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使用高度多重化纳米孔扩增子测序对 Golden Gate 组装进行验证。

Validation of Golden Gate Assemblies Using Highly Multiplexed Nanopore Amplicon Sequencing.

机构信息

Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.

Center for Synthetic Microbiology (SYNMIKRO), Philipps-University Marburg, Marburg, Germany.

出版信息

Methods Mol Biol. 2025;2850:171-196. doi: 10.1007/978-1-0716-4220-7_10.

Abstract

Golden Gate cloning has revolutionized synthetic biology. Its concept of modular, highly characterized libraries of parts that can be combined into higher order assemblies allows engineering principles to be applied to biological systems. The basic parts, typically stored in Level 0 plasmids, are sequence validated by the method of choice and can be combined into higher order assemblies on demand. Higher order assemblies are typically transcriptional units, and multiple transcriptional units can be assembled into multi-gene constructs. Higher order Golden Gate assembly based on defined and validated parts usually does not introduce sequence changes. Therefore, simple validation of the assemblies, e.g., by colony polymerase chain reaction (PCR) or restriction digest pattern analysis is sufficient. However, in many experimental setups, researchers do not use defined parts, but rather part libraries, resulting in assemblies of high combinatorial complexity where sequencing again becomes mandatory. Here, we present a detailed protocol for the use of a highly multiplexed dual barcode amplicon sequencing using the Nanopore sequencing platform for in-house sequence validation. The workflow, called DuBA.flow, is a start-to-finish procedure that provides all necessary steps from a single colony to the final easy-to-interpret sequencing report.

摘要

金门克隆技术已经彻底改变了合成生物学。它的模块化、高度特征化的部件库的概念,这些部件可以组合成更高阶的组装体,使得工程原理可以应用于生物系统。基本部件通常存储在 0 级质粒中,通过选择的方法进行序列验证,并且可以根据需要组合成更高阶的组装体。更高阶的组装体通常是转录单元,并且可以将多个转录单元组装成多基因构建体。基于定义和验证的部件的高阶金门组装通常不会引入序列变化。因此,组装体的简单验证,例如通过菌落聚合酶链反应 (PCR) 或限制性消化图谱分析就足够了。然而,在许多实验设置中,研究人员不使用定义的部件,而是使用部件文库,导致组装体具有高度组合复杂性,在这种情况下再次需要测序。在这里,我们提出了一种详细的协议,用于使用高度多路复用的双条形码扩增子测序,该方法使用 Nanopore 测序平台进行内部序列验证。该工作流程称为 DuBA.flow,是一个从单个菌落到最终易于解释的测序报告的从头到尾的过程,提供了所有必要的步骤。

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