Sabra Wael, Groeger C, Sharma P N, Zeng An-Ping
Institute of Bioprocess and Biosystems Engineering, Hamburg University of Technology, Denickestr.15, 21073, Hamburg, Germany,
Appl Microbiol Biotechnol. 2014 May;98(9):4267-76. doi: 10.1007/s00253-014-5588-8. Epub 2014 Mar 2.
The kinetics of growth, acid and solvent production in batch culture of Clostridium pasteurianum DSMZ 525 were examined in mixed or mono-substrate fermentations. In pH-uncontrolled batch cultures, the addition of butyric acid or glucose significantly enhanced n-butanol production and the ratio of butanol/1,3-propanediol. In pH-controlled batch culture at pH = 6, butyric acid addition had a negative effect on growth and did not lead to a higher n-butanol productivity. On the other hand, mixed substrate fermentation using glucose and glycerol enhanced the growth and acid production significantly. Glucose limitation in the mixed substrate fermentation led to the reduction or inhibition of the glycerol consumption by the growing bacteria. Therefore, for the optimal growth and n-butanol production by C. pasteurianum, a limitation of either substrate should be avoided. Under optimized batch conditions, n-butanol concentration and maximum productivity achieved were 21 g/L, and 0.96 g/L × h, respectively. In comparison, mixed substrate fermentation using biomass hydrolysate and glycerol gave a n-butanol concentration of 17 g/L with a maximum productivity of 1.1 g/L × h. In terms of productivity and final n-butanol concentration, the results demonstrated that C. pasteurianum DSMZ 525 is well suitable for n-butanol production from mixed substrates of biomass hydrolysate and glycerol and represents an alternative promising production strain.
在混合或单一底物发酵中,研究了巴氏梭菌DSMZ 525分批培养时的生长动力学、酸和溶剂生成情况。在pH值不受控制的分批培养中,添加丁酸或葡萄糖可显著提高正丁醇产量以及丁醇与1,3 - 丙二醇的比例。在pH = 6的pH值控制分批培养中,添加丁酸对生长有负面影响,且未导致更高的正丁醇生产率。另一方面,使用葡萄糖和甘油的混合底物发酵显著提高了生长和酸的生成。混合底物发酵中葡萄糖的限制导致生长中的细菌对甘油消耗的减少或抑制。因此,为了巴氏梭菌实现最佳生长和正丁醇生产,应避免任何一种底物的限制。在优化的分批条件下,达到的正丁醇浓度和最大生产率分别为21 g/L和0.96 g/L×h。相比之下,使用生物质水解物和甘油的混合底物发酵得到的正丁醇浓度为17 g/L,最大生产率为1.1 g/L×h。就生产率和最终正丁醇浓度而言,结果表明巴氏梭菌DSMZ 525非常适合从生物质水解物和甘油的混合底物生产正丁醇,是一种有前景的替代生产菌株。