• Title/Summary/Keyword: Cellulomonas protoplast

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Studies on the Protoplast Formation of Cellulomonas flavigena and its Observations under Scanning Electron Microscope (Cellulomonas flarigena의 원형질체 형성과 주사전자현미경적 연구)

  • Bae, Moo;Lee, Eun-Ju
    • Microbiology and Biotechnology Letters
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    • v.14 no.2
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    • pp.175-179
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    • 1986
  • In order to develope a protoplast fusion of the genus Cellulomonas having high assimilibility of cellulose, the optimum conditions for the protoplast formation of Cellulomonas flavigena NCIB 12901 was investigated and observed by means of Scanning Electron Microscope. The results suggested that the susceptibility of the cell wall by lysozyme treatment on protoplast formation was considerably depend on the cultural periods of the cells. Cells of C. flavigena at mid exponential phase could more efficiently convert to protoplast cells than those at late exponential phase did. The rate of the protoplast formation was 95%, even though the rate was over 99.9% on counting by indirect method after osmotic shock treatment, when cells of the organism at mid exponential phase were treated with lysozyme (400$\mu\textrm{g}$/$m{\ell}$) for 6 hours and observed by SEM. In the evaluation of protoplast formation of the genus Cellulomonas, direct method of the observation under Scanning Electron Microscope was much more reliable than the counting method of protplasts after osmotic shock treatment. Because defferences between the number of spheroplast and protoplast were not able to be figured out on counting the number of protoplast after osmotic shock treatment.

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Physiological Characteristics of Fusants by Interspecific Protoplast Fusion of the Genus Cellulomonas (Cellulomonas 속 종간 원형질 융합체의 특성)

  • Bae, Moo;Lim, Jung-Hwa
    • Korean Journal of Microbiology
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    • v.28 no.1
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    • pp.47-54
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    • 1990
  • In order to investigate physiological characteristics of fusants by interspecific protoplast fusion of the genus Cellulomonas, protoplasts of Cellulomonas flavigena NCIB 12901 and Cellulomonas bibula NCIB 8142 were fused and cell wall regenerated. To give gene maker, C. bibula was treated with 500 ug/ml NTG for 1 hr and arginine requiring auxotrophic mutants were isolated. Protoplasts of the genus Cellulomonas were obtained by treatment with $600{\mu}{\textrm{g}}$/ml lysozyme, and 0.5M sorbitol was optimal for osmotic stabilizer on protoplast fromation. Protoplast fusion was enhanced by 40% PEG)M.W.6,000) containing 25 mM $CaCl_{2}$ at $30^{\circ}C$ for 30 min and fusion frequency between C. bibula and C. flavigena was $5\times 10^{-4}$. Processes of protoplast formation, cell wall regeneration and protoplast fusion were obsdrved by scanning electron microscope. By comparing enzyme activities of cellulase, exocellobiohydrolase, .betha.-glucosidase of the parent strains of Cellulomonas with those of thier mutants and fusants, fusants with increased enzyme activity were obtained. By the studies on nutritional requirement, antibiotic resistance, cellulolytic enzyme activities, type of peptidoglycan and motility of two mutants and fusants, fusants were proved to be recombinant of both mutant strains.

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Interspecific Variation in the Protoplast Formation of the Genus Cellulomonas (Cellulomonas속 종간의 원형질체 형성조건의 차이에 대하여)

  • Lee, Eun-Ju;Bae, Moo
    • Korean Journal of Microbiology
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    • v.24 no.2
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    • pp.154-160
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    • 1986
  • In order to develope interspecific fusion of the genus Cellulomonas capable of assimilation cellulose, the optimun conditions for the protoplast formation was investigated to examine the susceptibility of cell wall, between different species of the same genus using scanning electron microscope. The variation in the susceptibilities of Cellulomonas sp. CS 1-1 and C. flavigena to lysozyme treatment were considerably remarkable, although they belong to the same genus. The rate of protoplast formation of CS1-1 was 99.9% being treated with lysozyme $(100{\mu}g/ml)$ for 30 minute and that of C. flavigena was about 80% being treated at the concentration of $600{\mu}g/ml$ of lysozyme for 6 hours. The susceptibility of cell wall to the lysozyme treatment on protoplast formation of the strain, CS1-1 seems not to be depend on the cultural periods of cells. On the contrary, that of C. flavigena was considerably depend on the periods. Cells of C. flavigena at mid exponential phase could be more efficiently converted to protoplast cells than those at late exponential phase be done. The rate of the protoplast formation was 95%, when cells of C. flavigena at mid exponential phase were treated with lysozyme $600{\mu}g/ml$ for 6 hours and observed by SEM. In the evalution of protoplast formation of the CS1-1 results of counting method in plate after osmotic shock treatment were similar to the results of the direct observation method by means of SEM. But in the case of C. flavigena the latter method was much more reliable than the former, because the differences between the number of spheroplasts and protoplasts were not able to figure out on conuting the number of protoplast after osmotic shock tretment.

