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An Epigenetics-Inspired DNA-Based Data Storage System

机译:表观遗传学启发的基于DNA的数据存储系统

摘要

Biopolymers are an attractive alternative to store and circulate information. DNA, for example, combines remarkable longevity with high data storage densities and has been demonstrated as a means for preserving digital information. Inspired by the dynamic, biological regulation of (epi)genetic information, we herein present how binary data can undergo controlled changes when encoded in synthetic DNA strands. By exploiting differential kinetics of hydrolytic deamination reactions of cytosine and its naturally occurring derivatives, we demonstrate how multiple layers of information can be stored in a single DNA template. Moreover, we show that controlled redox reactions allow for interconversion of these DNA-encoded layers of information. Overall, such interlacing of multiple messages on synthetic DNA libraries showcases the potential of chemical reactions to manipulate digital information on (bio)polymers.
机译:生物聚合物是存储和传播信息的有吸引力的替代方法。例如,DNA结合了长寿命和高数据存储密度,并已被证明是保存数字信息的一种手段。受(epi)遗传信息的动态,生物调控的启发,我们在此介绍二进制数据在合成DNA链中编码时如何经历受控变化。通过利用胞嘧啶及其天然衍生物的水解脱氨基反应的动力学差异,我们证明了如何在单个DNA模板中存储多层信息。此外,我们证明了受控的氧化还原反应可实现这些DNA编码信息层的相互转换。总的来说,在合成DNA文库中对多种信息的这种交错显示了化学反应处理(生物)聚合物数字信息的潜力。

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