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Development of a CRISPR/Cas9-Based Tool for Gene Deletion in Issatchenkia orientalis

机译:开发伊莎白斯科西斯岛基因缺失的CRISPR / CAS9工具

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摘要

Microbial production of fuels and chemicals from renewable and readily available biomass is a sustainable and economically attractive alternative to petroleum-based production. Because of its unusual tolerance to highly acidic conditions, I. orientalis is a promising potential candidate for the manufacture of valued organic acids. Nevertheless, reliable and efficient genetic engineering tools in I. orientalis are limited. The results outlined in this paper describe a stable episomal ARS-containing plasmid and the first CRISPR/Cas9-based system for gene disruptions in I. orientalis, paving the way for applying genome engineering and metabolic engineering strategies and tools in this microorganism for production of fuels and chemicals.The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform microorganism for production of organic acids due to its ability to grow robustly under highly acidic conditions. However, lack of efficient genetic tools remains a major bottleneck in metabolic engineering of this organism. Here we report that the autonomously replicating sequence (ARS) from Saccharomyces cerevisiae (ScARS) was functional for plasmid replication in I. orientalis, and the resulting episomal plasmid enabled efficient genome editing by the CRISPR/Cas9 system. The optimized CRISPR/Cas9-based system employed a fusion RPR1′-tRNA promoter for single guide RNA (sgRNA) expression and could attain greater than 97% gene disruption efficiency for various gene targets. Additionally, we demonstrated multiplexed gene deletion with disruption efficiencies of 90% and 47% for double gene and triple gene knockouts, respectively. This genome editing tool can be used for rapid strain development and metabolic engineering of this organism for production of biofuels and chemicals.
机译:微生物生产由可再生的且易于获得的生物质燃料和化学品的是基于石油的生产可持续和经济上有吸引力的替代方案。由于其不寻常的耐受性强酸性条件下,东方伊萨是,价值有机酸制造看好潜在的候选人。然而,在东方伊萨可靠,高效的基因工程工具的限制。本文概述的结果描述含ARS稳定游离质粒,并在东方伊萨基因中断第一CRISPR /基于Cas9系统,为应用基因工程和代谢工程的策略和工具,这种微生物生产铺平了道路燃料和chemicals.The非常规酵母东方伊萨酵母已成为一个潜在的平台微生物用于生产有机酸由于其高酸性条件下强劲增长的能力。然而,缺乏有效的遗传工具保持在这个生物体的代谢工程的一大瓶颈。在这里,我们报告说,从酿酒酵母(疤痕)的自主复制序列(ARS)是用于质粒复制功能在东方伊萨和游离质粒启用高效的基因组由CRISPR / Cas9系统编辑生成的。优化CRISPR /基于Cas9系统用于单个引导RNA(因组)的表达的融合RPR1'酰tRNA启动子和可以达到的各种基因靶大于97%的基因破坏效率。此外,我们展示了分别多路复用的基因缺失用90%破坏效率和对双基因47%,三重基因敲除。该基因组编辑工具,可用于快速应变的发展和这个生物的生物燃料生产和化学品的代谢工程。

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