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Rapid Prototyping Platform for Saccharomyces cerevisiae Using Computer-Aided Genetic Design Enabled by Parallel Software and Workcell Platform Development

机译:利用并行软件和工作单元平台开发的计算机辅助遗传设计,对酿酒酵母进行快速原型开发

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Biofoundries have enabled the ability to automate the construction of genetic constructs using computer-aided design. In this study, we have developed the methodology required to abstract and automate the construction of yeast-compatible designs. We demonstrate the use of our in-house software tool, AMOS, to coordinate with design software, JMP, and robotic liquid handling platforms to successfully manage the construction of a library of 88 yeast expression plasmids. In this proof-of-principle study, we used three fluorescent genes as proxy for three enzyme coding sequences. Our platform has been designed to quickly iterate around a design cycle of four protein coding sequences per plasmid, with larger numbers possible with multiplexed genome integrations in Saccharomyces cerevisiae. This work highlights how developing scalable new biotechnology applications requires a close integration between software development, liquid handling robotics, and protocol development.
机译:生物铸造厂已经能够使用计算机辅助设计使基因构建体的构建自动化。在这项研究中,我们已经开发了抽象化和自动化酵母兼容设计所需的方法。我们演示了如何使用我们的内部软件工具AMOS与设计软件JMP和机器人液体处理平台进行协调,以成功管理88个酵母表达质粒的文库的构建。在这项原理验证研究中,我们使用了三个荧光基因作为三个酶编码序列的代理。我们的平台经过精心设计,可在每个质粒四个蛋白质编码序列的设计周期内快速进行迭代,并且在酿酒酵母中通过多重基因组整合可以实现更大的数量。这项工作强调了如何开发可扩展的新生物技术应用程序需要软件开发,液体处理机器人技术和规程开发之间的紧密集成。

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