• Title/Summary/Keyword: Protoplast fusant

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Optimum Conditions for the Protoplast Formation of Lactobacillus plantarum and Leuconostoc mesenteroides (Lactobacillus plantarum과 Leuconostoc mesenteroides의 Protoplast 생성의 최적 조건)

  • 전억한;박범식조재선
    • KSBB Journal
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    • v.9 no.2
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    • pp.191-199
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    • 1994
  • Protoplasts of both strains were produced by lysozyme digestion at $30^{\circ}C$ for 180min. Both strains were treated with $40{\mu}g$/ml of lysozyme in 30mM Tris-HCl buffer(pH 7.5) containing 10% sucrose at the late logarithmic growth phase. It was found that the efficiency of protoplast formation was high at $30^{\circ}C$ and pH 7.5 by measuring the decrease in absorbance. Optimum concentrations of sucrose $Ca^{2+}, \;Mg^{2+}$ for protoplast formation were determined to be 15%, 20mM and 6mM, respectively. Hydrolysis of cell wall and protoplast formation efficiency for L. plantarum showed better results than those for Leu. mesenteroides. The resistances to antibiotics erythromycin and chloramphenicols were chosen as the selection marker for the fusant between L. plantarum and Leu. mesenteroides. Production phase of protoplast in Leu. mesenteroides was also compared with L. plantarum in this paper.

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L-Methionine Production by Protoplast Fusion of Brevibacterium flavum ATCC 14067 and Corynebacterium glutamicum ATCC 13032 (Brevibacterium flavum ATCC 14067과 Corynebacterium glutamicum ATCC 13032의 원형질체 융합에 의한 L-Methionine의 생산)

  • Bin, Jae-Hoon;Chung, Soo-Ja;Shin, Dong-Bun;Ryu, Beung-Ho
    • Korean Journal of Food Science and Technology
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    • v.23 no.5
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    • pp.561-567
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    • 1991
  • This study was designed to investigate the productivity of L-methionine by the method of protoplast fusion between Brevibacterium flavum ATCC 14067 and Corynebacterium glutamicm ATCC 13032, and then L-methionine production was performed to continuous fermentation using the immobilized fusant cells. Mutants B. flavum K 104($thr\;met\;Km^{r}\;Et^{r}\;Sm^{r}\;Tm^{r}\;as\;genetic\;marker$) and C. glutamicum B 70($thr\;Hos\;Km^{r}\;Et^{r}\;Sm^{r}\;Tm^{r}as\;genetic\;marker$) were isolated by MNNG treatment. On the other hand, protoplast of mutants were formed to treat with lysis solution containing $500{\mu}g/ml$ of lysozyme. The ratios of protoplast formation and regeneration were 99% and $64{\sim}66%$ respectively. Fusion frequency between B. flavum K 104 and C. glutamicum B 70 showed the $3.5{\times}10^{5}$ in the 35% polyethylene glycol(PEG6000) containing 3% PVP solution. The productivity of L-methionine by fusant BFCG 37 immobilized with sodium alginate was 0.89 g/l the batch fermentation and was $18.75mg/^{1}hr\;^{1}$ on the continuous fermentation at $30^{\circ}C$ for 72 hr.

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Intraspecific Protoplast Fusion of Brevibacterium and Intergeneric Protoplast Fusion between Brevibacterium flavum and Corynebacterium glutamicum and the Metabolic Control of L-Lysine Biosynthesis in Improved Bacterial Strains (Brevibacterium flavum의 동종간 및 Corynebacterium glutamicum과의 이속간 원형질체 융합 및 개량균주의 L-Lysine 생합성의 대사제어)

