkbps DNA fragment in yeast cells. Sequencing results show that the yin-yang codec exhibits high robustness and reliability for a wide variety of data types, with an average recovery rate of 99.9% above 10(4) molecule copies and an achieved recovery rate of 87.53% at â¤10(2) copies. Additionally, the in vivo storage demonstration achieved an experimentally measured physical density close to the theoretical maximum.
Towards practical and robust DNA-based data archiving using the yin-yang codec system.
利用阴阳编解码器系统实现实用、稳健的基于 DNA 的数据归档
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作者:Ping Zhi, Chen Shihong, Zhou Guangyu, Huang Xiaoluo, Zhu Sha Joe, Zhang Haoling, Lee Henry H, Lan Zhaojun, Cui Jie, Chen Tai, Zhang Wenwei, Yang Huanming, Xu Xun, Church George M, Shen Yue
| 期刊: | Nature Computational Science | 影响因子: | 18.300 |
| 时间: | 2022 | 起止号: | 2022 Apr;2(4):234-242 |
| doi: | 10.1038/s43588-022-00231-2 | ||
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