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A high-throughput optomechanical retrieval method for sequence-verified clonal DNA from the NGS platform

机译:NGS平台上用于序列验证的克隆DNA的高通量光机械检索方法

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摘要

Writing DNA plays a significant role in the fields of synthetic biology, functional genomics and bioengineering. DNA clones on next-generation sequencing (NGS) platforms have the potential to be a rich and cost-effective source of sequence-verified DNAs as a precursor for DNA writing. However, it is still very challenging to retrieve target clonal DNA from high-density NGS platforms. Here we propose an enabling technology called ‘Sniper Cloning’ that enables the precise mapping of target clone features on NGS platforms and non-contact rapid retrieval of targets for the full utilization of DNA clones. By merging the three cutting-edge technologies of NGS, DNA microarray and our pulse laser retrieval system, Sniper Cloning is a week-long process that produces 5,188 error-free synthetic DNAs in a single run of NGS with a single microarray DNA pool. We believe that this technology has potential as a universal tool for DNA writing in biological sciences.
机译:撰写DNA在合成生物学,功能基因组学和生物工程领域中发挥着重要作用。下一代测序(NGS)平台上的DNA克隆有可能成为序列验证的DNA的丰富且经济高效的来源,作为DNA书写的前身。但是,从高密度NGS平台上检索目标克隆DNA仍然非常具有挑战性。在这里,我们提出了一种称为“狙击克隆”的启用技术,该技术可以在NGS平台上精确映射目标克隆特征,并以非接触方式快速检索目标,以充分利用DNA克隆。通过将NGS,DNA微阵列和脉冲激光取回系统这三种尖端技术相结合,Sniper Cloning是一个为期一周的过程,可在一个单一的NGS和单个微阵列DNA池中一次生成5188个无错误的合成DNA。我们相信,这项技术有潜力作为生物科学中DNA书写的通用工具。

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