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CRISPR–Cas system enables fast and simple genome editing of industrial Saccharomyces cerevisiae strains

机译:CRIspR-Cas系统可以快速简便地对工业酿酒酵母菌株进行基因组编辑

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摘要

There is a demand to develop 3rd generation biorefineries that integrate energy production with the production of higher value chemicals from renewable feedstocks. Here, robust and stress-tolerant industrial strains of will be suitable production organisms. However, their genetic manipulation is challenging, as they are usually diploid or polyploid. Therefore, there is a need to develop more efficient genetic engineering tools. We applied a CRISPR–Cas9 system for genome editing of different industrial strains, and show simultaneous disruption of two alleles of a gene in several unrelated strains with the efficiency ranging between 65% and 78%. We also achieved simultaneous disruption and knock-in of a reporter gene, and demonstrate the applicability of the method by designing lactic acid-producing strains in a single transformation event, where insertion of a heterologous gene and disruption of two endogenous genes occurred simultaneously. Our study provides a foundation for efficient engineering of industrial yeast cell factories.
机译:需要开发第三代生物精炼厂,其将能源生产与利用可再生原料生产更高价值的化学品相结合。在此,健壮且耐压力的工业​​菌株将是合适的生产生物。但是,它们的遗传操作极具挑战性,因为它们通常是二倍体或多倍体。因此,需要开发更有效的基因工程工具。我们将CRISPR–Cas9系统应用于不同工业菌株的基因组编辑,并显示了在几个无关菌株中同时破坏一个基因的两个等位基因,效率在65%至78%之间。我们还实现了报告基因的同时破坏和敲入,并通过设计在单个转化事件中同时发生异源基因插入和两个内源基因破坏的乳酸生产菌株来证明该方法的适用性。我们的研究为工业酵母细胞工厂的高效工程设计提供了基础。

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