Ma Yan, Li Bing, Zhang Xinyue, Wang Chao, Chen Wei
School of Marine Science and Engineering, Qingdao Agricultural University, Qingdao, China.
Dongcheng District Center for Disease Control and Prevention, Beijing, China.
Front Bioeng Biotechnol. 2022 May 16;10:864787. doi: 10.3389/fbioe.2022.864787. eCollection 2022.
Gluconic acid (GA) and its derivatives, as multifunctional biological chassis compounds, have been widely used in the food, medicine, textile, beverage and construction industries. For the past few decades, the favored production means of GA and its derivatives are microbial fermentation using various carbon sources containing glucose hydrolysates due to high-yield GA production and mature fermentation processes. Advancements in improving fermentation process are thriving which enable more efficient and economical industrial fermentation to produce GA and its derivatives, such as the replacement of carbon sources with agro-industrial byproducts and integrated routes involving genetically modified strains, cascade hydrolysis or micro- and nanofiltration in a membrane unit. These efforts pave the way for cheaper industrial fermentation process of GA and its derivatives, which would expand the application and widen the market of them. This review summarizes the recent advances, points out the existing challenges and provides an outlook on future development regarding the production of GA and its derivatives by microbial fermentation, aiming to promote the combination of innovative production of GA and its derivatives with industrial fermentation in practice.
葡萄糖酸(GA)及其衍生物作为多功能生物基础化合物,已广泛应用于食品、医药、纺织、饮料和建筑行业。在过去几十年里,由于GA产量高且发酵工艺成熟,GA及其衍生物最受欢迎的生产方式是使用含有葡萄糖水解物的各种碳源进行微生物发酵。改进发酵工艺的进展蓬勃发展,这使得更高效、经济的工业发酵生产GA及其衍生物成为可能,例如用农业工业副产品替代碳源,以及涉及转基因菌株、级联水解或膜单元中的微滤和纳滤的集成路线。这些努力为GA及其衍生物更廉价的工业发酵工艺铺平了道路,这将扩大它们的应用并拓宽其市场。本综述总结了近期的进展,指出了现有挑战,并对微生物发酵生产GA及其衍生物的未来发展进行了展望,旨在促进GA及其衍生物的创新生产与工业发酵在实践中的结合。