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A teaching protocol demonstrating the use of EasyClone and CRISPR/Cas9 for metabolic engineering of Saccharomyces cerevisiae and Yarrowia lipolytica

机译:一种教学协议,证明了使用EasyClone和Crispr / Cas9的酿酒酵母和Yarrowia Lipolytica的代谢工程使用

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摘要

We present a teaching protocol suitable for demonstrating the use of EasyClone and CRISPR/Cas9 for metabolic engineering of industrially relevant yeasts Saccharomyces cerevisiae and Yarrowia lipolytica, using beta-carotene production as a case study. The protocol details all steps required to generate DNA parts, transform and genotype yeast, and perform a phenotypic screen to determine beta-carotene production. The protocol is intended to be used as an instruction manual for a two-week practical course aimed at M.Sc. and Ph.D. students. The protocol details all necessary steps for students to engineer yeast to produce beta-carotene and serves as a practical introduction to the principles of metabolic engineering including the concepts of boosting native precursor supply and alleviating rate-limiting steps. It also highlights key differences in the metabolism and heterologous production capacity of two industrially relevant yeast species. The protocol is divided into daily experiments covering a two-week period and provides detailed instructions for every step meaning this protocol can be used 'as is' for a teaching course or as a case study for how yeast can be engineered to produce value-added molecules.
机译:我们提出了一种教学协议,适用于展示使用Easyclone和Crisp / Cas9用于工业相关酵母酿酒酵母和Yarrawia Lipolytica的代谢工程,以使用β-胡萝卜素生产作为案例研究。该协议详细说明了生成DNA份,转化和基因型酵母所需的所有步骤,并进行表型筛选以确定β-胡萝卜素的产生。该协议旨在用作为期两周的实际课程的指示手册,旨在为M.SC.和博士。学生们。该协议详细说明了学生对工程酵母生产β-胡萝卜素的所有必要步骤,并作为代谢工程原则的实际介绍,包括提高天然前体供应和减轻速率限制步骤的概念。它还强调了两种工业相关酵母种类的新陈代谢和异源生产能力的关键差异。该协议分为每日实验,涵盖为期两周的时间,并为每个步骤提供详细说明,这意味着该协议可以使用“原样”,以便为教学课程或作为酵母如何设计的案例研究以产生增值分子。

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