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Towards practical, high-capacity, low-maintenance information storage in synthesized DNA

机译:致力于在合成DNA中实现实用,大容量,低维护的信息存储

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摘要

Digital production, transmission and storage have revolutionized how we access and use information but have also made archiving an increasingly complex task that requires active, continuing maintenance of digital media. This challenge has focused some interest on DNA as an attractive target for information storage because of its capacity for high-density information encoding, longevity under easily achieved conditions and proven track record as an information bearer. Previous DNA-based information storage approaches have encoded only trivial amounts of information or were not amenable to scaling-up, and used no robust error-correction and lacked examination of their cost-efficiency for large-scale information archival. Here we describe a scalable method that can reliably store more information than has been handled before. We encoded computer files totalling 739 kilobytes of hard-disk storage and with an estimated Shannon information of 5.2 × 10~6 bits into a DNA code, synthesized this DNA, sequenced it and reconstructed the original files with 100% accuracy. Theoretical analysis indicates that our DNA-based storage scheme could be scaled far beyond current global information volumes and offers a realistic technology for large-scale, long-term and infrequently accessed digital archiving. In fact, current trends in technological advances are reducing DNA synthesis costs at a pace that should make our scheme cost-effective for sub-50-year archiving within a decade.
机译:数字产品的生产,传输和存储已经彻底改变了我们访问和使用信息的方式,但存档工作也变得越来越复杂,需要积极,持续地维护数字媒体。由于DNA具有高密度信息编码的能力,在容易实现的条件下的寿命长以及作为信息载体的行之有效的记录,这一挑战使人们对DNA作为信息存储的有吸引力目标感兴趣。以前的基于DNA的信息存储方法仅编码少量信息或不适合按比例放大,并且没有使用鲁棒的纠错功能,也没有对大规模信息归档的成本效益进行检查。在这里,我们描述了一种可伸缩的方法,该方法可以可靠地存储比以前处理的更多信息。我们将总计739 KB的硬盘存储空间和估计的5.2×10〜6位Shannon信息的计算机文件编码为DNA代码,对该DNA进行合成,测序并以100%的准确性重建了原始文件。理论分析表明,我们基于DNA的存储方案可以扩展到远远超过当前的全球信息量,并为大规模,长期且不经常访问的数字归档提供一种现实的技术。实际上,当前技术进步的趋势正在以一定的速度降低DNA合成成本,这应该使我们的计划在十年内不到50年的归档中具有成本效益。

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  • 来源
    《Nature》 |2013年第7435期|77-80|共4页
  • 作者单位

    European Bioinformatics Institute, WellcomeTrust Genome Campus, Hinxton CB10 1SD, UK;

    European Bioinformatics Institute, WellcomeTrust Genome Campus, Hinxton CB10 1SD, UK;

    Agilent Technologies,Genomics-LSSU, 5301 Stevens Creek Boulevard, Santa Clara, California 95051, USA;

    European Bioinformatics Institute, WellcomeTrust Genome Campus, Hinxton CB10 1SD, UK;

    Agilent Technologies,Genomics-LSSU, 5301 Stevens Creek Boulevard, Santa Clara, California 95051, USA;

    European Bioinformatics Institute, WellcomeTrust Genome Campus, Hinxton CB10 1SD, UK;

    European Bioinformatics Institute, WellcomeTrust Genome Campus, Hinxton CB10 1SD, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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