High-throughput DNA synthesis for data storage

Meng Yu, Xiaohui Tang,Zhenhua Li, Weidong Wang,Shaopeng Wang,Min Li, Qiuliyang Yu, Sijia Xie,Xiaolei Zuo,Chang Chen

CHEMICAL SOCIETY REVIEWS(2024)

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Abstract
With the explosion of digital world, the dramatically increasing data volume is expected to reach 175 ZB (1 ZB = 1012 GB) in 2025. Storing such huge global data would consume tons of resources. Fortunately, it has been found that the deoxyribonucleic acid (DNA) molecule is the most compact and durable information storage medium in the world so far. Its high coding density and long-term preservation properties make itself one of the best data storage carriers for the future. High-throughput DNA synthesis is a key technology for "DNA data storage", which encodes binary data stream (0/1) into quaternary long DNA sequences consisting of four bases (A/G/C/T). In this review, the workflow of DNA data storage and the basic methods of artificial DNA synthesis technology are outlined first. Then, the technical characteristics of different synthesis methods and the state-of-the-art of representative commercial companies, with a primary focus on silicon chip microarray-based synthesis and novel enzymatic DNA synthesis are presented. Finally, the recent status of DNA storage and new opportunities for future development in the field of high-throughput, large-scale DNA synthesis technology are summarized. Using DNA molecules for digital data storage: the writing and reading of the data are realized by high throughput DNA synthesis and sequencing technologies, where high density array-based chips play an important role.
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