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Processing DNA molecules as text

机译:将DNA分子处理为文本

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Polymerase Chain Reaction (PCR) is the DNA-equivalent of Gutenberg’s movable type printing, both allowing large-scale replication of a piece of text. De novo DNA synthesis is the DNA-equivalent of mechanical typesetting, both ease the setting of text for replication. What is the DNA-equivalent of the word processor? Biology labs engage daily in DNA processing—the creation of variations and combinations of existing DNA—using a plethora of manual labor-intensive methods such as site-directed mutagenesis, error-prone PCR, assembly PCR, overlap extension PCR, cleavage and ligation, homologous recombination, and others. So far no universal method for DNA processing has been proposed and, consequently, no engineering discipline that could eliminate this manual labor has emerged. Here we present a novel operation on DNA molecules, called Y, which joins two DNA fragments into one, and show that it provides a foundation for DNA processing as it can implement all basic text processing operations on DNA molecules including insert, delete, replace, cut and paste and copy and paste. In addition, complicated DNA processing tasks such as the creation of libraries of DNA variants, chimeras and extensions can be accomplished with DNA processing plans consisting of multiple Y operations, which can be executed automatically under computer control. The resulting DNA processing system, which incorporates our earlier work on recursive DNA composition and error correction, is the first demonstration of a unified approach to DNA synthesis, editing, and library construction.
机译:聚合酶链式反应(PCR)与古腾堡可移动式印刷的DNA相当,两者都可以大规模复制一段文本。从头DNA合成是机械排版中的DNA等效,都简化了复制文本的设定。文字处理程序的DNA等同于什么?生物实验室每天都使用大量的人工劳动密集型方法来进行DNA处理(创建现有DNA的变异和组合),例如定点诱变,易错PCR,组装PCR,重叠延伸PCR,切割和连接,同源重组等。迄今为止,尚未提出用于DNA处理的通用方法,因此,没有能够消除这种体力劳动的工程学科出现。在这里,我们介绍了一种对DNA分子进行的新颖操作,称为Y,它将两个DNA片段连接为一个片段,并表明它为DNA处理提供了基础,因为它可以对DNA分子执行所有基本的文本处理操作,包括插入,删除,替换,剪切并粘贴并复制并粘贴。此外,复杂的DNA处理任务(例如创建DNA变体,嵌合体和扩展名的文库)可以通过包含多个Y操作的DNA处理计划来完成,该计划可以在计算机控制下自动执行。最终的DNA处理系统结合了我们在递归DNA组成和错误校正方面的早期工作,首次证明了DNA合成,编辑和库构建的统一方法。

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