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基于丝状真菌米曲霉的双重营养缺陷型方法,开发了一种新的农杆菌介导的转化系统。

Development of a new Agrobacterium-mediated transformation system based on a dual auxotrophic approach in the filamentous fungus Aspergillus oryzae.

机构信息

Department of Microbiology, Faculty of Biology, University of Science, Vietnam National University, Hanoi (VNU), 334 Nguyen Trai, Thanh Xuan, Hanoi, Vietnam.

Genomics Unit, National Key Laboratory of Enzyme and Protein Technology, University of Science, Vietnam National University, Hanoi (VNU), 334 Nguyen Trai, Thanh Xuan, Hanoi, Vietnam.

出版信息

World J Microbiol Biotechnol. 2021 May 4;37(6):92. doi: 10.1007/s11274-021-03060-z.

Abstract

Genetic engineering of the filamentous fungus Aspergillus oryzae still requires more suitable selection markers for fungal transformation. Our previous work has shown that Agrobacterium tumefaciens-mediated transformation (ATMT) based on the uridine/uracil auxotrophic mechanism with pyrG as the selection marker is very efficient for gene transfer in A. oryzae. In the present study, we delete the hisB gene, which is essential for histidine biosynthesis, in A. oryzae via homologous recombination and demonstrate that hisB is a reliable selection marker for genetic transformation of this fungus. Under optimal conditions, the ATMT efficiency of the histidine auxotrophic A. oryzae reached 515 transformants per 10 spores. Especially, we have succeeded in constructing a new ATMT system based on dual auxotrophic A. oryzae mutants with two different selection markers including hisB and pyrG. This dual auxotrophic ATMT system displayed a transformation efficiency of 232 transformants per 10 spores for the hisB marker and 318 transformants per 10 spores for the pyrG marker. By using these selectable markers, the co-expression of the DsRed and GFP fluorescent reporter genes was implemented in a single fungal strain. Furthermore, we could perform both the deletion and complementation of the laeA regulatory gene in the same strain of A. oryzae to examine its function. Conclusively, the ATMT system constructed in our work represents a promising genetic tool for studies on recombinant expression and gene function in the industrially important fungus A. oryzae.

摘要

丝状真菌米曲霉的基因工程仍然需要更适合的真菌转化选择标记。我们之前的工作表明,基于尿嘧啶/尿嘧啶营养缺陷型机制,以 pyrG 作为选择标记的根癌农杆菌介导的转化(ATMT)在米曲霉中的基因转移非常有效。在本研究中,我们通过同源重组删除了米曲霉中生物合成组氨酸所必需的 hisB 基因,并证明 hisB 是该真菌遗传转化的可靠选择标记。在最佳条件下,组氨酸营养缺陷型米曲霉的 ATMT 效率达到每 10 个孢子 515 个转化体。特别是,我们成功构建了基于具有两个不同选择标记(hisB 和 pyrG)的双营养缺陷型米曲霉突变体的新型 ATMT 系统。该双营养缺陷型 ATMT 系统的 hisB 标记转化效率为每 10 个孢子 232 个转化体,pyrG 标记为每 10 个孢子 318 个转化体。通过使用这些可选择的标记,DsRed 和 GFP 荧光报告基因在单个真菌菌株中实现了共表达。此外,我们可以在同一株米曲霉中同时进行 laeA 调控基因的缺失和互补,以检验其功能。总之,我们构建的 ATMT 系统代表了一种有前途的遗传工具,可用于研究在工业上重要的米曲霉中重组表达和基因功能。

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