• Title/Summary/Keyword: methylotroph

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Adaptive On-line Optimization of Cellular Productivity of Continuous Methylotroph Culture (메타놀자화균의 연속배양에 의한 균체생산의 온-라인 적응최적화)

  • 이형춘;박정오
    • The Korean Journal of Food And Nutrition
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    • v.1 no.2
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    • pp.31-36
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    • 1988
  • An adaptive on-line optimization method has been applied to test the ability to maximize the cellular productivity of a continuous methylotroph culture system which was simulated by a variable yield Monod-type model. Optimum dilution rate and productivity were successively obtained and maintained at all times by the algorithm that utilizes steepest descent technique as optimization method and recursive least-square method with forgetting factor as dynamic model identification.

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Isolation and Characterization of a Methylotroph Producing 3-hydroxybutyrate-3-hydroxyvalerate Copolymer

  • JUNG HOE KIM;KIM, PIL;SEON WON KIM;GYUN MIN LEE;HYUN SOO LEE
    • Journal of Microbiology and Biotechnology
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    • v.5 no.3
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    • pp.167-171
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    • 1995
  • A bacterial strain C-02 using methanol as a carbon source was isolated from Gumi Industrial Estate and selected based on its rapid growth and capability of poly-$\beta$-hydroxybutyrate accumulation. Characteristics of strain C-02 showed that it belongs to the Methylococcaceae family, Type II subgroup. Strain C-02 could incorporate valerate into the PHB chain to form 3-hydroxybutyrate and 3-hydroxyvalerate (P(3HB-co-3HV)). Among various nutrient limitation tests, the nitrogen limitation test resulted in the highest content of P(3HB-co-3HV) per dry cell weight, 50$%$. Under the nitrogen limited condition, the average molecular weight of P(3HB-co-3HV) obtained was determined to be approximately $2.8\times 10^5$ daltons.

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Biodeodorization of Trimethylamine by Earthworm Cast Bioflter (분변토 Biofilter를 이용한 Trimethylamine의 제거)

  • Kim, Song-Gun;Lee, Sung-Taik
    • Journal of the Korea Organic Resources Recycling Association
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    • v.4 no.2
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    • pp.71-75
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    • 1996
  • A bacterium, capable of the degradation of trimethylamine(TMA), dimethylamine, and methylamine, was isolated from an enrichment culture on TMA basal mineral medium. The isolate was identified as Methylobacterium some carbon-carbon bonds compounds like malate, succinate, betaine. When the strain was immobilized to earthworm cast, the biofilter could remove the gaseous TMA of SV $30h^{-1}$, concentration of 120ppm, continuously.

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고점성 신규 생물고분자, methylan

  • 김정회;최준호
    • The Microorganisms and Industry
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    • v.18 no.1
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    • pp.59-63
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    • 1992
  • 값이 저렴한 메탈올로부터 새로운 고점도성 생물고분자인 다당류의 생산과 활용은 산업적으로도 매우 흥미있는 분야이다. 본고에서는 최근 본 연구실에서 개발한 메탄올 자화세균(facultative methylotroph)인 Methylobacterium organophilum이 생산하는 신규의 고점성 다당류인 메틸란(methylan)의 생산 및 그 특성과 응용에 관하여 고찰하고자 한다.

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Production of Single-Cell Protein from Methanol (Part 1) Isolation of Methanol-Utilizing Microorgamism and Composition of Medium (Methanol을 이용한 단세포단백질의 생산에 관한 연구 (제 1 보) Methanol 이용 미생물의 분리 및 배지조성)

  • 유주현;정건섭;변유량
    • Microbiology and Biotechnology Letters
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    • v.7 no.2
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    • pp.65-70
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    • 1979
  • By the successive enrichment culture, methanol-utilizing bacteria of 213 strains were isolated from soil samples collected from various places. Among them one strain showing excellent growth was selected. The organism isolated was obligate methylotroph and identified as Methylomonas methanolica on the basis of its mophological and physiological characteristics of the cell. The medium have been to be collected for the maximum biomass productivity. The microorganism was capable of growing satisfactorily on a medium containing only methanol 0.8% (v/v), ammonium sulfate 0.6%, magnesium sulfate 0.1%, phosphate salts, but did not require growth factor.

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Effect of C/N Ratio on the Production of Poly(3-hydroxyalkanoates) by the Methylotroph Paracoccus denitrificans

  • Kim, Byung-Ki;Yoon, Sung-Chul;Nam, Jae-Do;Lenz, Robert-W.
    • Journal of Microbiology and Biotechnology
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    • v.7 no.6
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    • pp.391-396
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    • 1997
  • Two series of carbon sources, linear primary $C_1$~$C_9$ alcohols and linear $C_2$~$C_{10}$ monocarboxylic acids were tested for PHA synthesis in Paracoccus denitrificans. The results showed that the growth-associated synthesis of PHA could be referred only to the carbon sources with odd number of carbon except methanol. For all carbon sources with even number of carbon, nitrogen limitation was required to induce PHA synthesis in P. denitrificans. Poly(3-hydroxyvalerate)[P(3HV)] homopolymer was synthesized from $C_5$, $C_7$, and $C_9$ while growing in the presence of nitrogen, but the nitrogen depletion in the later growth period incorporated 3-hydroxybutyrate(3HB) unit into the polymer chain. The optimum C/N ratio for P(3HV) homopolymer production was found to be 10 when the strain was grown on 10 ml/l of valeric acid for 96 h. P. denitrificans synthesized P(3HB-co-3HV) copolymers from n-hexanoic and n-octanoic acid. The microstructural characterics of the P(3HB-co-3HV) copolymer from n-propanol was investigated using $^13C$-nuclear magnetic resonance spectroscopy, showing a structural heterogeneity.