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Intergeneric protoplast fusion between Bacillus pumilus and Cellulomonas fimi

  • Kim, D.M.;Lee, K.H.
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1986.12a
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    • pp.528.1-528
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    • 1986
  • Cellulose utilising hybrids between Cellulomonas fimi and Bacillus pumilus were isolated after PEG mediated protoplast fusion. 33% (w/v) PEG #6, 000 and 50mM $Ca^{++}$were optimum concentration. The intergeneric fusion frequency was 3.2$\times$10$^{-7}$ xtracellular CMCase and $\beta$-glucosidase activities were detected from one hydrid unlike only CMCase was detected from Cellulomonas fimi.

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Protoplast Regeneration and Interspecific Fusion of the Genus Cellulomonas (Cellulomonas속 원형질체 재생과 종간 융합조건)

  • Bae, Moo;Cho, Bo-Yeon
    • Microbiology and Biotechnology Letters
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    • v.16 no.4
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    • pp.303-309
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    • 1988
  • In order to establish the process of interspecific protoplast fusion of the genus Cellulomonas capable of utilizing of cellulose, C. flavigena NCIB 12901 and Cellulomonas sp. CSI-1, the optimum conditions for the regeneration and fusion were examined. The condition of suitable osmotic stabilizer for the protoplast regeneration of C. flavigena was established by using 0.4M sorbitol. And then, by addition of 3% po]yvinyl pyrrolidone (PVP) to cell wall regeneration medium, regeneration frequency was increased 3 times higher than that without PVP addition. The optimum conditions for the interspecific protoplast fusion between auxotrophic and antibiotics resistant mutants were obtained with 40%(W/V) of PEG (polyethylene glycol) 6000 as the fusogenic agent and 25mM of CaCl$_2$on treating time for 15 min. The fusion frequency between mutants was from 2.0$\times$10$^{-4}$ to 4.0$\times$10$^{-4}$ under the optimum conditions. The fusants were confirmed to revert from protoplast to cells of rod type during regeneration process and the aggregation of protoplast by PEG was observed. Also the progress of fusion was observed by scanning electron microscopy, Many isolated fusants were shown to be complement clones of both parents which occured at a high frequency among the isolated clones.

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Exprission of cellulomonas biazotea cellobiase gene in E. coli (Cellulomonas biazotea cellobiase gene의 대장균에의 형질발현)

  • 박영길;연창석;최영길
    • Korean Journal of Microbiology
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    • v.26 no.1
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    • pp.6-12
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    • 1988
  • Cellobiase ($\beta$-glucosidase) is an enzyme of the cellulase system in cellulolytic microor-ganisms. The chromosomal DNA fragment which include cellobiase gene of Cellulomonas biazotea was cloned in Eschericia coli via plasmid pBR 322 vector. Restriction enzyme Sal I was used to obtain adequate size of fragments from C. biazotea. chromosomal DNA. The transformant of E. coli HB101 with recombinant plasmid pBG101 showed cellobiase activity, which is not ordinary in E. coli HB101. The enzyme activity of the transformant was as of 20% lower than that of C. biazotea.

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Development of L-Lysine Producing Strains from Cellulosic Substrate by the Intergeneric Protoplast Fusion - Conditions for Fusion and Properties of Fusants- (속간 원형질체 융합에 의한 섬유질 기질로부터 L-Lysine 생산균주 개발 -융합조건 및 융합체의 성질 -)

  • 성낙계;정덕화;박법규;정영철;전효곤
    • Microbiology and Biotechnology Letters
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    • v.16 no.3
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    • pp.175-181
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    • 1988
  • To produce L-lysine from cellulosic substrate, the intergeneric protoplast fusion between Cellulomonas flavigena and Corynebacterium glutamicum, Cellulomonas flavigena and Brevibacterium flavum was performed. The fusion frequencies were 1.9$\times$10$^{-6}$ to 2.1$\times$10$^{-6}$ for the regenerated protoplasts when two parental strains were treated with 30% of polyethyleneglycol (M.W.6000) containing 5 mM EDTA at 3$0^{\circ}C$ for 30 min. Two fusants, FCB3 and FCC 19 were finally selected by comparision of their genetic stability and L-lysine productivity. The properties of fusants-DNA con-tent, G+C content and L-lysine productivity-were investigated. The DNA content of fusants was greater than those of the parental strain and their G+C contents are equal to half of total G+C con-tent of two parental strains. The fusants showed high productivity of L-lysine from carboxy methyl cellulose as substrate.

