• Title/Summary/Keyword: Protoplast regeneration

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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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Electron Microscopic Observation on Protoplast Fusion of Coryneform Bacteria (Coryne형 세균의 원형질체 융합에 관한 전자현미경적 관찰)

  • Park, Chung;Lim, Bun-Sam;Chun, Moon-Jin;Kim, Woo-Kap
    • Korean Journal of Microbiology
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    • v.23 no.4
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    • pp.265-270
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    • 1985
  • Overall procedure of cell fusion between Brevibacterium flavum and Corynebacterium glutamicum was morphologically observed by transmission electron microscopy. Protoplasts formed by treatment of cells with penicillin G and lysozyme in order were released through the pores generated on a certain region of cell walls to be spherical form. When two different protoplasts were met, cell wall and membrane in the contact zone was disappeared and followed by the mutual exchange of cytoplasmic and/or chromosomal materials. Cell xall regeneration speed of the protoplasts fused was slower than that of the non-fused, whereas the size of the former was confirmed as bigger than that of the latter.

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Culture and Regeneration of Populus alba × glandulosa Leaf Protoplasts Isolated from in vitro Cultured Explant (현사시나무 기내배양(器內培養) 엽육조직(葉肉組織)에서 분리(分離)된 원형질체(原形質体) 배양(培養) 및 식물체(植物体) 재분화(再分化))

  • Park, Young Goo;Son, Sung Ho
    • Journal of Korean Society of Forest Science
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    • v.77 no.2
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    • pp.208-215
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    • 1988
  • The leaf mesophyll protoplasts of Populus alba ${\times}$ glandulosa were isolated from leaf of plantlet in vitro and cultured for plant regeneration. The MS medium (minus $NH_4NO_3$) with 0.5 mg/l BAP and 2.0 mg/l 2, 4-D showed the moderate frequency of dividing protoplasts cultured by the liquid plating method during the first week of culture. The percentage of colony formation was revealed the highest frequency by the gauze contained semi-solid agar plating method after 5 weeks cultured. Ridding out the gauze, the micro-callus was formed on the same semi-solid medium in 8 weeks after protoplasts culture. For proliferation of callus, mini-callus was transferred on the MS solid medium with 0.5 mg/l 2, 4-D and 0.1 mg/l BAP 12 weeks after culture. Shoot regeneration occurred when the calli derived from protoplasts were cultured on MS medium with 1.0 mg/l zeatin and such shoots could be readily rooted on the one half strengthen MS medium with non-phytohormone. Rooting shoots were planted in green-house 22 weeks after protoplast culture.

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Importance of Strain Improvement and Control of Fungal cells Morphology for Enhanced Production of Protein-bound Polysaccharides(β-D-glucan) in Suspended Cultures of Phellinus linteus Mycelia (Phellinus linteus의 균사체 액상배양에서 단백다당체(β-D-glucan)의 생산성 향상을 위한 균주 개량과 배양형태 조절의 중요성)

  • Shin, Woo-Shik;Kwon, Yong Jung;Jeong, Yong-Seob;Chun, Gie-Taek
    • Korean Chemical Engineering Research
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    • v.47 no.2
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    • pp.220-229
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    • 2009
  • Strain improvement and morphology investigation in bioreactor cultures were undertaken in suspended cultures of Phellinus linteus mycelia for mass production of protein-bound polysaccharides(soluble ${\beta}$-D-glucan), a powerful immuno-stimulating agent. Phellineus sp. screened for this research was identified as Phellinus linteues through ITS rDNA sequencing method and blast search, demonstrating 99.7% similarity to other Phellinus linteus strains. Intensive strain improvement program was carried out by obtaining large amounts of protoplasts for the isolation of single cell colonies. Rapid and large screening of high-yielding producers was possible because large numbers of protoplasts ($1{\times}10^5{\sim}10^6\;protoplasts/ml$) formed using the banding filtration method with the cell wall-disrupting enzymes could be regenerated in relatively high regeneration frequency($10^{-2}{\sim}10^{-3}$) in the newly developed regeneration medium. It was demonstrated that the strains showing high performances in the protoplast regeneration and solid growth medium were able to produce 5.8~6.4%(w/w) of ${\beta}$-D-glucan and 13~15 g/L of biomass in stable manners in suspended shake-flask cultures of P. linteus mycelia. In addition, cell mass increase was observed to be the most important in order to enhance ${\beta}$-D-glucan productivity during the course of strain improvement program, since the amount of ${\beta}$-D-glucan extracted from the cell wall of P. linteus mycelia was almost constant on the unit biomass basis. Therefore we fully investigated the fungal cell morphology, generally known as one of the key factors affecting cell growth extent in the bioreactor cultures of mycelial fungal cells. It was found that, in order to obtain as high cell mass as possible in the final production bioreactor cultures, the producing cells should be proliferated in condensed filamentous forms in the growth cultures, and optimum amounts of these filamentous cells should be transferred as active inoculums to the production bioreactor. In this case, ideal morphologies consisting of compacted pellets less than 0.5mm in diameter were successfully induced in the production cultures, resulting in shorter period of lag phase, 1.5 fold higher specific cell growth rate and 3.3 fold increase in the final biomass production as compared to the parallel bioreactor cultures of different morphological forms. It was concluded that not only the high-yielding but also the good morphological characteristics led to the significantly higher biomass production and ${\beta}$-D-glucan productivity in the final production cultures.

