• Title/Summary/Keyword: 균체증식

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High Density Cultivation of Methylobacillus sp. SK1 in Fed-Batch System (Methylobacillus sp. SK1의 고농도 유가배양)

  • 이형춘;이계호김시욱
    • KSBB Journal
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    • v.5 no.3
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    • pp.269-277
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    • 1990
  • Methylobacillus sp. SK1, an obligate methylotroph, was cultivated in a fed-batch culture using DO as a methanol feeding indicator with a micro computer-aided control system. While 2.07g/l of cell density was obtained after 13 hr in the batch culture (initial methanol concentration: 1.0%(v/v)),45.3g/l of cell density was obtained after 17 hr by feeding methanol and metal ions in the fed-batch culture with oxygen supply. The high-density biomass was obtained in short cultuivation time by fed-batch culture with feedback control, and consequently the biomass productivity was significantly increased. It was mainly due to extension of logarithmic growth period by methanol feeding without methanol inhibition and intensive aeration without DO limitation with microcomputer-aided control system.

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Increase of Cell Concentration by the Automatic Addition of Glucose and Ammonium to an Alcohol Distillery Wastewater Reutilized for Cultivating a Baker's Yeast : Automatic Analysis and Control of Ammonium Concentration with an On-line Flow Injection Analysis System (알콜증류폐액을 이용한 빵효모배양에서 Glucose와 Ammonium의 자동첨가에 의한 증균 : 온라인 FIA 시스템에 의한 Ammonium의 자동분석 및 제어)

  • 이형춘
    • KSBB Journal
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    • v.15 no.2
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    • pp.139-144
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    • 2000
  • Automatic addition of glucose and ammonium to an alcohol distille깨 wastewater and the control of them at low $\infty$ncentration were tried to efficiently increase the cell concentration of a baker's yeast c비tivated in that wastewater. Added g glucose was indirectly controlled to less than 116 mg/L by a method which used DO as control parameter. Ammonium was a automatically measured and controlled within the range of 7.0~27.7 mM by a homemade on-line system which adopted FIA a as measurement method. Maximum specific growth rate and biomass yield to glucose were $0.21 hr^{-1}$ and about 0.78 g/g, w which were significantly increased values in contrast to those of an experiment without ammonium control. Biomass yield to a ammonium was 11.3 gIg. Cell cone엉ntration could be increased from 2.6 g/L to 18.5 g/L by the add ion of glucose and a ammonium.

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Studies on the Extracellular Protein Production by Bacillus sp. (Bacillus 속(屬)균에 의한 균체외(菌體外) 단백질의 생산에 대하여)

  • Cha, Hyeon-Jeong;Kim, Chan-Jo
    • Applied Biological Chemistry
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    • v.28 no.3
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    • pp.209-217
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    • 1985
  • Seventeen extracellular protein producing bacteria were isolated from soil samples, among which T219 strain having a strong capability of producing the protein was selected and identified for investigation of biological characteristics. The factors which affect the protein production were investigated and the results are summarized as follows. T219 strain which produces the most extracellular protein was identified as Bacillus sp. Optimum temperature and pH for production of the extracellular protein by T219 strain were $25^{\circ}C$ and 7.5 respectively. Almost no activities of protease and amylase were observed in the protein produced by the protein producing bacteria. In the medium containing yeast extract, the cell growth was moderately high, but almost no accumulation of protein was observed. However, polypeptone had significant effects on both the cell growth and the protein accumulation. The addition of glycine and L-isoleucine to the medium containing polypeptone, yeast extract and meat extract had a great effect on the protein production; 4mg/ml of protein accumulation was observed.

