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利用枯草芽孢杆菌HLZ-68固定化细胞从DL-丙氨酸生产D-丙氨酸。

Production of D-alanine from DL-alanine using immobilized cells of Bacillus subtilis HLZ-68.

作者信息

Zhang Yangyang, Li Xiangping, Zhang Caifei, Yu Xiaodong, Huang Fei, Huang Shihai, Li Lianwei, Liu Shiyu

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi University, Nanning, 530004, Guangxi, China.

High-tech Industrial Development Zone, Xixiangtang, Nanning, 530004, Guangxi, China.

出版信息

World J Microbiol Biotechnol. 2017 Sep 13;33(9):176. doi: 10.1007/s11274-017-2341-3.

DOI:10.1007/s11274-017-2341-3
PMID:28905232
Abstract

Immobilized cells of Bacillus subtilis HLZ-68 were used to produce D-alanine from DL-alanine by asymmetric degradation. Different compounds such as polyvinyl alcohol and calcium alginate were employed for immobilizing the B. subtilis HLZ-68 cells, and the results showed that cells immobilized using a mixture of these two compounds presented higher L-alanine degradation activity, when compared with free cells. Subsequently, the effects of different concentrations of polyvinyl alcohol and calcium alginate on L-alanine consumption were examined. Maximum L-alanine degradation was exhibited by cells immobilized with 8% (w/v) polyvinyl alcohol and 2% (w/v) calcium alginate. Addition of 400 g of DL-alanine (200 g at the beginning of the reaction and 200 g after 30 h of incubation) into the reaction solution at 30 °C, pH 6.0, aeration of 1.0 vvm, and agitation of 400 rpm resulted in complete L-alanine degradation within 60 h, leaving 185 g of D-alanine in the reaction solution. The immobilized cells were applied for more than 15 cycles of degradation and a maximum utilization rate was achieved at the third cycle. D-alanine was easily extracted from the reaction solution using cation-exchange resin, and the chemical and optical purity of the extracted D-alanine was 99.1 and 99.6%, respectively.

摘要

枯草芽孢杆菌HLZ - 68的固定化细胞用于通过不对称降解从DL - 丙氨酸生产D - 丙氨酸。使用聚乙烯醇和海藻酸钙等不同化合物固定枯草芽孢杆菌HLZ - 68细胞,结果表明,与游离细胞相比,使用这两种化合物的混合物固定的细胞具有更高的L - 丙氨酸降解活性。随后,研究了不同浓度的聚乙烯醇和海藻酸钙对L - 丙氨酸消耗的影响。用8%(w/v)聚乙烯醇和2%(w/v)海藻酸钙固定的细胞表现出最大的L - 丙氨酸降解能力。在30℃、pH 6.0、通气量1.0 vvm和搅拌速度400 rpm的条件下,向反应溶液中加入400 g DL - 丙氨酸(反应开始时加入200 g,孵育30 h后再加入200 g),60 h内L - 丙氨酸完全降解,反应溶液中留下185 g D - 丙氨酸。固定化细胞用于15个以上的降解循环,在第三个循环时达到最大利用率。使用阳离子交换树脂可轻松从反应溶液中提取D - 丙氨酸,提取的D - 丙氨酸的化学纯度和光学纯度分别为99.1%和99.6%。

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