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Development of a versatile and conventional technique for gene disruption in filamentous fungi based on CRISPR-Cas9 technology

机译:基于CRISPR-Cas9技术的丝状真菌基因破坏通用和常规技术的开发

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摘要

Filamentous fungi represent an invaluable source of pharmaceutically active compounds. The development of versatile methods to genetically manipulate filamentous fungi is of great value for improving the low yields of bioactive metabolites and expanding chemical diversity. The CRISPR-Cas9-based system has become a common platform for genome editing in a variety of organisms. However, recent application of this technology in filamentous fungi is limited to model strains, a versatile method for efficient gene disruption in different fungi is lacking. Here, we investigated the utility of the CRISPR-Cas9 system in a less-studied fungus Nodulisporium sp. (No. 65-12-7-1), and we have developed an efficient CRISPR-Cas9-based gene disruption strategy by simultaneous transformation of in vitro transcriptional gRNA and the linear maker gene cassette into the Cas9-expressing fungi. We found that the linear marker gene cassette could not only allow for selection of transformants, but also significantly enhance the gene disruption efficiency by inserting itself into the Cas9 cut site. Moreover, the above approach also demonstrated its efficiency in two other phylogenetically distinct strains Aspergillus oryzae NSAR1 and Sporormiella minima (No. 40-1-4-1) from two different classes of Ascomycota. These results suggested that a versatile CRISPR-Cas9-based gene disruption method in filamentous fungi was established.
机译:丝状真菌是药学活性化合物的宝贵来源。遗传修饰丝状真菌的通用方法的开发对于提高生物活性代谢物的低产量和扩大化学多样性具有重要价值。基于CRISPR-Cas9的系统已成为在各种生物中进行基因组编辑的通用平台。但是,该技术在丝状真菌中的最新应用仅限于模型菌株,缺乏在不同真菌中有效破坏基因的通用方法。在这里,我们研究了在研究较少的真菌Nodulisporium sp中CRISPR-Cas9系统的效用。 (No. 65-12-7-1),并且我们通过将体外转录gRNA和线性标记基因盒同时转化为表达Cas9的真菌,开发了一种有效的基于CRISPR-Cas9的基因破坏策略。我们发现线性标记基因盒不仅可以选择转化子,而且可以通过将自身插入Cas9切割位点来显着提高基因破坏效率。此外,上述方法还证明了其在来自两个不同类别的子囊菌的另外两个系统发育上不同的米曲霉NSAR1和微小孢子菌(No. 40-1-4-1)中的有效性。这些结果表明,建立了一种基于CRISPR-Cas9的通用基因破坏丝状真菌的方法。

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