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中国精品科技期刊2020
吴晨奇, 扶教龙, 陈冬铨, 钱大伟, 李良智, 胡翠英, 王桃云. ε-聚赖氨酸产生菌的复合诱变筛选及其发酵培养基优化[J]. 食品工业科技, 2015, (18): 186-192. DOI: 10.13386/j.issn1002-0306.2015.18.029
引用本文: 吴晨奇, 扶教龙, 陈冬铨, 钱大伟, 李良智, 胡翠英, 王桃云. ε-聚赖氨酸产生菌的复合诱变筛选及其发酵培养基优化[J]. 食品工业科技, 2015, (18): 186-192. DOI: 10.13386/j.issn1002-0306.2015.18.029
WU Chen-qi, FU Jiao-long, CHEN Dong-quan, QIAN Da-wei, LI Liang-zhi, HU Cui-ying, WANG Tao-yun. Breeding of ε-poly-L-lysine producing strain with combined mutation and the optimization of its fermentation medium[J]. Science and Technology of Food Industry, 2015, (18): 186-192. DOI: 10.13386/j.issn1002-0306.2015.18.029
Citation: WU Chen-qi, FU Jiao-long, CHEN Dong-quan, QIAN Da-wei, LI Liang-zhi, HU Cui-ying, WANG Tao-yun. Breeding of ε-poly-L-lysine producing strain with combined mutation and the optimization of its fermentation medium[J]. Science and Technology of Food Industry, 2015, (18): 186-192. DOI: 10.13386/j.issn1002-0306.2015.18.029

ε-聚赖氨酸产生菌的复合诱变筛选及其发酵培养基优化

Breeding of ε-poly-L-lysine producing strain with combined mutation and the optimization of its fermentation medium

  • 摘要: 以白色链霉菌FQ-9为出发菌株,首次利用(甘氨酸+L-赖氨酸+磺胺胍)复合抗性,进行"紫外-氯化锂"复合诱变,筛选出一株ε-PL产量达(0.668±0.0045)g/L的突变菌株FQC-23,产量提高了15.37%,且其遗传性稳定。然后在单因素实验的基础上,应用响应面分析方法,对其发酵培养基进行优化,最终确定最佳培养基为(g/L):葡萄糖46.1、酵母粉13.0、(NH4)2SO45.9、Mg SO4·7H2O 0.5、K2HPO40.8、KH2PO41.36、Fe SO4·7H2O 0.03、Zn SO4·7H2O 0.04,在此条件下,FQC-23的ε-PL产量达(1.090±0.0041)g/L,比出发菌株的产量提高了87.56%。 

     

    Abstract: Using Streptomyces albulus FQ-9 as the initial strain mutated by UV combined with Li Cl,and using glycine +sulfaguanidine(SG) +L-lysine as selective markers. Then,a ε-PL-producing strain,Streptomyces albulus FQC-23 of the yield improved to(0.668±0.0045) g/L was screened,which was 15.37% higher than that of FQ-9. Moreover,based on single factor experiment,the fermentation medium of ε-PL producing strain FQC-23 were optimized by response surface methodology,and finally determined the optimal fermentation medium as follows(g/L):glucose 46.1,yeast powder 13.0,(NH4)2SO45.9,Mg SO4·7H2O 0.5,K2HPO40.8,KH2PO41.36,Fe SO4·7H2O 0.03,Zn SO4·7H2O 0.04. Under the optimized medium,the yield of ε-PL reached(1.090±0.0041) g/L and increased by 87.56% compared with the previous condition.

     

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