• Title/Summary/Keyword: osmotic stabilizer

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Formation and Regeneration of protoplasts by Novozym 234 from Kluyveromyces fragilis N100 and Candida pseudotropicalis CBS607 (Novozym 234에 의한 Kluyveromyces fragilis N100과 Candida pseudotropicalis CBS607의 원형질체 형성과 재생)

  • Bai, Suk;Chun, Soon-Bai
    • Korean Journal of Microbiology
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    • v.22 no.1
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    • pp.49-56
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    • 1984
  • Formation and regeneration of protoplasts by Novozym 234 from Kluyveromyces fragilis N100 and Candida pseudotropicalis CBS607 were studied. This enzyme was more effective on cells grown at exponential phase than those at stationary one to convert intact cells into protoplasts. As osmotic stabilizer, ammonium sulphate was suitable for not only protoplast formation but also regeneration in K. fragilis as well as in C. pseudotropicalis. Optimal enzyme concentration was 3mg per ml in K. fragilis and 1~3mg per ml in C. pseudotropicalis, respectively. After the exposure of K. fragilis cells to 3mg per ml of enzyme for 3hr at 30$^{\circ}C$ , approximately 95% of protoplast formation of all observed cells was obgained, while about 100% from C. pseudotropicalis under the same condition was produced. The regeneration frequency of protoplasts by this enzyme was much lower than that by snail enzyme(Glusulase) although Novozym 234 converted cells from above two species into protoplasts free of cell debris effectively, compared with Glusulase. Novozym 234 appears to be suitable for subcellular fractionation to obtain nuclei or other organelles rather than protoplast regeneration.

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Studies on Protoplast Formation and Regeneration of Lyophyllum decastes (Lyophyllum decastes의 원형질체 분리와 재생에 관한 연구)

  • Bok, Jin-Woo;Kim, Jong-Pil;Jin, Mi-Rim;Choi, Eung-Chil;Kim, Byong-Kak
    • The Korean Journal of Mycology
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    • v.22 no.2
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    • pp.130-137
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    • 1994
  • This experiment was carried out to investigate proper conditions for protoplast isolation and regeneration from mycelia of Lyophyllum decastes. Novozym 234(10 mg/ml) with 0.6 M $MgSO_4$ in phosphate buffer(pH 4.0) was proper for protoplast isolation. The optimal reaction time of the mycelium with the lytic enzyme was four hours in shaking condition at 120 strokes per min. When the mycelium of L. decastes was cultured at $24^{\circ}C$ for 5 days, the formation of protoplasts was effective. The liquid medium was more effective for protoplast isolation than the solid medium. In the liquid medium, high yields of protoplasts were obtained from 0.6 M $MgSO_4$ osmotic stabilizer. Protoplasts of L. decastes were regenerated to normal hyphal growth and the regeneration frequency of the protoplasts in the complete agar medium containing Triton X-100(0.0025%) was $5.94{\sim}8.32%$. The regeneration medium stabilized with 0.6 M sucrose was the best for regeneration of the protoplasts. In contrast to protoplast formation, regeneration was inhibited by the inorganic salts used as osmotic stabilizer.

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Studies on Protoplast Isolation of Pleurotus cornucopiae (노랑느타리버섯의 원형질체(原形質體) 분리(分離)에 관한 연구(硏究))

