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在分批补料培养的厚朴假丝酵母中控制底物浓度可提高甘露醇产量。

Controlling substrate concentration in fed-batch candida magnoliae culture increases mannitol production.

作者信息

Lee Jung-Kul, Song Ji-Yoon, Kim Sang-Yong

机构信息

BioNgene Co., Ltd., 10-1, 1Ka, Myungryun-Dong, Jongro-Ku, Seoul, 110-521, Korea.

出版信息

Biotechnol Prog. 2003 May-Jun;19(3):768-75. doi: 10.1021/bp034025o.

Abstract

Candida magnoliae HH-01, a yeast strain that is currently used for the industrial production of mannitol, has the highest mannitol production ever reported for a mannitol-producing microorganism. However, when the fructose concentration exceeds 150 g/L, the volumetric mannitol production rate decreases because of a lag in mannitol production, and the yield decreases as a result of the formation of side products. In fed-batch culture, the volumetric production rate and mannitol yield from fructose vary substantially with the fructose concentration and are maximal at a controlled fructose concentration of 50 g/L. In continuous feeding experiments, the maximum mannitol yield was 85% (g/g) at a glucose/fructose feeding ratio of 1/20. A high glucose concentration in the production phase resulted in the formation of ethanol followed by a decrease in yield and productivity. NAD(P)H-dependent mannitol dehydrogenase was purified to homogeneity from C. magnoliae. In vitro, mannitol dehydrogenase was inhibited by increasing ethanol concentration. Mannitol product was also found to be inhibitory with a K(i) of 183 mM. Under optimum conditions, a final mannitol production of 213 g/L was obtained from 250 g fructose/L after 110 h.

摘要

木兰假丝酵母HH-01是一种目前用于工业生产甘露醇的酵母菌株,其甘露醇产量是以往报道的产甘露醇微生物中最高的。然而,当果糖浓度超过150 g/L时,由于甘露醇生产滞后,甘露醇体积产率会下降,并且由于副产物的形成,产量也会降低。在分批补料培养中,果糖的体积产率和甘露醇产量随果糖浓度变化很大,在控制果糖浓度为50 g/L时达到最大值。在连续补料实验中,葡萄糖/果糖补料比为1/20时,最大甘露醇产量为85%(g/g)。生产阶段高葡萄糖浓度导致乙醇的形成,随后产量和生产率下降。从木兰假丝酵母中纯化得到了依赖NAD(P)H的甘露醇脱氢酶,并使其达到了同质状态。在体外,甘露醇脱氢酶会随着乙醇浓度的增加而受到抑制。还发现甘露醇产物具有抑制作用,其抑制常数K(i)为183 mM。在最佳条件下,110小时后从250 g/L果糖中最终获得了213 g/L的甘露醇产量。

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