Regeneration of symmetric protoplast fusion between cabbage (Brassica oleracea L.) and radish (Raphanus sativus L.) (양배추와 무의 동형 원형질체 융합을 이용한 식물체의 재분화)

  • In, Dong-Su;Song, Min-Jung;Jang, In-Chang;Min, Byung-Whan;Nahm, Seok-Hyeon;Shin, Jong-Sub;Lee, See-Woo;Harn, Chee-Hark
    • Journal of Plant Biotechnology
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    • v.35 no.2
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    • pp.121-126
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    • 2008
  • Protoplasts from cabbage and radish were isolated and fused symmetrically by PEG treatment. The PEG treated mixture of high concentrated protoplasts produced lots of micro-calli after $2{\sim}3$ weeks. The microcalli developed to normal calli and shoots were regenerated from the calli. A total of 218 shoots were regenerated, but none of them contained the NWB-CMS specific DNA marker, indicating that the transfer of the radish NWB-CMS character into cabbage did not occur. However, ISSR analysis revealed that the cell fusion between protoplasts from radish and cabbage was occurred (3 out of 208 plantlet). The fused regenerants possessed the characteristics of source plants used for protoplast fusion. After vernalization, three regenerants were flowered with white petal color as seen in radish. Only three seeds were able to obtain from one regenerant by backcrossing with the cabbage pollen.

Characteristics of Lentinula edodes Fruiting Bodies Formed by Mono-mono Hybridization Using Mating Type Analysis (교배형 분석을 활용한 표고 교배균주 육성 및 자실체 발생 특성)

  • Yeongseon Jang;Mi-Jeong Park;Eunjin Kim;Min-Jun Kim;Yeun Sug Jeong;Kang-Hyeon Ka
    • The Korean Journal of Mycology
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    • v.51 no.4
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    • pp.389-396
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    • 2023
  • In this study, dikaryotic strains of Lentinula edodes were generated by mono-mono hybridization using mating type analysis and their fruiting body characteristics were investigated. Approximately 100 monokaryotic strains were isolated from the basidiospores of Sanbaekhyhang, and homokaryotic strains were isolated from Chungheung 1ho using protoplast isolation and regeneration. Their mating types were evaluated and a total of 60 dikaryotic strains were hybridized. Using these strains, fruiting bodies were produced and their characteristics were examined after cultivation on sawdust media. The results indicated that the rate of hybridization was 100% and that 55 of 60 strains formed fruiting bodies. These showed normal pileus and gill structures; however,10 strains also produced fruiting bodies with abnormal pileus and gill structures. The weight and size of the fruiting bodies differed depending on the strains. Overall, further studies are needed for predicting the characteristics of hybridized strains based on their parental strains.

Factors Affecting Fusion Frequency of Pleurotus Protoplasts (느타리버섯속(屬)의 원형질체(原形質體) 융합률(融合率)에 영향(影響)을 미치는 요인(要因))

  • Yoo, Young-Bok;Kim, Yeong-Tae;Byun, Myung-Ok;You, Chang-Hyun;Cha, Dong-Yeul;Park, Yong-Hwan
    • The Korean Journal of Mycology
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    • v.18 no.2
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    • pp.77-83
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    • 1990
  • Factors influencing the fusion frequency of protoplasts were investigated with auxotrophic mutants of Pleurotus florida and Pleurotus ostreatus. Immediately after the polyethylene glycol (PEG) solution was added, the protoplasts adhered firmly and shrank. During the subsequent dilution with 0.6 M sucrose, the protoplasts regained their normal size and larger bodies were observed. Interspecific heterokaryons were obtained by fusion of the nutritionally complementing protoplasts. Hyphae of the heterokaryotic fusants formed true clamp connections. The optimum conditions were a total of 1 to 15 million protoplasts per ml, 30% polyethylene glycol 8000 solution with adjustment to pH 8.0 and 0.6 M sucrose stabilized regeneration medium. Other parameters such as $CA^{++}$, glycine, exposure time and temperature influenced mainly the viability of the protoplasts.