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Development of L-Lysine Producing Strains from Cellulosic Substrate by the Intergeneric Protoplast Fusion- Conditions for Formation and Regeneration of Protoplast - (속간 원형질체 융합에 의한 섬유질 기질로부터 L-lysine 생산균주 개발 -원형질체의 형성 및 재생 -)

  • 성낙계;정덕화;이무영;정영철
    • Microbiology and Biotechnology Letters
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    • v.16 no.2
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    • pp.150-155
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    • 1988
  • In order to produce L-lysine from cellulosic substrates by the intergeneric protoplast fusion between cellulolytic bacteria, Cellulomonas flavigena KFCC31221 and amino acid producing bacteria, Brevibacterium flavum ATCC14067, Corynebacteriurn glutamicum ATCC13032, conditions for protoplast formation and regeneration of these strains were investigated. After the strains were mutated with 500$\mu\textrm{g}$/$m\ell$ N-methyl-N'-nitro N-nitrosoguanidine for 30 min and the mutants were enriched by treating 300$\mu\textrm{g}$/$m\ell$ penicillin-G for 2 hrs, B. flavum Hse- Str$^{r}$ , C. glutamicum Met$^{-}$Thr$^{-}$ Rif$^{r}$ and Cellulomonas flavigena Thr$^{-}$Val$^{-}$Kan$^{r}$ were isolated. The rate of protoplast formation ranged from 95 to 98% when strains were treated at the concentration of 500$\mu\textrm{g}$/$m\ell$ of lysozyme, pH 6.5, 33$^{\circ}C$, for 6 hrs. in Tris- malate buffer supplemented with 0.4M sucrose as osmotic stabilizer. Approximately 30-33% protoplast was regenerated on the regeneration complete medium(RCM) containing 1.5% agar and 0.5M sodium succinate overlaid with the same medium except 0.7% agar.

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Genetic Recombination by Protoplast Fusion of Cellulomonas sp CS 1-1 (원형질체 융합법에 의한 cellulomonas sp. CS 1-1의 유전자 재조합)

  • 김병홍;이학주
    • Korean Journal of Microbiology
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    • v.23 no.4
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    • pp.309-314
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    • 1985
  • Autoxotrophic mutants of a cellulolytic baterium Cellulomonas sp. CS 1-1 were grown at $30^{\circ}C$ for 6hr using a complete medium containing 0.5M sucrose and for another 90 min after addition of 0.3 U/ml penicillin G, and were protoplasted by 0.2mg/ml lysozyme for 2hr. Prototrophic recombinants were obtained at the rates of $10^{-3}$ to $10^{-5}$by fusing the protoplasts in the presence of 40% polyethyleneglycol3350. Nystatin could be used to eliminate fungal contamination during the regeneration of the plotaplasts.

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Factors affecting the protoplast formation and regeneration of Bacillus pumilus and Cellulomonas fimi for intergeneric protoplast fusion

  • Kim, D.M.;Lee, K.H.
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1986.12a
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    • pp.527.3-527
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    • 1986
  • Several factors predicted to affect the protoplast formation and regeneration were investigated. The optimum lysozyme, casamino acid and PVP concentration were 0.5 (mg/$m\ell$), 0.1 (%) and 1.5(%). In B. pumilus, Penicillin-G treatment concentration was 0.3 (U/$m\ell$) and optimum treatment period was transit log. phase. And in the case of Celm. fimi, 0.3 (U/$m\ell$) and initial log. phase. Osmotic stabilizer and di-cation for OSM medium of B.pumilus and Gelm .fimi were 25mM CaCl2, 0.5M sodium sucinate and 50mM MgCl$_2$, 100mM CaCl$_2$, 0.4M sodium succinate. The regeneration frequency of B.pumilus and Celm. fimi were 14.6(%) and 6.9(%).

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