Institut für Bio-und Lebensmitteltechnik, Technische Biologie, Karlsruhe Institute of Technology (KIT), Engler-Bunte-Ring 1, 76131 Karlsruhe, Germany.
Appl Microbiol Biotechnol. 2010 Jun;87(1):167-74. doi: 10.1007/s00253-010-2513-7. Epub 2010 Mar 9.
Rhamnolipids are biosurfactants with interesting physico-chemical properties. However, the main obstacles towards an economic production are low productivity, high raw-material costs, relatively expensive downstream processing, and a lack of understanding the rhamnolipid production regulation in bioreactor systems. This study shows that the sequenced Pseudomonas aeruginosa strain PAO1 is able to produce high quantities of rhamnolipid during 30 L batch bioreactor cultivations with sunflower oil as sole carbon source and nitrogen limiting conditions. Thus PAO1 could be an appropriate model for rhamnolipid production in pilot plant bioreactor systems. In contrast to well-established production strains, PAO1 allows knowledge-based systems biotechnological process development combined with the frequently used heuristic bioengineering approach. The maximum rhamnolipid concentration obtained was 39 g/L after 90 h of cultivation. The volumetric productivity of 0.43 g/Lh was comparable with previous described production strains. The specific rhamnolipid productivity showed a maximum between 40 and 70 h of process time of 0.088 g(RL)/g(BDM)h. At the same time interval, a shift of the molar di- to mono-rhamnolipid ratio from 1:1 to about 2:1 was observed. PAO1 not only seems to be an appropriate model, but surprisingly has the potential as a strain of choice for actual biotechnological rhamnolipid production.
鼠李糖脂是具有有趣物理化学性质的生物表面活性剂。然而,经济生产的主要障碍是生产力低、原材料成本高、下游加工相对昂贵,以及对生物反应器系统中鼠李糖脂生产调控的理解不足。本研究表明,测序后的铜绿假单胞菌(Pseudomonas aeruginosa)菌株 PAO1 能够在以向日葵油为唯一碳源和氮限制条件的 30 L 分批生物反应器培养中大量生产鼠李糖脂。因此,PAO1 可以作为中试工厂生物反应器系统中生产鼠李糖脂的合适模型。与成熟的生产菌株相比,PAO1 允许基于知识的系统生物技术过程开发,同时结合经常使用的启发式生物工程方法。培养 90 h 后获得的最大鼠李糖脂浓度为 39 g/L。体积生产率为 0.43 g/L/h,与之前描述的生产菌株相当。特定鼠李糖脂生产率在 40 至 70 h 的过程时间内达到最大值,为 0.088 g(RL)/g(BDM)h。在同一时间间隔内,二鼠李糖脂与一鼠李糖脂的摩尔比从 1:1 向约 2:1 发生了转变。PAO1 不仅似乎是一种合适的模型,而且出人意料地具有作为实际生物技术鼠李糖脂生产首选菌株的潜力。