  • Park, Chung;Im, Beon-Sam;Jeon, Moon-Jin
    • Microbiology and Biotechnology Letters
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    • v.15 no.2
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    • pp.104-111
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    • 1987
  • As a trial method of breeding L-lysine producing strains, the intraspecific protoplast fusion bet-ween Brevibacterium flavum ATCC 21528R and Brevibacterium flavum ATCC 21529S and the intergeneric protoplast fusion between Brevibacterium flavum ATCC 21528R and Corynebacterium glutamicum ATCC 13058S were performed. The optimum conditions for protoplast formation of these strains were examined and the effect of plasma expander on regeneration and/or fusion was also observed. Both fusants No. CH23 and No. CH4l showed higher productivity of L-lysine than those of parental cells under the optimum cultural conditions at a rate of 21% and 8.9%, respectively. And, activity of several enzymes in L-lysine biosynthetic pathway including aspartokinase, a rate-limiting enzyme, was determined. Besides, metabolic control mechanism of L-lysine biosynthesis in fusant No. CH23 and in No. CH41 was investigated to compare with that of parental strains.

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Strain Improvement by Interspecific Fusion of Streptomyces actuosus DMCJ-49 and Streptomyces minoensis DMCJ-144 producing $\alpha$-Amylase Inhibitor ($\alpha$-Amylase 저해제 생성균 Streptomyces actuosus DMCJ-49와 Streptomyces minoensis DMCJ-144의 종간 융합에 의한 균주 개량)

  • 김지현;최응칠;김병각
    • YAKHAK HOEJI
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    • v.35 no.1
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    • pp.30-37
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    • 1991
  • Streptomyces actuosus DMCJ-49 and Streptomyces minoensis DMCJ-144 produce the .alpha.-amylase inhibitor. Inerspecific protoplast fusion technique was used to increase the productivity of .alpha.-amylase inhibitor. Four auxotrophic mutants were obtained respectively from two strains by N-methyl-N'-nitor-N-nitrosoguanidine(3mg/ml) treatment. The optimum conditions for the protoplast formation of Streptomyces actuosus DMCJ-49 ade was as follows; 1.2% w/v of glycine, 3mg/ml of lysozyme, and 30 min of lysozyme treatment followed by 36 hr. incubation in the protop-last formation medium. In case of DMCJ-144-his those were 1.2%w/v, 3 mg/ml, 30 minutes and 60 hours, respectively. Regeneration was accomplished with hypertonic soft agar medium that contained 0.4M sucrose, 20mM CaCl$_2$, 50 mM MgCl$_2$ and low levels of phosphate. Fusion of protoplasts carrying different auxotrophic markers was achieved by treatment with polyethylene glycol. The optimum concentration of polyethylene glycol 1450 for the production of recombinants was 40%w/v. When the protoplasts was treated with 40% polyethylene glycol for 30 minutes, the frequency of recombinants was 6.5$\times$$10^{-3}$ and the $\alpha$-amylase inhibition activity of $ade^-his^-$ No. 4, which is the fusant with the most improved activity increased from 33 to 125 I.U./ml.

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Transfer of Plasmid pAM $\beta_1$ of Streptococcus faecalis DS 5 to Lactobacillus casei YIT 9018 (Streptococcus faecalis DS 5 Plasmid pAM $\beta_1$의 Lactobacillus casei YIT 9018로의 전이)

  • 허정원;김정호;정기철;이용규;김창렬
    • Microbiology and Biotechnology Letters
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    • v.18 no.3
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    • pp.317-321
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    • 1990
  • The broad-host plasmid PAM $\beta_1$ of Streptococcus faecalis DS 5 which codes for erythromycin resistance and lactose utilization was transferred into L. casei M-3 (lac-mutant) by conjugation, but was not transferred by protoplast fusion and protoplast transformation. For conjugal transfer of plasmid PAM $\beta_1$ the method of membrane filter mating was more efficient than that of agar surface mating. The rate of acid production of transconjugant C-1, C-3 was similar to L. casei YIT 9018. The proteolytic activity of transconjugant C-3 was increased 20% higher than that of wild type. Plasmid PAM $\beta_1$ was detected by a11 of the transconjugants. The transconjugants expressed lactose ulitization and erythromycin resistance.

