Wang Jingnan, Ma Weixu, Ma Wenqi, Yao Zhi, Jiang Yujia, Jiang Wankui, Xin Fengxue, Zhang Wenming, Jiang Min
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing 211800, P.R. China.
J Agric Food Chem. 2025 Jan 22;73(3):1952-1964. doi: 10.1021/acs.jafc.4c10113. Epub 2025 Jan 9.
Astaxanthin is a kind of carotenoid with a strong antioxidant ability, which has shown broad applications in the areas of healthcare, medicine, cosmetics, food additives, and aquaculture. With the increasing demand for natural products, the microbial production of astaxanthin has become a new hot spot. In this study, the astaxanthin synthesis pathway was first metabolically constructed in ()(). By exploring the combination of different promoters, astaxanthin producers were obtained. Then, the key enzymes in the astaxanthin synthesis pathway were explored, and different enzyme assembly strategies and an increase in NADPH supply were used to improve the astaxanthin production. Furthermore, fermentation parameters including temperature, the concentration of the carbon source, nitrogen sources, metal ions, BHT (2,6-di--butyl-4-methylphenol), and Tween-80 were comprehensively investigated for the microbial growth and astaxanthin synthesis. Finally, the astaxanthin production reached 716.13 mg/L by fed-batch fermentation in a 5 L bioreactor, which was the highest production of astaxanthin synthesized by .
虾青素是一种具有强大抗氧化能力的类胡萝卜素,已在医疗保健、医药、化妆品、食品添加剂和水产养殖等领域展现出广泛应用。随着对天然产物需求的不断增加,微生物生产虾青素已成为一个新的热点。在本研究中,首先在()()中代谢构建了虾青素合成途径。通过探索不同启动子的组合,获得了虾青素生产菌株。然后,对虾青素合成途径中的关键酶进行了探索,并采用不同的酶组装策略和增加NADPH供应来提高虾青素产量。此外,还全面研究了包括温度、碳源浓度、氮源、金属离子、BHT(2,6 - 二叔丁基 - 4 - 甲基苯酚)和吐温 - 80在内的发酵参数对微生物生长和虾青素合成的影响。最后,通过在5 L生物反应器中进行补料分批发酵,虾青素产量达到716.13 mg/L,这是()合成虾青素的最高产量。