Dwiarti Lies, Otsuka Megumi, Miura Shigenobu, Yaguchi Masaaki, Okabe Mitsuyasu
Science of Biological Resources, The United Graduate School of Agricultural Science, Gifu University, 1-1 Yanagido, Gifu, Japan.
Bioresour Technol. 2007 Dec;98(17):3329-37. doi: 10.1016/j.biortech.2006.03.016. Epub 2007 Apr 23.
Sago starch was hydrolyzed using either chemical agents, or enzymes at various pH and concentrations. Hydrolysis using 5000 AUN/ml (0.5%, w/v) glucoamylase exhibited the highest itaconic acid yield up to 0.36 g/g sago starch, whereas hydrolysis using nitric acid at pH 2.0 yielded 0.35 g/g sago starch. The medium was optimized and the composition was (g/l) 140 sago starch, 1.8 corn steep liquor, 1.2 MgSO(4).7H(2)O and 2.9 NH(4)NO(3). When the optimal conditions of hydrolysis and medium composition were applied to itaconic acid production in a 3-l jar fermentor, the itaconic acid production was 48.2 g/l with a yield of 0.34 g/g sago starch. This was filtered from the cultured broth and 37.1g of itaconic acid was recovered with a purity of 97.2%. This result showed that sago starch could be converted to a value-added product with only a simple pretreatment.
西米淀粉在不同pH值和浓度下使用化学试剂或酶进行水解。使用5000 AUN/ml(0.5%,w/v)的糖化酶水解,衣康酸产量最高可达0.36 g/g西米淀粉,而在pH 2.0条件下使用硝酸水解,衣康酸产量为0.35 g/g西米淀粉。对培养基进行了优化,其组成(g/l)为:140西米淀粉、1.8玉米浆、1.2 MgSO₄·7H₂O和2.9 NH₄NO₃。当将水解的最佳条件和培养基组成应用于3升罐式发酵罐中的衣康酸生产时,衣康酸产量为48.2 g/l,产率为0.34 g/g西米淀粉。将其从培养液中过滤出来,回收得到37.1 g衣康酸,纯度为97.2%。该结果表明,西米淀粉只需经过简单预处理就可以转化为高附加值产品。