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Ethanol production from starch by protoplast fusion between aspergillus oryzae and saccharomyces cerevisiae (사상균과 효모의 세포융합에 의한 녹말로부터의 에탄올 생산)

  • 이주실;이수연;이영록
    • Korean Journal of Microbiology
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    • v.27 no.3
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    • pp.221-224
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    • 1989
  • Amylolytic filamentous fungus, Aspergillus oryzae and nonamylolytic sugar fermentable yeast, Saccharomyces cerevisiae were fused by protoplast fusion in order to develope microorganisms having their intergrated function. Aminoacid auxotrophic properties were used as a genetic marker of protoplast fusion, and 35% PEG 4000 was used as a fusogenic agent. Complementation frequengy of fusion was $4.6\times 10^{-6}$ Obtained fusants showed the morphology of yeast strains, the amylase activity and the ethanol productivity. Among the properties of the fusants, morphology and prototrophic property were sustained stably but their ethanol productivity from starch was reduced. Although fusant strains had 0.5-fold ethanol productivity compared to that of S. cerevisiae in glucose medium, they produced ethanol from strach by direct fermentation.

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Protoplast fusion of Aspergillus oryzae (Aspergilluis oryzae의 원형질체 융합)

  • 이수연;이주실;이영록
    • Korean Journal of Microbiology
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    • v.27 no.3
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    • pp.216-220
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    • 1989
  • As the bsic study about protoplast fusion of amylolytic fungus Aspergillus oryze and nonamyloytic sugar fermenter, Saccaromyces cerevsisae, the intraspecific protoplast fusion of A. oryzae was carried out and the properties of the obtained fusants were investigated. For protoplast fomation from mycellia of auxotrophs, Novozyme 234 as lytic enzyme was the most effective and optimal pH was determined to be pH 5.5-6.0. When the two types of protoplasts were treated with a fusogen including 30% PEG4000, they fused effectively and most of fusants were heterokaryons. Protoplasts aggregated with 30% PEG4000 after fusion treatment were observed by the microscope. Protoplast regeneration frequency was 1.46 to 13.8% and complementation frequency of fusion was 0.12 to 0.16. Fusant strains had a 1.5-fold DNA content compared to that of parent strain. And amylase activity was intermediate between those of parent strains.

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Protoplast Formation and Fusion between Anastomosis Groups of Rhizoctonia solani (Rhizoctonia solani 융합균(融合菌) 간(間)의 원형질체형성(原形質體形成) 및 융합(融合))

  • Chung, Hoo-Sup;Kim, Dal-Soo;Ahn, Hee-Suk
    • The Korean Journal of Mycology
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    • v.20 no.1
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    • pp.44-50
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    • 1992
  • The protoplast formation of Rhizoctonia solani in the fast growing anastomosis groups (AGs) 1 and 4, the intermediate AG-2 and AG-5, and the slow AG-3 yielded the most, moderate and the least in that order, respectively. Sclerotia formation varied with AGs. A high yield of protoplasts from AGs was obtained with a combined lytic enzyme system containing cellulase 'Onozuka' R-10, macerozyme R-10 and ${\beta}-glucuronidase$. When 3g (fresh weight) of 30 hr old mycelia was incubated for 3 hr at $32^{\circ}C$ with the enzyme mixture in 0.6 M mannitol, maximum protoplasts were obtained in the five AGs. A protoplast fusion between sclerotia forming AG-1 inactivated with heat and non-forming AG-5 was induced by polyethylene glycol and ${Ca}^{2+}$. Seven fusants obtained were based on characteristics of colony and sclerotium formation on culture plates. The fusants were confirmed by isozyme patterns of esterase and killing reaction between AG-1 and a fusant F1501.

