Construction of genetic engineered bacillus subtilis for riboflavin production in fed-batch fermentation

被引:0
|
作者
Chen, Tao [1 ]
Dong, Wen-Ming [1 ]
Li, Xiao-Jing [1 ]
Wu, Qiu-Li [1 ]
Chen, Xun [1 ]
Zhao, Xue-Ming [1 ]
机构
[1] Department of Biochemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China
关键词
Fermentation - Fusion reactions - Genetic engineering - Glucose - Productivity;
D O I
暂无
中图分类号
学科分类号
摘要
An integration plasmid for Bacillus subtilis, pRB63, which contains a deregulated riboflavin operon oi Bacillus subtilis was constructed and then transformed into B.subtilis RH13 which is a riboflavin producing strain. Engineered strains RH13:: [pRB63]n were obtained by gene amplification of the integration plasmid on the host chromosome. The gene amplification results in an enhancement of riboflavin productivity which is 6-fold higher than the corresponding values of RH13 in batch fermentation. Subsequently, B.subtilis RH33 was screened by protoplast fusion of B.subtilis RH13:: [pRB63]n and another riboflavin producing strain B.subtilis YB1. Batch fermentations were carried out with RH33 for 64 hours in a medium containing 10% glucose or sucrose and the maximum riboflavin titer is 4.2 g&middotL-1. A fed-batch culture for the strain was also conducted with a flexible adjustment of feed rate to control the glucose concentration in a low level and the fed-batch process results in an accumulation of 7-8 g&middotL-1 riboflavin in 24 h, 11-12 g&middotL-1 riboflavin in 48 h and a yield of 0.056 g riboflavin&middot(g glucose)-1.
引用
下载
收藏
页码:356 / 360
相关论文
共 50 条
  • [1] Production of nattokinase by batch and fed-batch culture of Bacillus subtilis
    Cho, Young-Han
    Song, Jae Yong
    Kim, Kyung Mi
    Kim, Mi Kyoung
    Lee, In Young
    Kim, Sang Bum
    Kim, Hyeon Shup
    Han, Nam Soo
    Lee, Bong Hee
    Kim, Beom Soo
    NEW BIOTECHNOLOGY, 2010, 27 (04) : 341 - 346
  • [2] Medium optimization and production of secreted Renilla luciferase in Bacillus subtilis by fed-batch fermentation
    Chen, Po Ting
    Chiang, Chung-Jen
    Chao, Yun-Peng
    BIOCHEMICAL ENGINEERING JOURNAL, 2010, 49 (03) : 395 - 400
  • [3] Enhancing Production of Alkaline Polygalacturonate Lyase from Bacillus subtilis by Fed-Batch Fermentation
    Zou, Mouyong
    Guo, Fenfen
    Li, Xuezhi
    Zhao, Jian
    Qu, Yinbo
    PLOS ONE, 2014, 9 (03):
  • [4] Improve Production of Pullulanase of Bacillus subtilis in Batch and Fed-Batch Cultures
    Fanqiang Meng
    Xiaoyu Zhu
    Haizhen Zhao
    Fengxia Lu
    Yingjian Lu
    Zhaoxin Lu
    Applied Biochemistry and Biotechnology, 2021, 193 : 296 - 306
  • [5] IMPORTANCE OF SPORE MUTANTS FOR FED-BATCH AND CONTINUOUS FERMENTATION OF BACILLUS-SUBTILIS
    OH, MK
    KIM, BG
    PARK, SH
    BIOTECHNOLOGY AND BIOENGINEERING, 1995, 47 (06) : 696 - 702
  • [6] Construction and fed-batch cultivation of Candida farnata with enhanced riboflavin production
    Dmytruk, Kostyantyn
    Lyzak, Oleksy
    Yatsyshyn, Valentyna
    Kluz, Maciej
    Sibirny, Vladimir
    Puchalski, Czeslaw
    Sibirny, Andriy
    JOURNAL OF BIOTECHNOLOGY, 2014, 172 : 11 - 17
  • [7] Exponential fed-batch strategy for enhancing biosurfactant production by Bacillus subtilis
    Amin, G. A.
    WATER SCIENCE AND TECHNOLOGY, 2014, 70 (02) : 234 - 240
  • [8] Fed-Batch Biomolecule Production by Bacillus subtilis: A State of the Art Review
    Ozturk, Sibel
    Calik, Pinar
    Ozdamar, Tuncer H.
    TRENDS IN BIOTECHNOLOGY, 2016, 34 (04) : 329 - 345
  • [9] Fed-batch fermentation for ergosterol production
    Gao, H
    Tan, TW
    PROCESS BIOCHEMISTRY, 2003, 39 (03) : 345 - 350
  • [10] PRODUCTION OF PULLULAN BY A FED-BATCH FERMENTATION
    SHIN, YC
    KIM, YH
    LEE, HS
    KIM, YN
    BYUN, SM
    BIOTECHNOLOGY LETTERS, 1987, 9 (09) : 621 - 624