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An Efficient, Rapid, and Recyclable System for CRISPR-Mediated Genome Editing in Candida albicans

机译:一个高效,快速且可回收的系统,用于在白色念珠菌中进行CRISPR介导的基因组编辑

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Candida albicans is the most common fungal pathogen of humans. Historically, molecular genetic analysis of this important pathogen has been hampered by the lack of stable plasmids or meiotic cell division, limited selectable markers, and inefficient methods for generating gene knockouts. The recent development of clustered regularly interspaced short palindromic repeat(s) (CRISPR)-based tools for use with C.?albicans has opened the door to more efficient genome editing; however, previously reported systems have specific limitations. We report the development of an optimized CRISPR-based genome editing system for use with C.?albicans . Our system is highly efficient, does not require molecular cloning, does not leave permanent markers in the genome, and supports rapid, precise genome editing in C.?albicans . We also demonstrate the utility of our system for generating two independent homozygous gene knockouts in a single transformation and present a method for generating homozygous wild-type gene addbacks at the native locus. Furthermore, each step of our protocol is compatible with high-throughput strain engineering approaches, thus opening the door to the generation of a complete C.?albicans gene knockout library. IMPORTANCE Candida albicans is the major fungal pathogen of humans and is the subject of intense biomedical and discovery research. Until recently, the pace of research in this field has been hampered by the lack of efficient methods for genome editing. We report the development of a highly efficient and flexible genome editing system for use with C.?albicans . This system improves upon previously published C.?albicans CRISPR systems and enables rapid, precise genome editing without the use of permanent markers. This new tool kit promises to expedite the pace of research on this important fungal pathogen.
机译:白色念珠菌是人类最常见的真菌病原体。从历史上看,由于缺乏稳定的质粒或减数分裂细胞分裂,有限的选择标记以及无效的基因敲除方法,这种重要病原体的分子遗传分析受到阻碍。基于簇的规则间隔短回文重复序列(CRISPR)的工具与白色念珠菌一起使用,为更有效的基因组编辑打开了大门。但是,以前报告的系统具有特定的限制。我们报告开发了一种优化的基于CRISPR的基因组编辑系统,可用于白色念珠菌。我们的系统高效,不需要分子克隆,不会在基因组中留下永久性标记,并且支持白色念珠菌的快速,精确的基因组编辑。我们还展示了我们的系统在一次转化中产生两个独立的纯合基因敲除的实用性,并提出了在天然位点产生纯合野生型基因加成的方法。此外,我们协议的每个步骤都与高通量菌株工程方法兼容,从而为生成完整的白色念珠菌基因敲除文库打开了大门。重要信息白色念珠菌是人类的主要真菌病原体,并且是大量生物医学和发现研究的主题。直到最近,由于缺乏有效的基因组编辑方法,该领域的研究步伐一直受到阻碍。我们报告了与白色念珠菌一起使用的高效灵活的基因组编辑系统的开发。该系统对先前发布的白色念珠菌CRISPR系统进行了改进,无需使用永久性标记,即可进行快速,精确的基因组编辑。这个新的工具包有望加快对这种重要真菌病原体的研究步伐。

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