Lee P C, Lee W G, Lee S Y, Chang H N
Department of Chemical Engineering, Korea Advanced Institute of Science and Technology, 373-1 Kusong-dong, Yusong-gu, Taejon 305-701, Korea.
Biotechnol Bioeng. 2001 Jan 5;72(1):41-8.
Succinic acid was produced by fermentation of Anaerobiospirillum succiniciproducens using glycerol as a carbon source. When cells were anaerobically cultured in a medium containing 6.5 g/L glycerol, a high succinic acid yield (133%) was obtained while avoiding the formation of by-product acetic acid. The gram ratio of succinic acid to acetic acid was 25.8:1, which is 6.5 times higher than that obtained using glucose (ca. 4:1) as a carbon source. Therefore, succinic acid can be produced with much less by-product formation by using glycerol as a carbon source, which will facilitate its purification. When glucose and glycerol were cofermented with the increasing ratio of glucose to glycerol, the gram ratio of succinic acid to acetic acid and succinic acid yield decreased, suggesting that glucose enhanced acetic acid formation irrespective of the presence of glycerol. Glycerol consumption by A. succiniciproducens required unidentified nutritional components present in yeast extract. By intermittently feeding yeast extract along with glycerol, a high succinic acid yield (160%) could be obtained while still avoiding acetic acid formation. This resulted in the highest ratio of succinic acid to acetic acid (31.7:1).
以甘油作为碳源,通过琥珀酸厌氧螺菌发酵生产琥珀酸。当细胞在含有6.5 g/L甘油的培养基中进行厌氧培养时,可获得较高的琥珀酸产量(133%),同时避免了副产物乙酸的形成。琥珀酸与乙酸的克数比为25.8:1,这比以葡萄糖(约4:1)作为碳源时高出6.5倍。因此,使用甘油作为碳源生产琥珀酸时副产物形成少得多,这将便于其纯化。当葡萄糖和甘油以葡萄糖与甘油比例增加的方式共同发酵时,琥珀酸与乙酸的克数比以及琥珀酸产量下降,这表明无论甘油是否存在,葡萄糖都会促进乙酸的形成。琥珀酸厌氧螺菌消耗甘油需要酵母提取物中存在的未知营养成分。通过与甘油一起间歇性添加酵母提取物,可获得较高的琥珀酸产量(160%),同时仍可避免乙酸的形成。这产生了最高的琥珀酸与乙酸比例(31.7:1)。