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Long-Term Stability and Integrity of Plasmid-Based DNA Data Storage

机译:基于质粒的DNA数据存储的长期稳定性和完整性

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摘要

Validation of long-term DNA stability and integrity are essential for the use of DNA in data storage applications. Because of this, we evaluated the plasmid-based DNA data storage in a manner that preserves DNA stability and integrity. A document consisting of 2046 words was encoded with DNA sequences using Perl script, and the encoded DNA sequences were synthesized for information storage. The DNA comprised a total of 22 chemically synthesized DNA fragments with 400 nucleotides each, which were incorporated into a plasmid vector. A long-term DNA stability study demonstrated that 3-year stored plasmid containing text information showed DNA stability at controlled conditions of −20 °C. The plasmid DNA under accelerated aging conditions (AAC) up to 65 °C for 20 days, which corresponds to approximately 20 years of storage at −20 °C, also exhibited no significant differences in DNA stability compared to newly produced plasmid. Also, the 3-year old plasmid stored at −20 °C and the AAC-tested plasmid stored up to 65 °C for 20 days had functional integrity and nucleotide integrity comparable to control sample, thereby allowing for retrieval of the original error-free text data. Finally, the nucleotides were sequenced, and then decoded to retrieve the original data, thereby allowing us to read the text with 100% accuracy, and amplify the DNA with a simple and quick bacterial transformation. To the best of our knowledge, this is the first report on examining the long-term stability and integrity of plasmid-based DNA data storage. Taken together, our results indicate that plasmid DNA data storage can be useful for long-term archival storage to recover the source text in a reproducible and accountable manner.
机译:长期DNA稳定性和完整性的验证对于DNA在数据存储应用中的使用至关重要。因此,我们以保留DNA稳定性和完整性的方式评估了基于质粒的DNA数据存储。使用Perl脚本用DNA序列编码包含2046个单词的文档,并合成编码的DNA序列用于信息存储。该DNA包含总共22个化学合成的DNA片段,每个片段具有400个核苷酸,将其掺入质粒载体中。长期的DNA稳定性研究表明,包含文本信息的3年存储质粒显示在-20°C受控条件下的DNA稳定性。质粒DNA在高达65°C的加速老化条件(AAC)下长达20天,相当于在-20°C下大约保存20年,与新生产的质粒相比,DNA稳定性也没有显着差异。同样,在-20°C下保存3年的质粒和在65°C下保存20天的经过AAC测试的质粒具有与对照样品相当的功能完整性和核苷酸完整性,从而可以回收原始无错误的质粒文字数据。最后,对核苷酸进行测序,然后解码以检索原始数据,从而使我们能够以100%的准确性读取文本,并通过简单而快速的细菌转化来扩增DNA。据我们所知,这是有关检查基于质粒的DNA数据存储的长期稳定性和完整性的第一份报告。综上所述,我们的结果表明质粒DNA数据存储可用于长期档案存储,从而以可再现和负责的方式恢复源文本。

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