A Review of DNA Data Storage Technologies Based on Biomolecules

计算机数据存储 可扩展性 信息存储库 计算机科学 DNA运算 编码 存储区域网 纳米技术 DNA 化学 计算机硬件 数据库 算法 材料科学 生物化学 基因 计算
作者
Lichao Zhang,Yuanyuan Lv,Lei Xu,Murong Zhou
出处
期刊:Current Bioinformatics [Bentham Science Publishers]
卷期号:17 (1): 31-36 被引量:2
标识
DOI:10.2174/1574893616666210813101237
摘要

: In the information age, data storage technology has become the key to improving computer systems. Since traditional storage technologies cannot meet the demand for massive storage, new DNA storage technology based on biomolecules attracts much attention. DNA storage refers to the technology that uses artificially synthesized deoxynucleotide chains to store and read all information, such as documents, pictures, and audio. First, data are encoded into binary number strings. Then, the four types of base, A(Adenine), T(Thymine), C(Cytosine), and G(Guanine), are used to encode the corresponding binary numbers so that the data can be used to construct the target DNA molecules in the form of deoxynucleotide chains. Subsequently, the corresponding DNA molecules are artificially synthesized, enabling the data to be stored within them. Compared with traditional storage systems, DNA storage has major advantages, such as high storage density, long duration, as well as low hardware cost, high access parallelism, and strong scalability, which satisfies the demands for big data storage. This manuscript first reviews the origin and development of DNA storage technology, then the storage principles, contents, and methods are introduced. Finally, the development of DNA storage technology is analyzed. From the initial research to the cutting edge of this field and beyond, the advantages, disadvantages, and practical applications of DNA storage technology require continuous exploration.
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