Jeon Bo Young, Kim Dae Hee, Na Byung Kwan, Ahn Dae Hee, Park Doo Hyun
Department of Biological Engineering, Seokyeong University, Seoul 136-704, Korea.
J Microbiol Biotechnol. 2008 Mar;18(3):545-51.
When cultivated aerobically, Aspergillus niger hyphae produced extracellular glucoamylase, which catalyzes the saccharification of unliquified potato starch into glucose, but not when grown under anaerobic conditions. The Km and Vmax of the extracellular glucoamylase were 652.3 mg starch l-1 and 253.3 mg glucose l-1 min-1, respectively. In mixed culture of A. niger and Saccharomyces cerevisiae, oxygen had a negative influence on the alcohol fermentation of yeast, but activated fungal growth. Therefore, oxygen is a critical factor for ethanol production in the mixed culture, and its generation through electrolysis of water in an electrochemical bioreactor needs to be optimized for ethanol production from starch by coculture of fungal hyphae and yeast cells. By applying pulsed electric fields (PEF) into the electrochemical bioreactor, ethanol production from starch improved significantly: Ethanol produced from 50 g potato starch l-1 by a mixed culture of A. niger and S. cerevisiae was about 5 g l-1 in a conventional bioreactor, but was 9 g l-1 in 5 volts of PEF and about 19 g l-1 in 4 volts of PEF for 5 days.
黑曲霉在有氧培养时,其菌丝体会产生胞外糖化酶,该酶可催化未液化的马铃薯淀粉糖化生成葡萄糖,但在厌氧条件下生长时则不会产生。胞外糖化酶的米氏常数(Km)和最大反应速度(Vmax)分别为652.3毫克淀粉/升和253.3毫克葡萄糖/升·分钟。在黑曲霉和酿酒酵母的混合培养中,氧气对酵母的酒精发酵有负面影响,但能促进真菌生长。因此,氧气是混合培养中乙醇生产的关键因素,通过电化学生物反应器中水电解产生氧气的过程需要针对真菌菌丝体和酵母细胞共培养从淀粉生产乙醇进行优化。通过向电化学生物反应器施加脉冲电场(PEF),淀粉的乙醇产量显著提高:在传统生物反应器中,黑曲霉和酿酒酵母的混合培养从50克/升马铃薯淀粉中产生的乙醇约为5克/升,但在5伏脉冲电场下为9克/升,在4伏脉冲电场下处理5天约为19克/升。