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학술논문Journal of Microbiology and Biotechnology2017.05 발행KCI 피인용 1

Optimization of Herbicidin A Production in Submerged Culture of Streptomyces scopuliridis M40

Optimization of Herbicidin A Production in Submerged Culture of Streptomyces scopuliridis M40

하상현(세계김치연구소); 이건진(세계김치연구소); 이상일(세계김치연구소); 곽현정(세계김치연구소); 이종희(한국식품연구원부설 세계김치연구소); 김태운(한국식품연구원부설 세계김치연구소); 최학종(세계김치연구소); 장자영(세계김치연구소); 최중섭(한국화학연구원); 김창진(한국생명공학연구원); 김진철(전남대학교); 김형환(농촌진흥청); 박해웅(세계김치연구소)

27권 5호, 947~955쪽

초록

Herbicidin A is a potent herbicide against dicotyledonous plants as well as an antibiotic against phytopathogens. In this study, fermentation parameters for herbicidin A production in submerged culture of Streptomyces scopuliridis M40 were investigated. The herbicidin A concentration varied with the C/N ratio. High C/N ratios (>4) resulted in a herbicidin A production of more than 900 mg/l, whereas maximally 600 mg/l was obtained at ratios between 1 and 3.5. In 5-L batch fermentation, there was a positive correlation between the oxygen uptake rate (OUR) and herbicidin A production. Once the OUR increased, the substrate consumption rate increased, leading to an increase in volumetric productivity. Mechanical shear force affected the hyphal morphology and OUR. When the medium value of hyphal size ranged from 150 to 180 μm, high volumetric production of herbicidin A was obtained with OUR values >137 mg O2/l·h. The highest herbicidin A concentration of 956.6 mg/l was obtained at 500 rpm, and coincided with the highest relative abundance of hyphae of 100–200 μm length and the highest OUR during cultivation. Based on a constant impeller tip speed, which affects hyphal morphology, herbicidin A production was successfully scaled up from a 5-L jar to a 500-L pilot vessel.

Abstract

Herbicidin A is a potent herbicide against dicotyledonous plants as well as an antibiotic against phytopathogens. In this study, fermentation parameters for herbicidin A production in submerged culture of Streptomyces scopuliridis M40 were investigated. The herbicidin A concentration varied with the C/N ratio. High C/N ratios (>4) resulted in a herbicidin A production of more than 900 mg/l, whereas maximally 600 mg/l was obtained at ratios between 1 and 3.5. In 5-L batch fermentation, there was a positive correlation between the oxygen uptake rate (OUR) and herbicidin A production. Once the OUR increased, the substrate consumption rate increased, leading to an increase in volumetric productivity. Mechanical shear force affected the hyphal morphology and OUR. When the medium value of hyphal size ranged from 150 to 180 μm, high volumetric production of herbicidin A was obtained with OUR values >137 mg O2/l·h. The highest herbicidin A concentration of 956.6 mg/l was obtained at 500 rpm, and coincided with the highest relative abundance of hyphae of 100–200 μm length and the highest OUR during cultivation. Based on a constant impeller tip speed, which affects hyphal morphology, herbicidin A production was successfully scaled up from a 5-L jar to a 500-L pilot vessel.

발행기관:
한국미생물·생명공학회
DOI:
http://dx.doi.org/10.4014/jmb.1611.11005
분류:
생물학

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Optimization of Herbicidin A Production in Submerged Culture of Streptomyces scopuliridis M40 | Journal of Microbiology and Biotechnology 2017 | AskLaw | 애스크로 AI