Overexpression of a predicted transketolase gene and disruption of an α-1,3-glucan synthase gene inAspergillus oryzaeDGLA3 strain enhances the yield of free dihomo-γ-linolenic acid

Author:

Tamano Koichi12ORCID,Nakai Shiori3,Takayama Haruka1,Imai Yasuhiko4

Affiliation:

1. Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST) , Sapporo, Hokkaido , Japan

2. AIST-Waseda University Computational Bio Big-Data Open Innovation Laboratory (CBBD-OIL) , AIST, Shinjuku-ku, Tokyo , Japan

3. Hokkaido High-Technology College , Eniwa, Hokkaido , Japan

4. Noda Institute for Scientific Research , Noda, Chiba , Japan

Abstract

ABSTRACTFree dihomo-γ-linolenic acid (DGLA), a polyunsaturated free fatty acid (FFA), can potentially be used to produce eicosanoid pharmaceuticals, such as prostaglandin E1. Previously, we constructed an Aspergillus oryzae mutant strain, named DGLA3, which produced free DGLA at an increased yield by faaA gene disruption and cooverexpression of one elongase and two desaturase genes. In this study, we achieved a further increase. Since FFA production is increased by enhancing the pentose phosphate pathway, we overexpressed a predicted transketolase gene composing the pathway in DGLA3, which consequently increased the free DGLA yield by 1.9-fold to 403 mg/L. Additionally, we disrupted the α-1,3-glucan synthase gene agsB involved in cell-wall biosynthesis, which further increased it by 1.3-fold to 533 mg/L. Overall, the yield increased by 2.5-fold. Free DGLA productivity and biomass increased similarly, but residual glucose concentration decreased. Increased hyphal dispersion appeared to cause additional glucose consumption, resulting in an increase in biomass and yield.

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

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