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基因组改组通过提高鼠李糖乳杆菌的葡萄糖耐受性来增强L-乳酸的生产。

Genome shuffling enhanced L-lactic acid production by improving glucose tolerance of Lactobacillus rhamnosus.

作者信息

Yu Lei, Pei Xiaolin, Lei Ting, Wang Yuhua, Feng Yan

机构信息

Key Laboratory for Molecular Enzymology and Engineering of Ministry of Education, Jilin University, ChangChun 130023, PR China.

出版信息

J Biotechnol. 2008 Mar 20;134(1-2):154-9. doi: 10.1016/j.jbiotec.2008.01.008. Epub 2008 Jan 18.

Abstract

Genome shuffling is a powerful strategy for rapid engineering of microbial strains for desirable industrial phenotypes. Here we applied the genome shuffling to improve the glucose tolerance of Lactobacillus rhamnosus ATCC 11443 while simultaneously enhancing the L-lactic acid production. The starting population was generated by ultraviolet irradiation and nitrosoguanidine mutagenesis and then subjected for the recursive protoplast fusion. The positive colonies from library created by fusing the inactivated protoplasts were more likely to be screened on plates containing different concentrations of high glucose and 2% CaCO(3). Characterization of all mutants and wild-type strain in the shake flask indicated the compatibility of two optimal phenotypes of glucose tolerance and lactic acid enhancement. The lactic acid production, cell growth and glucose consumption of the best performing strain from the second round genome shuffled populations were 71.4%, 44.9% and 62.2% higher than those of the wild type at the initial glucose concentration of 150 g/l in the 16l bioreactor. Furthermore, the higher lactic acid concentrations were obtained when the initial glucose concentrations increased to 160 and 200 g/l in batch fermentation.

摘要

基因组重排是一种用于快速改造微生物菌株以获得理想工业表型的强大策略。在此,我们应用基因组重排来提高鼠李糖乳杆菌ATCC 11443的葡萄糖耐受性,同时提高L-乳酸产量。起始群体通过紫外线照射和亚硝基胍诱变产生,然后进行递归原生质体融合。通过融合灭活原生质体创建文库,在含有不同浓度高葡萄糖和2%碳酸钙的平板上更有可能筛选出阳性菌落。摇瓶中所有突变体和野生型菌株的表征表明了葡萄糖耐受性和乳酸增强这两种最佳表型的兼容性。在16升生物反应器中,初始葡萄糖浓度为150克/升时,第二轮基因组重排群体中表现最佳的菌株的乳酸产量、细胞生长和葡萄糖消耗分别比野生型高71.4%、44.9%和62.2%。此外,在分批发酵中,当初始葡萄糖浓度增加到160和200克/升时,可获得更高的乳酸浓度。

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