  • Lee, Yeon-Hee;Park, Yong-Hwan;Yoo, Young-Bok;Min, Kyung-Hee
    • The Korean Journal of Mycology
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    • v.14 no.2
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    • pp.141-148
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    • 1986
  • The optimal conditions for high yields of mycelial protoplasts from P. cornucopiae were established. The concentraion of enzyme system containing Novozym 234, ${\beta}-D-glucanase$ and ${\beta}-glucuronidase$ was $5mg\;ml^{-1}$ each. The osmotic stabilizer most effective for protoplast isolation was O.6 M sucrose. The optimal reaction time of mycelium with the lytic mixture was 90 min in a shaking condition at 120 strokes $min^{-1}$. When the myelium of P. cornucopiae was cultured for 4 days on mushroom complete medium at $28^{\circ}C$, the formation of protoplast was effective. When the pH of the digestion mixture with O.6 M sucrose as stabilizer varied between pH 4.0 and 7.0, the production of protoplasts was effective in phosphate buffer (pH 6.2) and Na-maleate buffer (pH 5.0). Generally, phosphate buffer was more effective for protoplast isolation than Na-maleate buffer, but 0.6 M sucrose osmotic stabilizer without adjusting pH was most effective. Using these conditions, protoplasts from P. cornucopiae were obtained at a ratio $1{\times}10^7\;ml^{-1}$.

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Formation of protoplasts from pyricularia oryzae (벼 도열병균, pyricularia oryzae의 원형질체 형성)

  • 이용환;정후섭
    • Korean Journal of Microbiology
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    • v.23 no.3
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    • pp.209-214
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    • 1985
  • The optimum conditions of protoplasts formation from Pyricularia oryzae were investigated with lytic enzymes and osmotic stabilizers. The mycelia were begun to refease the protoplasts in response to the complex enzyme solution after 30-60 minutes and reached to maximum after 2-3hrs. Among the lytic enzymes tested, the mixture solution containing ${\beta}-Glucuronidase$(0.01 ml/ml), Cellulase ONOZUKA-RS(20mg/ml), Driselase (10mg/ml), and Macerozyme R-10 (10mg/ml) resulted in the highest rate of protoplasts releasing of Pyricularia oryzae. The best stabilizer was 0.6M KCl at pH 7.0. Shen the mycelia were digested with enzyme mixture, the stationary culture was better than shaking culture for higher protoplast formation.

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Interspecific Protoplast Fusion between Fusarium poae and Fusarium sporotrichioides (Fusarium poae와 Fusarium sporotrichioides간의 원형질체 융합)

  • 하경란;장성렬;민병례
    • Korean Journal of Microbiology
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    • v.29 no.2
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    • pp.123-129
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    • 1991
  • In order to develop the protoplast fusion method of the strains of Fusarium, the interspecific protoplast fusion was attempted between Fusarium poae and F. sporotrichioides. Various auxotrophic mutants were isolated by the treatment of N-Methyl-N'-Nitro-N-Nitrosoguanidine. The optimal conditions for the formation and regeneration of protoplasts were examined and the characteristics of a fusant were studied. As a results, protoplasts were readily obtained from 18 hours cultured mycelia by the treatment of driselase for 3 hours and 0.6 M KCl as a best osmotic stabilizer at pH 6.0 for the formation of protoplast. Sucrose was the most suitable for the regeneration. Polyetylene glycol (M.W. 8,000) in $CaCl_{2}$-glycine solution was used to induce the protoplast fusion. The interspecific fusion frequency between protoplasts among the auxotrophic mutants of the two strains ranged from $2.7*10^{-2}$ to $5.7*10^{-3}$ . DNA content and cellulase activity were rather increased in the interspecific fusant. The lag phase of growth curve was slightly elongated in the fusant.

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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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Effect of electrochemical treatment on consolidation of soft clay

  • Li, Xiaobing;Yuan, Guohui;Fu, Hongtao;Wang, Jun;Cai, Yuanqiang
    • Geomechanics and Engineering
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    • v.15 no.4
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    • pp.957-964
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    • 2018
  • In this study, a method of electrochemical consolidation is applied. This method utilizes electro-osmosis, which is an effective ground improvement technique for soft clays, and soil treatment using lime, which is the oldest traditional soil stabilizer. The mechanism of lime treatment for soil involves cation exchange, which leads to the flocculation and agglomeration. Five representative laboratory tests-an electro-osmotic test and four electrochemical tests with various proportions of lime-were performed on dredged marine clay. The objectives of this study are to investigate the effect of electrochemical treatment and to determine the optimum dose for optimal consolidation performance of dredged marine clay. The results show that a better consolidation effect was achieved in terms of current, temperature, and vane shear strength by using electrochemical treatment. The best results were observed for the electrochemical test using 4% lime content.

