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Genome editing in Kluyveromyces and Ogataea yeasts using a broad-host-range Cas9/gRNA co-expression plasmid

机译:基因组在Kluyveromyces和OgAtatea酵母中编辑使用广泛的Cas9 / GrNA共同表达质粒

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摘要

While CRISPR-Cas9-mediated genome editing has transformed yeast research, current plasmids and cassettes for Cas9 and guide-RNA expression are species specific. CRISPR tools that function in multiple yeast species could contribute to the intensifying research on non-conventional yeasts. A plasmid carrying a pangenomic origin of replication and two constitutive expression cassettes for Cas9 and ribozyme-flanked gRNAs was constructed. Its functionality was tested by analyzing inactivation of the ADE2 gene in four yeast species. In two Kluyveromyces species, near-perfect targeting (&= 96%) and homologous repair (HR) were observed in at least 24% of transformants. In two Ogataea species, Ade(-) mutants were not observed directly after transformation, but prolonged incubation of transformed cells resulted in targeting efficiencies of 9% to 63% mediated by non-homologous end joining (NHEJ). In an Ogataea parapolymorpha ku80 mutant, deletion of OpADE2 mediated by HR was achieved, albeit at low efficiencies (& 1%). Furthermore the expression of a dual polycistronic gRNA array enabled simultaneous interruption of OpADE2 and OpYNR1 demonstrating flexibility of ribozyme-flanked gRNA design for multiplexing. While prevalence of NHEJ prevented HR-mediated editing in Ogataea, such targeted editing was possible in Kluyveromyces. This broad-host-range CRISPR/gRNA system may contribute to exploration of Cas9-mediated genome editing in other Saccharomycotina yeasts.
机译:虽然CRISPR-CAS9介导的基因组编辑具有转化的酵母研究,但CAS9的电流质粒和磁带和导载-RNA表达是特异性的物种。在多种酵母种类中起作用的CRISPR工具可以有助于对非常规酵母的加强研究。构建携带携带植物复制的绵延起源的质粒和用于CAS9和核苷侧侧GRNA的两个组成型表达盒。通过分析四种酵母物种中的ADE2基因的灭活来测试其功能。在两个Kluyveromyces物种中,在至少24%的转化体中观察到近乎完美的靶向(& = 96%)和同源修复(HR)。在两种ogAtatea种类中,在转化后未直接观察到ade( - )突变体,但是转化细胞的延长孵育导致由非同源末端连接(NHEJ)介导的9%至63%的诱导效率。在ogataea帕拉吡喃氏蛋白突变体中,达到由HR介导的OPADE2的缺失,尽管低效率(& 1%)。此外,双重聚际GRNA阵列的表达使得OPADE2和OPYNR1的同时中断,证明了用于多路复用的核酶侧翼GRNA设计的灵活性。虽然NHEJ的患病率阻碍了HR介导的EGATAEA中的编辑,但在Kluyveromyces中可以进行这种靶向编辑。这种广泛的宿主范围的CRISPR / GRNA系统可能有助于探索其他酵母腺炎酵母的CAS9介导的基因组编辑。

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