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Studies on the Utilization of Phenolic Substance by Yeast (효모에 의한 phenol 성 물질의 자화에 관한 연구)

  • 김상달;서정훈
    • Microbiology and Biotechnology Letters
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    • v.6 no.4
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    • pp.155-159
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    • 1978
  • Phenol utilizing yeast No. 558 isolated from soil sewage sediment was able to use substantial amount of phenol as the sole carbon source, and the biomass productivity by this organism was very excellent. This organism could grow well in 1000 ppm of phenol concentration, the maxim-um specific growth rate obtainable at pH 5.0, 3$0^{\circ}C$ was 0.27/hr., and the biomass yield coefficient Y vs. consumed phenol was 3.2. Maximum production rate of biomass was observed at 35$^{\circ}C$, pH 3.5 to pH 4.5, and the addition of the 0.005~0. 01% yeast extract was the most effective. Addition of HgCl$_2$ and phenyl hydrazine, inhibitors of oxide-reductase, in the phenol containing cultural liquid caused this organism no-growth at the concentration of 10$^{-5}$ M, 10$^{-3}$ M respectively. This organism could utilize not only phenol but catechol, resorcinol and benzidine.

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Methanol을 이용한 단세포단백질의 생산에 관한 연구

  • 유주현;변유량;정건섭
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1978.10a
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    • pp.205.3-205
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    • 1978
  • Methanol이용 미생물의 집적배양을 통해 토양 및 하수로부터 분리하여 그 중에서 비교적 생육속도가 빠른 균주를 선별하였다. 이 균주는 형태적, 생리적 특성에 따라 Methylomonas methanolica로 동정되었으며 obligate methylotroph 이었다. 균체 생산량을 높이기 위한 배지조성과 배양 최적조건을 검토한 결과, 탄소원으로는 methanol 0.8%(v/v), 질소원은 $(NH_4)_2SO_4$ 0.6%, 금속이온은 $MgSO_4.$ $7H_2O$ 0.1%이었고, 최적 pH는 6.3, 최적 배양온도는 $32.5^{\circ}C이었으며,$ 생육인자는 요구되지 않았다. 그리고 최적 배양조건에서 1ι용 fer-mentor를 사용하여 회분배양을 하였을 때 최대 비증식속도 0.19$hr^{-1}$, 균체수율은 0.47g dry cell/g-methanol이었다. Chemostat를 이용한 연속배양시 균체생산을 위한 최적희석률은 D=0.1 $hr^{-1}$이었고 이때의 균체생산속도는 0.21g- dry cell/hr이었다. 생산된 건조균체의 단백질과 핵산함량은 각각 73%, 12% 이었다.

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Isolation of Cadmium-tolerant Bacteria and Accumulation of Cadmium into the Bacterial Cell (카드뮴의 내성균분리 및 균체내 축적)

  • 김영배;이수래
    • Microbiology and Biotechnology Letters
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    • v.4 no.3
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    • pp.111-115
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    • 1976
  • A strain of Enterobacter cloacae isolated from soil showed the evidence of growth in medium containing 1,500 ppm of Cd$\^$++/ though its growth was inhibited at high cadmium concentrations. This strain accumulated 59% of cadmium into the cells during incubation in medium containing 0.5 ppm of cadmium and its uptake was nearly proportional to the dry weight of cells, the average being 7.8 mg cadmium per g dry cells. It was also found that 60-70% of cadmium accumulated in cells were distributed in the cell wall fraction.

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Effect of Magnesium Sulfate on Sisomicin Fermentation (Sisomicin 발효에 대한 Magnesium Sulfate의 영향)

  • 한상헌;신철수
    • Microbiology and Biotechnology Letters
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    • v.20 no.2
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    • pp.213-218
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    • 1992
  • Fermentation patterns were changed by adding magnesium sulfate to the fermentation broth and its effect on enhancement of sisomicin production was investigated. When cell growth was expressed by DNA content, trophophase and idiophase were separated, but not by dry cell weight. On the other hand, addition of magnesium sulfate had the antibiotic accumulated inside the cells be liberated into the outside, and this effect resulted in improving the final antibiotic yield. The maximum antibrotic yield was obtained when 100 mM magnesium sulfate was added after one day of cultivation, and enhanced more than three times compared to that of the control to which it was not added.

