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CRISPR/Cas9‐RNA interference system for combinatorial metabolic engineering of Saccharomyces cerevisiae

机译:CRISPR / Cas9‐RNA干扰系统用于酿酒酵母的组合代谢工程

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摘要

The yeast Saccharomyces cerevisiae is widely used in industrial biotechnology for the production of fuels, chemicals, food ingredients, food and beverages, and pharmaceuticals. To obtain high‐performing strains for such bioprocesses, it is often necessary to test tens or even hundreds of metabolic engineering targets, preferably in combinations, to account for synergistic and antagonistic effects. Here, we present a method that allows simultaneous perturbation of multiple selected genetic targets by combining the advantage of CRISPR/Cas9, in vivo recombination, USER assembly and RNA interference. CRISPR/Cas9 introduces a double‐strand break in a specific genomic region, where multiexpression constructs combined with the knockdown constructs are simultaneously integrated by homologous recombination.We show the applicability of the method by improving cis,cis‐muconic acid production in S. cerevisiae through simultaneous manipulation of several metabolic engineering targets.The method can accelerate metabolic engineering efforts for the construction of future cell factories.
机译:酵母啤酒酵母广泛用于工业生物技术中,用于生产燃料,化学品,食品配料,食品和饮料以及药品。为了获得用于此类生物过程的高性能菌株,通常需要测试数十甚至数百个代谢工程目标,最好组合使用,以说明协同作用和拮抗作用。在这里,我们提出了一种方法,该方法通过结合CRISPR / Cas9的优势,体内重组,USER组装和RNA干扰的优势,允许同时扰动多个选定的遗传靶标。 CRISPR / Cas9在特定的基因组区域引入了双链断裂,其中多表达构建体与敲除构建体通过同源重组同时整合在一起。我们证明了该方法可通过提高酿酒酵母中顺式,顺式-粘康酸的产量来证明其适用性通过同时操纵多个代谢工程靶标,该方法可以加快代谢工程学建设未来细胞工厂的工作。

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