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Quality control and statistical evaluation of combinatorial DNA libraries using nanopore sequencing

机译:使用纳米孔测序对组合DNA文库进行质量控制和统计评估

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摘要

Protein engineering and synthetic biology applications increasingly rely on the assembly of modular libraries composed of thousands of different combinations of DNA building blocks. At present, the validation of such libraries is performed by Sanger sequencing analysis on a small subset of clones on an ad hoc basis. Here, we implement a systematic procedure for the comprehensive evaluation of combinatorial libraries, immediately after their creation in vitro, using long reads sequencing technology. After an initial step of nanopore sequencing, we use straightforward bioinformatics tools to tabulate the composition and synteny of the building blocks in each read. We subsequently use exploratory statistics to assess the library and validate its diversity before carrying downstream cloning and screening assays.METHOD SUMMARYNanopore sequencing enables a comprehensive assessment of combinatorial libraries of DNA sequences assembled in single tube reactions. The inspection of such DNA libraries after their creation in vitro allows investigating potential biases in the DNA assembly method, possible issues in the upstream library of DNA building blocks that feed the in vitro assembly reaction and the correct synteny of the constructs.
机译:蛋白质工程和合成生物学应用越来越依赖于由数千种不同DNA构建模块组合组成的模块化文库的组装。目前,此类文库的验证是通过对一小部分克隆进行 Sanger 测序分析来临时进行的。在这里,我们实施了一个系统程序,用于在体外创建组合文库后立即使用长读长测序技术对组合文库进行全面评估。在纳米孔测序的第一步之后,我们使用简单的生物信息学工具将每次读取中构建块的组成和同步性制成表格。随后,我们使用探索性统计来评估文库并验证其多样性,然后再进行下游克隆和筛选测定。方法摘要无孔测序可以全面评估在单管反应中组装的 DNA 序列的组合文库。在体外创建此类DNA文库后对其进行检查,可以调查DNA组装方法中的潜在偏差,为体外组装反应提供饲料的DNA构建块上游文库中可能存在的问题以及构建体的正确合成。

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