The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Kemitorvet 220, 2800, Kgs. Lyngby, Denmark.
River Stone Biotech ApS, Fruebjergvej 3, 2100, København Ø, Denmark.
Metab Eng. 2021 Jul;66:1-11. doi: 10.1016/j.ymben.2021.03.010. Epub 2021 Mar 19.
The application of small amounts of natural plant growth hormones, such as gibberellins (GAs), can increase the productivity and quality of many vegetable and fruit crops. However, gibberellin growth hormones usage is limited by the high cost of their production, which is currently based on fermentation of a natural fungal producer Fusarium fujikuroi that produces a mix of several GAs. We explored the potential of the oleaginous yeast Yarrowia lipolytica to produce specific profiles of GAs. Firstly, the production of the GA-precursor ent-kaurenoic acid (KA) at 3.75 mg/L was achieved by expression of biosynthetic enzymes from the plant Arabidopsis thaliana and upregulation of the mevalonate (MVA) pathway. We then built a GA-producing strain by extending the GA-biosynthetic pathway and upregulating the MVA-pathway further, resulting in 17.29 mg/L GA. Additional expression of the F. fujikoroi GA-biosynthetic enzymes resulted in the production of GA (trace amounts) and GA (2.93 mg/L). Lastly, through protein engineering and the expression of additional KA-biosynthetic genes, we increased the GA-production 4.4-fold resulting in 12.81 mg/L. The developed system presents a promising resource for the recombinant production of specific gibberellins, identifying bottlenecks in GA biosynthesis, and discovering new GA biosynthetic genes. CLASSIFICATION: Biological Sciences, Applied Biological Sciences.
应用少量天然植物生长激素,如赤霉素(GA),可以提高许多蔬菜和水果作物的产量和质量。然而,赤霉素生长激素的使用受到其生产成本高的限制,目前的生产方法是基于对天然真菌 producer Fusarium fujikuroi 的发酵,该真菌 producer 会产生多种 GA 的混合物。我们探索了产油酵母 Yarrowia lipolytica 生产特定 GA 谱的潜力。首先,通过表达植物拟南芥中的生物合成酶和上调甲羟戊酸(MVA)途径,实现了 GA 前体 ent-贝壳杉烯酸(KA)的 3.75mg/L 产量。然后,通过进一步扩展 GA 生物合成途径并上调 MVA 途径,我们构建了一个 GA 生产菌株,产量达到 17.29mg/L GA。进一步表达 F. fujikoroi 的 GA 生物合成酶导致 GA(痕量)和 GA(2.93mg/L)的产生。最后,通过蛋白质工程和额外的 KA 生物合成基因的表达,我们将 GA 的产量提高了 4.4 倍,达到 12.81mg/L。该开发系统为特定赤霉素的重组生产提供了有前途的资源,可用于鉴定 GA 生物合成中的瓶颈,并发现新的 GA 生物合成基因。分类:生物科学,应用生物科学。