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Studies on Microbial Reduction of Chicken Carcasses (계육가공에 있어서 미생물증식억제)

  • 김혁일;홍범식;양한길;유태종
    • Microbiology and Biotechnology Letters
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    • v.7 no.4
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    • pp.197-204
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    • 1979
  • Chlorine alone was not effective in reducing the numbers of microorganisms on the chicken carcasses. The chlorine in addition to succinic acid, in which the carcasses were immersed for 30 minutes succeeded in reducing the numbers of microorganisms on the chicken skin. Chicken drumsticks treated with 200 ppm NaOCl plus 0.5% succinic acid stored at 5$^{\circ}C$ showed a little reduction in microbial quantity for approximately 2 days, but the microbial load increased thereafter to the point of indicating organoleptic spoilage in approximately 7 days. This method extended the shelf life of chicken by 2 days.

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Growth Inhibition and Ultra-Structural Changes of Saccharomyces cerevisiae by Paraquat (Saccharomyces cerevisiae에 대(對)한 제초제(除草劑) Paraquat의 증식(增殖)저해 작용(作用) 및 효모균체(酵母菌體)의 미세구조(微細構造)의 변화(變化))

  • Park, Young-Sill;Kim, Mi-Lim;Choi, Kyoung-Ho
    • Applied Biological Chemistry
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    • v.29 no.4
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    • pp.359-365
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    • 1986
  • Exponentially growing cells of S. cerevisiae were cultivated in the concomitant presence of $2{\times}10^{-3}\;M$ paraquat for 12 hours. Cellular growth became slower as the time passed and then, it was completely inhibited after 6 hours of cultivation. More than 70 percent of the yeast cells were killed with in 12 hours of paraquat treatment. It was observed that size of the yeast cell varied from $4.5{\times}5.5{\um}m$ to $2.5{\times}3.5{\um}m$ in diameter, while that of control was uniform. The number of budding cells became rare, Cell wall of the paraquat treated cell was thinner$(0.15{\mu}m)$ than that of control cell$(0.20{\mu}m)$. Outer part of the cell wall had higher density than inner part. Membrane structures such as plasma membrane and mitochondria was decomposed during the paraquat treatment for 12 hours.

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Increase of Cell Concentration by the Automatic Addition of Glucose and Ammonium to an Alcohol distillery Wastewater Reutilized for Cultivating a Baker's Yeast : Automatic Addition of Ammonium with pH-stat (알콜증류폐액을 이용한 빵효모배양에서 Glucose와 Ammonium의 자동첨가에 의한 종균 : pH-stat 방법에 의한 Ammonium의 자동첨가)

  • 이형춘
    • KSBB Journal
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    • v.15 no.2
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    • pp.134-138
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    • 2000
  • Addition of carbon and nitrogen source to an alcohol distillery wastewater was tried to increase the cell concentration of a b baker's yeast cultivated in that wastewater. Carbon was found to be primary limiting nutrient and nitrogen secondary limiting o one. Glucose addition increased the cell concentration 1.3 times higher than no addition, and both glucose and $(NH_4)_2S0_4$ a addition did 5.8 times. A fed-batch cultivation by the automatic addition of glucose and ammonium was executed. Added g glu$\infty$se was automatically controlled to low concentration by a method using DO as control parameter. Ammonium was a automatically added as NH40H used as pH $\infty$ntrol agent after initiating glucose addition. By this simple cultivation method t the cell concentration $\infty$내d be efficiently increased from 2.6g/L to 12.0g/L, and maximum specific growth rate and biomass y yield to glu$\infty$se were $0.18hr^{-1}$ and about 0.54g/g respectively. By increasing cell concentration, COD of the wastewater m media could be additionally reduced by about 22%.

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