Interspecific protoplast fusion of trichoderma koningii and trichoderma reesei (Trichoderma koningii와 trichoderma reesei 원형질체 융합)

  • 박희문;정종문;홍순우;하영칠;성치남
    • Korean Journal of Microbiology
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    • v.24 no.2
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    • pp.91-97
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    • 1986
  • Intra and interspecfic fusants were produced by the protoplast fusion of auxotrophic mutants from Trichoderma koningii ATCC 26113 and Trichoderma reesei QM 9414. It was found that 0.6M $MgSO_4\;and\;0.6M\;NH_4Cl$ was the best osmotic stabilizer for the preparation of protoplasts from the mycelium of T. koningii and T. reesei respectively. However, $MgSO_4$ was the most suitable one for the regeneration of the protoplasts from both species. The intraspecific protoplast fusion frequencies between the auxotrophic mutants from T. reesei were $1.8{\times}10^{-2}\;to\;5.1{\times}10^{-1}$. Interspecific protoplast fusion frequencies between the auxotrophic mutants from T. koningii and T. reesei were $3.6{\times}10^{-3}$\;to\;8.4{\times}10^{-2}. Interspecific complementing fusants, however, were not alwats produced. Fusants obtained from interspecific potoplast fusion were spontaneously segregated into various strains including parental types, non-parental auxotrophic hybrids, and prototrophic hybrids on complete plate. Interspecific hybrids revealed to have partially enhanced celluloytic activities.

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Optimum Conditions of pH and Ca2+ Concentration for Electrofusion of Tobacco Protoplasts (담배 워형질체의 전기융합을 위하 pH 및 Ca2+ 농도 최적조건 설정)

  • 오인숙;소상섭;김환규
    • KSBB Journal
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    • v.13 no.4
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    • pp.399-403
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    • 1998
  • This study was carried out to optimize the concentration of Ca2+ and pH of fusion medium which affected electrofusion frequency of protoplasts isolated from Nicotiana tabacum L. (cv. BY4) mesophyll cells and callus. The protoplasts were electrofused in the fusion media containing two different Ca2+ concentrations and three different pH regions. Fusion frequency was lower in the fusion medium containing only 13% mannitol as osmotic stabilizer. However, higher degree of fusion frequency (47.3%) was observed in the fusion medium containing 50mM CaCl2 at pH 10.5 than any other conditions. Cell viability was decreased by Ca2+ and high pH treatment in the fusion media, while fusion frequency was increased. It is concluded that Ca2+ is involved in electrofusion of protoplasts.

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Protoplast Formation and Regeneration of Pediococcus pentosaceus and Leuconostoc mesenteroides Isolated from Kimchi (김치에서 분리한 Pediococcus pentosaceus와 Leuconostoc mesenteroides의 원형질체 형성 및 재생)

  • 김연희;박연희
    • Microbiology and Biotechnology Letters
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    • v.23 no.3
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    • pp.359-364
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    • 1995
  • Two lactic strains, Leuconostoc mesenteroides Lu5 and Pediococcus pentosaceus P1 isolated from Kimchi, were used to determine the optimum conditions for protoplast formation and regeneration. The maximum protoplast formation rate was obtained with both strains at early exponential growth phase and decreased rapidly during growth phase. For P. pentosaceus P1, 30 $\mu$g/ml of lysozyme treatment was sufficient to obtain over 90% of protoplast formation and 300 $\mu$g/ml for L. mesenteroides Lu5, showing great difference in sensitivity of these strains to lysozyme. For both strains, best results were obtained at pH 7, using 0.5 M sucrose as osmotic stabilizer. For regeneration of protoplast, the highest regeneration rate was obtained after 15 minutes of lysozyme treatment and declined drastically with prolonged digestion.

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