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Electrofusion of Yeast Cells and Their Genetic Analysis Using RAPD-PCR (효모세포의 전기융합 및 융합세포의 RAPD-PCR을 이용한 유전적 분석)

  • Kim, Seung;Kim, Jae-Sung;Sapkota, Kumar;Park, In-Sung;Cho, Moon-Gu;Park, Yeal;Chun, Hong-Sung;Choi, Bong-Suk;Park, Se-Eun;Choi, Han-Suk;Kim, Myung-Kon;Kim, Sung-Jun
    • Applied Biological Chemistry
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    • v.49 no.3
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    • pp.186-191
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    • 2006
  • In the present study, an attempt has been made to produce hybrid yeast strains of different useful and dominant characteristics. The hybrid yeast strains were produced by electrofusion and their genetic analysis were performed by RAPD-PCR (random amplified polymorphic DNA-polymerase chain reaction). The protoplast of Saccharomyces cerevisiae KCTC 7904 and Zygosaccharomyces rouxii KCTC 7966 were obtained above 92% when treated with lyticase at $30^{\circ}C$ for $60{\sim}90$ min after the pretreatment of $1{\sim}2%$ 2-mercaptoethanol at $30^{\circ}C$ for $15{\sim}20$ min. The fusant was produced from paired protoplast stage under the electric pulse at high frequency conditions (1.5 MHz/50 pV, 615 $V/256\;{\mu}sec$) within glass-platinum made electrofusion chamber. Changes in RAPD patterns in mother cells and hybrid cells proved that the fusant contains two types of yeast gene originated from its parent. Furthermore, fermentation characters exhibits by the fusant cell confirmed its genetic changes. These results suggest that genetically stable hybrid yeast strains of economic importance can be produced by electrofusion technique and these electrofused yeast cells have an enormous impact in biotechnology and biomedicine.

Intergeneric Protoplast Fusion between Rhizopus oryzae and Aspergillus oryzae (Rhizopus oryzae와 Aspergillus oryzae의 속간 원형질체융합)

  • Lee, Soo-Youn;Jung, Sung-Won;Kim, Seong-Han;Lee, Yung-Nok
    • Korean Journal of Microbiology
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    • v.31 no.3
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    • pp.218-223
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    • 1993
  • Conditions for the release and regeneration of protoplasts form Rhizopus oryzae and intergeneric protoplast fusion between Rhizopus oryzae and Aspergillus oryzae were studied. High yields of protoplast fusion between Rhizopus oryzae and Aspergillus oxyzae were studied. High yield of protoplasts from young germilings of R. oryzae were obtained by using lytic enzymes containing chitosanase (3 mg/ml), chitinase (3 mg/ml) and Novozym 234 (5 mg/ml). 0.5M glucose was used as the osmotic stabilizer and optimum pH of buffer was determined to be pH 7.5-8.0. Under these conditions, protoplasts were formed after about 3-4 hrs incubation. Approximately, 1.0%-4.9% of these protoplasts were formed after about 3-4 hrs incubation. Approximately, 1.0%-4.9% of these protoplasts regenerated on solid medium with a soft agar overlay. We have also carried out protoplasts fusion between R. oryzae and A. oryzae and have succeeded in obtaining three types of intergeneric fusants. In these experiments, 35% PEG-4000 and 10 mM CaCl$_{2}$ were used as fsogenic agents, and auxotrophic properties were used as a genetic marker to select fusants. Complementation frequency be protoplasts fusion of A. oxyzae and R. oryzae was 4.4% * 10$^{-5}$ . The fusant strains of the first type were prototrophs showing an Aspergillus type morphology with dark-yellow sporulation, those of the second type were also Apergillus type morphology but showed no sporulation. And the strains of the third type stopped growing when fusion products grown on regeneration minimal medium were transferred to fresh minimal medium. The formation of fusion products was observed by fluorescent vital stains for complementary labelling of protoplats from R. oryzae and A. oryzae. Rhodamine 6G and fluorescein diacetate wer useful complementary vital stains of Rhizopus and Aspergillus protoplasts for visualization of requency and type (dicell, multicell) of fusion.

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