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通过控制发酵过程中的 pH 值和温度,在假单胞菌 taetrolens 发酵中实现了高水平的乳糖酸生产和高产率回收。

High-level production and high-yield recovery of lactobionic acid by the control of pH and temperature in fermentation of Pseudomonas taetrolens.

机构信息

Bio-based Chemistry Research Center, Korea Research Institute of Chemical Technology (KRICT), 406-30 Jongga-ro, Ulsan, 44429, Republic of Korea.

Department of Green Chemistry and Environmental Biotechnology, Korea University of Science and Technology (UST), 217 Gajeong-ro, Yuseong-gu, Daejeon, 305-350, Republic of Korea.

出版信息

Bioprocess Biosyst Eng. 2020 May;43(5):937-944. doi: 10.1007/s00449-020-02290-z. Epub 2020 Feb 15.

Abstract

Lactobionic acid (LBA) was produced by fermentation of Pseudomonas taetrolens. First, to increase the production of LBA by P. taetrolens, we controlled the pH of culture medium by CaCO addition (30 g/L) and then examined the initial lactose concentration ranging from 50 to 200 g/L and the growth temperature ranging from 20 to 37 °C. Both the LBA production titer (180 g/L) and the productivity (2.5 g/L h) were highest at 200 g/L lactose concentration and 25 °C of cell growth temperature in shake-flask culture. Although the production of LBA (178 g/L) was almost similar during the batch fermentation of P. taetrolens using 5 L bioreactor, the LBA productivity highly increased to 4.9 g/L h. The method using ethanol precipitation and ion-exchange chromatography was developed to recover the pure LBA from the fermentation broth. The optimum volume of ethanol and pH of culture medium for the precipitation of Ca salt form of LBA were six volume of ethanol and pH 6.5, respectively. The cation-exchange resin T42 finally showed the best recovery yield (97.6%) of LBA from the culture supernatant. The production titer (178 g/L) and the productivity (4.9 g/L h) of lactobionic acid in this study were highest among the previous studies ever reported using P. taetrolens as a production strain of LBA.

摘要

乳酮酸(LBA)由发酵假单胞菌 taetrolens 生产。首先,为了提高假单胞菌 taetrolens 生产 LBA 的产量,我们通过添加 CaCO(30 g/L)来控制培养基的 pH 值,然后考察了初始乳糖浓度为 50-200 g/L 和细胞生长温度为 20-37°C。在摇瓶培养中,乳糖浓度为 200 g/L、细胞生长温度为 25°C 时,LBA 产量(180 g/L)和生产效率(2.5 g/L·h)最高。虽然在 5 L 生物反应器中分批发酵假单胞菌 taetrolens 时,LBA 的产量(178 g/L)几乎相似,但 LBA 的生产效率却大大提高到 4.9 g/L·h。开发了乙醇沉淀和离子交换层析法从发酵液中回收纯 LBA。用于沉淀 LBA 的 Ca 盐形式的乙醇最佳体积和培养基的最佳 pH 值分别为六倍体积的乙醇和 pH 6.5。阳离子交换树脂 T42 最终显示出从培养上清液中回收 LBA 的最佳收率(97.6%)。在本研究中,使用假单胞菌 taetrolens 作为 LBA 的生产菌株,乳酮酸的产量(178 g/L)和生产效率(4.9 g/L·h)均高于以往报道的最高水平。

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