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The LASER database: Formalizing design rules for metabolic engineering

机译:激光数据库:正式化代谢工程设计规则

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摘要

The ability of metabolic engineers to conceptualize, implement, and evaluate strain designs has dramatically increased in the last decade. Unlike other engineering fields, no centralized, open-access, and easily searched repository exists for cataloging these designs and the lessons learned from their construction and evaluation. To address this issue, we have developed a repository for metabolic engineering strain designs, known as LASER (Learning Assisted Strain EngineeRing, laser.colorado.edu) and a formal standard for disseminating designs to metabolic engineers. Curation of every available genetically-defined E. coli and S. cerevisiae strain from 310 metabolic engineering papers published over the last 21 years yields a total of 417 designs containing a total of 2661 genetic modifications. This collection has been deposited in LASER and represents the known bibliome of genetically defined and tested metabolic engineering designs in the academic literature. Properties of LASER designs and the analysis pipeline are examined to provide insight into LASER capabilities. Several future research directions utilizing LASER capabilities are discussed to highlight the potential of the LASER database for metabolic engineering.
机译:代谢工程师概念化,实施和评估应变设计的能力在过去十年中大大增加。与其他工程字段不同,没有集中式,开放式访问和易于搜索的存储库,用于编目这些设计以及从其建筑和评估中汲取的经验教训。为了解决这个问题,我们开发了一种代谢工程应变设计的存储库,称为激光(学习辅助应变工程,Laser.colorado.edu)以及用于传播到代谢工程师的正式标准。在过去21年出版的310个代谢工程论文中,每种可用的遗传定义大肠杆菌和S.酿酒酵母的策株总共产生了417名设计,总共含有2661种遗传修饰。该系列已被激光沉积,代表了学术文献中的遗传定义和测试代谢工程设计的已知生物组。检查激光设计的性质和分析管道,以提供对激光功能的洞察力。讨论了利用激光功能的几个未来的研究方向以突出激光数据库进行代谢工程的潜力。

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