Cao Hailong, Yue Min, Liu Gang, Du Yuguang, Yin Heng
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, CAS, Dalian, People's Republic of China.
Department of Food Science and Engineering, Dalian Ocean University, People's Republic of China.
Biotechnol Appl Biochem. 2018 May;65(3):484-489. doi: 10.1002/bab.1590. Epub 2017 Dec 26.
In the present study, the conversion of the extract of Jerusalem artichoke tubers for mannitol production by Lactobacillus brevis 3-A5 was investigated. When the bacterium utilized enzymatic hydrolysates of Jerusalem artichoke extract as the main substrates in batch fermentation, the significant decrease in mannitol productivity was observed when the initial concentration of reducing sugar increased. Then, a strategy of continuous fed-batch fermentation was adopted for improving mannitol production with enzymatic hydrolysates of Jerusalem artichoke extract as main substrates. Although the concentration of mannitol could reach 199.86 g/L at the end of the fermentation, the productivity for the overall process of the fermentation was only 1.67 g/L/H. To improve the mannitol productivity with both higher yield and concentration, the simultaneous enzymatic saccharification and fermentation (SSF) was studied. In SSF, the mannitol production reached 176.50 g/L in 28 H with a productivity of 6.30 g/L/H and a yield of 0.68 g/g total sugar. Our study provides a cost-effective and eco-friendly method for mannitol production from a cheap biomass.
在本研究中,对短乳杆菌3 - A5将菊芋块茎提取物转化为甘露醇的过程进行了研究。当该细菌在分批发酵中利用菊芋提取物的酶解产物作为主要底物时,随着还原糖初始浓度的增加,甘露醇产率显著下降。随后,采用连续补料分批发酵策略,以菊芋提取物的酶解产物为主要底物提高甘露醇产量。尽管发酵结束时甘露醇浓度可达199.86 g/L,但整个发酵过程的产率仅为1.67 g/L/H。为了在提高产率和浓度的同时提高甘露醇产率,研究了同步糖化发酵(SSF)。在SSF中,28小时内甘露醇产量达到176.50 g/L,产率为6.30 g/L/H,总糖产率为0.68 g/g。我们的研究为从廉价生物质生产甘露醇提供了一种经济高效且环保的方法。