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Intergeneric Hybrid Constructed by Nuclear Transfer of Saccharomycopsis into Saccharomyces (핵전이를 이용한 Saccharomycopsis 속과 Saccharomyces 속간의 잡종형성)

  • Yang, Young-Ki;Lim, Chae-Young;Kang, Hee-Kyoung;Moon, Myeng-Nim;Rhee, Young-Ha
    • The Korean Journal of Mycology
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    • v.27 no.6 s.93
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    • pp.399-405
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    • 1999
  • Intergeneric hybrids between Saccharomyccopsis fiburigera KCTC 7393 and Saccharomyces cerevisiae KCTC 7049 (tyr-, ura-) were obtained by nuclear transfer technique. Nuclei isolated from the wild type S. fiburigera strain were transfered into auxotrophic S. cerevisiae mutants and new strains showing an increased starch degrading capability were selected. Maximum production of protoplasts was obtained from the treatment with 0.1 % Novozym 234 at $30^{\circ}C$ for 90 min, and most effective osmotic stabilizer for the isolation of protoplasts was 0.6 M KCl at pH 5.8. The frequency of protoplast regeneration was 14.64% under the conditions. Genectic stability, conidial size, DNA content, and nuclear stain suggested that the fusants were aneuploidy. The specific activity of ${\alpha}-amylase$ was observed to increase about $1.2{\sim}1.9$ folds.

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Antifungal Mechanism of Antifungal Peptide Derived from Cecropin A(1-8)- Melittin(1-12) Hybrid against Aspergillus fumigatus

  • Lee, Dong-Gun;Jin, Zhe-Zhu;Maeng, Cheol-Young;Shin, Song-Yub;Seo, Moo-Yeol;Kim, Kil-Lyong;Hahm, Kyung-Soo
    • Journal of Microbiology and Biotechnology
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    • v.9 no.2
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    • pp.168-172
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    • 1999
  • The antifungal mechanism of the antifungal peptide against Aspergillus fumigatus, $K^{18,19}$-CA(l-8)-ME(l-12), derived from cecropin A(l-8)-melittin(l-12) was investigated by confocal laser scanning microscopy, cell wall regeneration, ATPase activity inhibition, and released potassium ion. By confocal laser scanning microscopy, $K^{18,19}$-CA(l-8)-ME(l-12) was detected on the surface of A. fumigatus, while cecropin A used as a negative control peptide was not detected. The protoplast of A. fumigatus treated with$K^{18,19}$-CA(1-8)-ME(1-12) failed to regenerate the fungal cell walls. Compared with cecropin A, the amount of potassium ion released by $K^{18,19}$-CA(l-8)-ME(l-12) was increased. Furthermore, $K^{18,19}$-CA(l-8)-ME(l-12) inhibited the ATPase activity on the plasma membrane. These results suggested that $K^{18,19}$-CA(l-8)-ME(1-12) acts on the plasma membrane of A. fumigatus and its antifungal action is due to the ion channel or pore formation on the plasma membrane.

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Plant Regeneration from Protoplasts of Suspension Cultured Cells in Arabidopsis thaliana (애기장대(Arabidopsis thaliana) 현탁배양세포의 원형질체로부터 식물체 재분화)

  • 김명덕;김준철;진창덕;임창진;한태진
    • Korean Journal of Plant Tissue Culture
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    • v.27 no.2
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    • pp.125-131
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    • 2000
  • Protoplasts of Arabidopsis thaliana were easily isolated from the shoot-forming (SF) suspension-cultured cell clusters with 4 hours-shaking condition (40 rpm) on CPD enzyme solution containing 1% cellulase R-10, 0.25% pectolyase Y-23 and 0.5% driselase. Protoplasts were cultured on liquid KAO medium supplemented with 1 mg/L 2,4-D, 0.5 mg/L kinetin, 200 mg/L spermidine and 68 g/L glucose. Also, protoplasts were cultured on 0.2 $\mu$M membrane filter placed onto CP solid medium containing the suspension cells as feeder cells in the dark at $25^{\circ}C$ for 4 weeks. Protoplast-derived-SF calli were cultured on MS medium containing 0.05 mg/L IAA, 7 mg/L 2 ip and 30 g/L sucrose under the continuous illumination for four weeks. The frequency of shoot formation was about 60%. The regenerants were transferred into potting soil to grow mature plants. The regenerants formed the silques with seeds after 8 weeks of cultures.

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