Nguyen Khuyen Thi, Ho Quynh Ngoc, Pham Thu Ha, Phan Tuan-Nghia, Tran Van-Tuan
National Key Laboratory of Enzyme and Protein Technology, VNU University of Science, 334 Nguyen Trai, Thanh Xuan, Hanoi, Vietnam.
Faculty of Biology, VNU University of Science, 334 Nguyen Trai, Thanh Xuan, Hanoi, Vietnam.
World J Microbiol Biotechnol. 2016 Dec;32(12):204. doi: 10.1007/s11274-016-2168-3. Epub 2016 Nov 1.
Aspergillus oryzae is a safe mold widely used in food industry. It is also considered as a microbial cell factory for production of recombinant proteins and enzymes. Currently, genetic manipulation of filamentous fungi is achieved via Agrobacterium tumefaciens-mediated transformation methods usually employing antibiotic resistance markers. These methods are hardly usable for A. oryzae due to its strong resistance to the common antifungal compounds used for fungal transformation. In this study, we have constructed two binary vectors carrying the pyrG gene from A. oryzae as a biochemical marker than an antibiotic resistance marker, and an expression cassette for GFP or DsRed reporter gene under control of the constitutive gpdA promoter from Aspergillus nidulans. All components of these vectors are changeable to generate new versions for specific research purposes. The developed vectors are fully functional for heterologous expression of the GFP and DsRed fluorescent proteins in the uridine/uracil auxotrophic A. oryzae strain. Our study provides a new approach for A. oryzae transformation using pyrG as the selectable auxotrophic marker, A. tumefaciens as the DNA transfer tool and fungal spores as the transformation material. The binary vectors constructed can be used for gene expression studies in this industrially important filamentous fungus.
米曲霉是一种广泛应用于食品工业的安全霉菌。它也被视为用于生产重组蛋白和酶的微生物细胞工厂。目前,丝状真菌的基因操作是通过根癌农杆菌介导的转化方法实现的,通常使用抗生素抗性标记。由于米曲霉对用于真菌转化的常见抗真菌化合物具有很强的抗性,这些方法几乎不适用于米曲霉。在本研究中,我们构建了两个双元载体,携带来自米曲霉的pyrG基因作为生化标记而非抗生素抗性标记,以及一个在构巢曲霉组成型gpdA启动子控制下的GFP或DsRed报告基因的表达盒。这些载体的所有组件都可以改变,以生成用于特定研究目的的新版本。所开发的载体对于在尿苷/尿嘧啶营养缺陷型米曲霉菌株中异源表达GFP和DsRed荧光蛋白具有完全功能。我们的研究提供了一种新的方法,以pyrG作为选择营养缺陷型标记、根癌农杆菌作为DNA转移工具、真菌孢子作为转化材料来进行米曲霉转化。构建的双元载体可用于这种具有重要工业价值的丝状真菌的基因表达研究。