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通过可编程组装处理DNA存储在以滴滴为基础的流体系统中.

Minsang Yu1, Doyeon Lim2, Jungwoo Kim2

  • 1Standard Bioelectronics. Co., 511 Michuhol Tower, Gaetbeol-ro 12, Incheon, 21999, South Korea.

Advanced science (Weinheim, Baden-Wurttemberg, Germany)
|September 27, 2023
PubMed
概括
此摘要是机器生成的。

这项研究介绍了在滴滴控制的流体系统中使用 splint 绑定进行活跃的 DNA 数据编辑. 这使得在合成DNA池中存储的数字数据能够得到高效的处理和随机访问.

关键词:
DNA数据存储 DNA数据存储地址原始扫描扫描的原始扫描.滴滴控制流体系统的流体学系统.处理DNA存储的处理.刺绑定 刺绑定

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科学领域:

  • 生物技术是生物技术.
  • 数据存储数据存储数据存储
  • 合成生物学 合成生物学

背景情况:

  • 合成DNA中的数字数据存储提供了高密度,但缺乏主动处理能力.
  • 目前用于DNA数据存储的方法在DNA池内主动编辑或处理信息的能力上是有限的.

研究的目的:

  • 为合成DNA池开发一个活跃的DNA数据编辑过程.
  • 为了使DNA编码的数字信息随机访问和高保真性处理.
  • 为了证明含有图像和动画数据的DNA池的合成.

主要方法:

  • 在滴滴控制流体学 (DCF) 系统中,利用了 splint ligation 来进行DNA数据编辑.
  • 合成不同大小的DNA片段 (100-500个基对) 用于滴滴组装和编程序列交换.
  • 采用聚合酶连锁反应放大用于随机访问和地址原始扫描,用于高保真解码.

主要成果:

  • 在DCF系统中成功展示了一个活跃的DNA数据编辑过程.
  • 实现了编程序列信息交换和随机访问确定DNA池的合成.
  • 合成的DNA池编码像素信息 (PNG) 和高保真度的动画电影文件 (MP4).

结论:

  • 在DCF系统中开发的 splint ligation 方法使得DNA数据的积极处理成为可能.
  • 这种方法允许随机访问和高保真检索存储在合成DNA中的数字信息.
  • 图像和动画数据的成功编码和合成突出了基于DNA的媒体存储的潜力.