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AssemblyTron:利用Opentrons OT-2实验室机器人实现DNA组装的灵活自动化。

AssemblyTron: flexible automation of DNA assembly with Opentrons OT-2 lab robots.

作者信息

Bryant John A, Kellinger Mason, Longmire Cameron, Miller Ryan, Wright R Clay

机构信息

Department of Biological Systems Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

出版信息

Synth Biol (Oxf). 2022 Dec 22;8(1):ysac032. doi: 10.1093/synbio/ysac032. eCollection 2023.

Abstract

As one of the newest fields of engineering, synthetic biology relies upon a trial-and-error Design-Build-Test-Learn (DBTL) approach to simultaneously learn how a function is encoded in biology and attempt to engineer it. Many software and hardware platforms have been developed to automate, optimize and algorithmically perform each step of the DBTL cycle. However, there are many fewer options for automating the build step. Build typically involves deoxyribonucleic acid (DNA) assembly, which remains manual, low throughput and unreliable in most cases and limits our ability to advance the science and engineering of biology. Here, we present AssemblyTron, an open-source Python package to integrate j5 DNA assembly design software outputs with build implementation in Opentrons liquid handling robotics with minimal human intervention. We demonstrate the versatility of AssemblyTron through several scarless, multipart DNA assemblies, beginning from fragment amplification. We show that AssemblyTron can perform polymerase chain reactions across a range of fragment lengths and annealing temperatures by using an optimal annealing temperature gradient calculation algorithm. We then demonstrate that AssemblyTron can perform Golden Gate and homology-dependent assemblies (IVAs) with comparable fidelity to manual assemblies by simultaneously building four four-fragment assemblies of chromoprotein reporter expression plasmids. Finally, we used AssemblyTron to perform site-directed mutagenesis reactions via homology-dependent IVA also achieving comparable fidelity to manual assemblies as assessed by sequencing. AssemblyTron can reduce the time, training, costs and wastes associated with synthetic biology, which, along with open-source and affordable automation, will further foster the accessibility of synthetic biology and accelerate biological research and engineering.

摘要

作为工程领域中最新的学科之一,合成生物学依靠反复试验的设计—构建—测试—学习(DBTL)方法,来同时了解一种功能在生物学中是如何编码的,并尝试对其进行工程改造。目前已经开发了许多软件和硬件平台,用于自动化、优化并以算法执行DBTL循环的每个步骤。然而,用于自动化构建步骤的选项要少得多。构建通常涉及脱氧核糖核酸(DNA)组装,在大多数情况下,这一过程仍然是人工操作,通量低且不可靠,限制了我们推动生物学科学和工程发展的能力。在此,我们展示了AssemblyTron,这是一个开源的Python软件包,可将j5 DNA组装设计软件的输出结果与Opentrons液体处理机器人的构建实施过程相整合,将人工干预降至最低。我们通过几个无疤痕的多片段DNA组装实验(从片段扩增开始),展示了AssemblyTron的多功能性。我们表明,AssemblyTron可以通过使用最优退火温度梯度计算算法,在一系列片段长度和退火温度下进行聚合酶链反应。然后,我们证明AssemblyTron可以通过同时构建四个用于表达彩色蛋白报告基因的四片段质粒组装体,以与手工组装相当的保真度进行金门组装和同源依赖性组装(IVA)。最后,我们使用AssemblyTron通过同源依赖性IVA进行定点诱变反应,经测序评估,其保真度也与手工组装相当。AssemblyTron可以减少与合成生物学相关的时间、培训、成本和浪费,再加上开源且经济实惠的自动化,将进一步促进合成生物学的可及性,并加速生物学研究和工程发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f26/9832943/5d732b465bd1/ysac032a1.jpg

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