Li Jiankai, Mao Cuiping, Wang Shuchen, Li Xingjian, Luo Xueqing, Wang Dou, Zheng Shuo, Shao Jialin, Wang Rui, Fan Chunhai, Jiang Xingyu
Shenzhen Key Laboratory of Smart Healthcare Engineering, Guangdong Provincial Key Laboratory of Advanced Biomaterials, Department of Biomedical Engineering. Southern University of Science and Technology, No. 1088 Xueyuan Rd., Nanshan District, Shenzhen, Guangdong 518055, P. R. China.
Department of Electronic and Electrical Engineering, Southern University of Science and Technology, No. 1088, Xueyuan Rd., Nanshan District, Shenzhen, Guangdong 518055, P. R. China.
Sci Adv. 2025 Sep 12;11(37):eady3406. doi: 10.1126/sciadv.ady3406. Epub 2025 Sep 10.
DNA with high storage density can serve as an alternative storage medium to respond to the global explosion of data growth and become a powerful personal storage memory if an integrated compact device can store and handle large-scale data. Here, we incorporate a DNA cassette tape with 5.5 × 10 addressable data partitions (addressing rate up to 1570 partitions per second), a DNA loading capacity of 28.6 mg per kilometer, and deposit-many-recover-many (DMRM) features per partition to flexibly manage large-scale storage data and achieve hundreds of years of data preservation. We develop a compact DNA cassette tape drive and verify its functionality by randomly depositing incomplete images into the data partition, demonstrating a completely automated closed-loop operation involving addressing, recovery, removal, subsequent file deposition, and file recovery again, all accomplished within 50 min. Last, the complete image is restored by next-generation sequencing and decoding. DNA cassette tape provides a strategy for fast, compact, large-scale DNA-based cold or warm data storage.
具有高存储密度的DNA可作为一种替代存储介质,以应对全球数据增长的爆炸式发展,并且如果一种集成紧凑型设备能够存储和处理大规模数据,那么它就能成为一种强大的个人存储记忆体。在此,我们将一种具有5.5×10个可寻址数据分区(寻址速率高达每秒1570个分区)、每公里28.6毫克的DNA加载能力以及每个分区具有多沉积多恢复(DMRM)特性的DNA盒式磁带整合在一起,以灵活管理大规模存储数据并实现数百年的数据保存。我们开发了一种紧凑型DNA盒式磁带驱动器,并通过将不完整图像随机沉积到数据分区中来验证其功能,展示了一种完全自动化的闭环操作,包括寻址、恢复、移除、后续文件沉积以及再次文件恢复,所有这些操作都在50分钟内完成。最后,通过下一代测序和解码恢复完整图像。DNA盒式磁带为基于DNA的快速、紧凑、大规模冷数据或温数据存储提供了一种策略。