DSM Biotechnology Center, Alexander Fleminglaan 1, 2613 AX Delft, The Netherlands.
Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.
Curr Opin Biotechnol. 2014 Dec;30:190-7. doi: 10.1016/j.copbio.2014.07.003. Epub 2014 Aug 12.
Fermentative production of succinic acid (SA) from renewable carbohydrate feed-stocks can have the economic and sustainability potential to replace petroleum-based production in the future, not only for existing markets, but also new larger volume markets. To accomplish this, extensive efforts have been undertaken in the field of strain construction and metabolic engineering to optimize SA production in the last decade. However, relatively little effort has been put into fermentation process development. The choice for a specific host organism determines to a large extent the process configuration, which in turn influences the environmental impact of the overall process. In the last five years, considerable progress has been achieved towards commercialization of fermentative production of SA. Several companies have demonstrated their confidence about the economic feasibility of fermentative SA production by transferring their processes from pilot to production scale.
从可再生碳水化合物原料中发酵生产琥珀酸(SA)具有经济和可持续发展的潜力,可以在未来取代基于石油的生产,不仅适用于现有市场,也适用于更大规模的新市场。为了实现这一目标,在过去十年中,人们在菌株构建和代谢工程领域进行了广泛的努力,以优化 SA 的生产。然而,在发酵工艺开发方面的投入相对较少。特定宿主生物体的选择在很大程度上决定了工艺配置,而工艺配置又会影响整个工艺的环境影响。在过去五年中,发酵生产 SA 的商业化取得了相当大的进展。几家公司已经通过将其工艺从试验规模转移到生产规模,证明了他们对发酵 SA 生产的经济可行性的信心。