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Adverse Effect of the Methanotroph Methylocystis sp. M6 on the Non-Methylotroph Microbacterium sp. NM2

  • Jeong, So-Yeon;Cho, Kyung-Suk;Kim, Tae Gwan
    • Journal of Microbiology and Biotechnology
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    • v.28 no.10
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    • pp.1706-1715
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    • 2018
  • Several non-methylotrophic bacteria have been reported to improve the growth and activity of methanotrophs; however, their interactions remain to be elucidated. We investigated the interaction between Methylocystis sp. M6 and Microbacterium sp. NM2. A batch co-culture experiment showed that NM2 markedly increased the biomass and methane removal of M6. qPCR analysis revealed that NM2 enhanced both the growth and methane-monooxygenase gene expression of M6. A fed-batch experiment showed that co-culture was more efficient in removing methane than M6 alone (28.4 vs. $18.8{\mu}mol{\cdot}l^{-1}{\cdot}d^{-1}$), although the biomass levels were similar. A starvation experiment for 21 days showed that M6 population remained stable while NM2 population decreased by 66% in co-culture, but the results were opposite in pure cultures, indicating that M6 may cross-feed growth substrates from NM2. These results indicate that M6 apparently had no negative effect on NM2 when M6 actively proliferated with methane. Interestingly, a batch experiment involving a dialysis membrane indicates that physical proximity between NM2 and M6 is required for such biomass and methane removal enhancement. Collectively, the observed interaction is beneficial to the methanotroph but adversely affects the non-methylotroph; moreover, it requires physical proximity, suggesting a tight association between methanotrophs and non-methylotrophs in natural environments.

Isolation and Characterization of a Restricted Facultatively Methylotrophic Bacterium Methylovorus sp. Strain SS1 (제한통성 메탄올자화세균인 Methylovorus sp. Strain SS1의 분리 및 특성)

  • Seo, Sung A.;Kim, Young M.
    • Korean Journal of Microbiology
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    • v.31 no.3
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    • pp.179-183
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    • 1993
  • A restricted facultatively methanol-oxidizing bacterium, Methylovorus sp. strain SS1, was isolate dfrom soil samples from Kuala Lumpur, Malaysia, through methanol-enrichment culture technique. The isolate was nonmotile Gram-negative rod and did not have complex internal membrane system. The colonies were small, pale-yellow, and raised convex with entire margin. The cell did not produce any spores and capsular materials. The cell was obligately aerobic and exhibited catalase, but no oxidase, activity. Plasmid, carotenoid pigment, and poly-.betha.-hydroxybutyric acid were not found. The guanine plus cytosine content of the DNA was 55%. The isolate was found to grow only on methanol methylamine, or glucose. Growth factors were not required. Cells growing on methanol was found to produce extracellular polysaccharides containing glucose, lactose, and fructose. Growth was optimal (t$_{d}$= 1.7) with 0.5%(v/v) methanol at 40.deg.C and pH 6.5. No Growth was observed at over 60.deg.C. Cell-free extracts of the methanol grown cells exhibited the phenazine methosulfate-linked methanol dehydrogenase activity Methanol was found to be assimilate dthrough the ribulose monophosphate pathway.y.

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Producyion of Threonine Using Methanol Dehydrogenase and Serine Hydroxyltransferase in a New Methylotrophic Bacterium KJ29 (New Methylotrophic Bacterium KJ29의 Methanol Dehydrogenase와 Serine Hydroxymethyltransferase를 이용한 Threonine의 생산에 관한 연구)

  • 김경자
    • Microbiology and Biotechnology Letters
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    • v.21 no.6
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    • pp.577-581
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    • 1993
  • The amino acid threonine was produced from glycine and ethanol in a reaction mixture using cell free extract of the methylotrophic bacterium isolated from soil and identified as mellthylo-bacterium sp. KJ29. Although the isolate could grow on carbon source other than methanol, only the cell free extract from the cells grown on methanol produced threonine. Methanol dehydrogenase (MDH) activity was present only in the cells grown on methanol when compared to the cells grown on heterotrophic substrates.

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Characterization of a Heavy Metal-Resistant and Plant Growth-Promoting Rhizobacterium, Methylobacterium sp. SY-NiR1 (중금속 내성 및 식물 생장 향상 근권세균 Methylobacterium sp. SY-NiR1의 분리 및 특성)

  • Koo, So-Yeon;Cho, Kyung-Suk
    • Microbiology and Biotechnology Letters
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    • v.35 no.1
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    • pp.58-65
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    • 2007
  • The role of soil microorganisms, specifically rhizobacteria, in the development of rhizoremediation techniques is important to speed up the process and to increase the rate of mobilization or absorption of heavy metals to the plant. In this study, Methylobacterium sp. SY-NiR1 was isolated from the rhizosphere soils of plants in oil and heavy metal-contaminated soil. Based on its pink pigmented colony, rod-shape cells, and belonging in $\alpha-Proteobacteria$, Methylobacterium sp. SY-NiR1 is considered a pink-pigmented facultative methylotroph. SY-NiR1 had the ability to produce indole acetic acid which is one of phytohormones. This bacterium showed resistance against multiple heavy metals such as Cd, Cr, Cu, Pb, Ni, Zn, and the order of its resistance based on $EC_{50}$ was Zn > Ni > Cu > Pb > Cd > Cr. Therefore, Methylobacterium sp. SY-NiR1 can stimulate seed germination and plant growth in soil contaminated with heavy metals.