• Title/Summary/Keyword: 형질전환 식물체

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Transformation of Populus tremuloides Using Agrobacterium rhizogenes (Agrobacterium rhizogenes를 이용한 Populus tremuloides의 형질전환)

  • So, In-Sup;U, Zang-Kual;Ko, Young-Hwan;Lee, Sun-Joo;Hackett, Wesley P.;Riu, Key-Zung
    • Applied Biological Chemistry
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    • v.38 no.2
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    • pp.123-128
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    • 1995
  • Several factors affecting on transformation efficiency were studied to establish a Agrobacterium rhizogenes mediated system for the transformation of Populus species, and We could obtaine tansgenic plantlets expressing the introduced gene. Leaf sections were more sensitive than stem sections to kanamycin and thought to be better material for transformant screening. The bacterial density did not affect on the efficiency of transformation over the range of $4{\times}10^5{\sim}7{\times}10^9\;cfu$. The optimum period for co-cultivation was one day or shorter. Both of the optimum concentrations of cefotaxime and ampicillin in the medium were $250\;{\mu}g/ml$ for elimination of bacteria from the inoculated leaf sections. The addition of acetosyringone in the bacterial culture medium increased transformation rate, and the highest rate was obtained at $50\;{\mu}M$ of acetosyringone. The transformed galls could be selectively induced and gown on the growth regulator-free medium or on the medium containing $100\;{\mu}g/ml$ or higher contrition of kanamycin. The roots were induced from the galls incited by A. rhizogenes within 3 weeks on the growth regulator-free medium as well as on the medium containing growth regulators. The plantlets were regenerated from the galls cultured for 6 weeks on the medium containing 0.05 mg/ml of NAA and 0.5 mg/ml of BA. The expressions of the introduced opine gene in the transformed galls and plantlets were confirmed by the analysis of agropine and mannopine.

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Agrobacterium- mediated Genetic Transformation and Plant Regeneration of Sweetpotato (Ipomoea batatas) (Agrobacterium 매개에 의한 고구마 형질전환 및 식물체 재분화)

  • Lim, Soon;Yang, Kyoung-Sil;Kwon, Suk-Yoon;Paek, Kee-Yoeup;Kwak, Sang-Soo;Lee, Haeng-Soon
    • Journal of Plant Biotechnology
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    • v.31 no.4
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    • pp.267-271
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    • 2004
  • Transformed sweetpotato (Ipomoea batatas (L.) Lam. cv. Yulmi) plants were developed from embryogenic calli following Agrobacterium tumefaciens-mediated transformation. A. tumefaciens strain EHA105/pCAMBIA2301 harboring genes for intron $\beta$-glucuronidase (GUS) and kanamycin resistance. Transient expression of GUS gene was found to be higher when embryogenic calli were co-cultivated with Agrobacterium for 2 days. The co-cultured embryogenic calli transferred to selective MS medium containing 1mg/L 2,4-D, 100mg/L kanamycin, and 400mg/L claforan. These embryogenic calli were subcultured to the same selection medium at 4 weeks interval. Kanamycin-resistant calli transferred to hormone-free MS medium with kanamycin gave rise to somatic embryos and then converted into plantlets in the same medium. Southern blot analysis confirmed that the GUS gene was inserted into the genome of the sweetpotato plants. A histochemical assay revealed that the GUS gene was preferentially expressed in the leaf, petiole, and vascular tissue and tip of root.

Molecular breeding of herbicide resistant transgenic plants with bromoxynil specific nitrilase gene (Bromoxynil 특이성 nitrilase 유전자를 이용한 제초제 저항성 형질 전환 식물의 분자육종)

  • Min, Bok-Kee;Park, Eun-Sung;Park, Yearn-Hung;Song, Jae-Young;Lee, Se-Yong
    • Applied Biological Chemistry
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    • v.37 no.4
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    • pp.248-254
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    • 1994
  • Bromoxynil is an antidicot herbicide widely used on cereal crops and has a short half life in the soil. A bxn gene, encoding a specific nitrilase that converts bromoxynil to its primary metabolite 3,5-dibromo-4-hydroxybenzoic acid, was inserted in plant binary vector pGA482, and then introduced into tobacco and lettuce plants via Agrobacterium mediated leaf-disc transformation method. Transgenic plants with the bxn gene were selected by kanamycin and regenerated to whole plants. The regenerated transgenic plants were determined level of expression of bxn gene by Northern blot analysis. Leaf-disc analysis and pot-assay confirmed that the transgenic tobacco and lettuce plants were resistant to high doses of bromoxynil.

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Plant Regeneration from Hairy Root of Rehmannia glutinosa Liboschitz Transformed by Agrobacterium rhizogenes (형질전환된 지황의 모상근으로부터 식물체의 재분화)

  • Hwang, Sung-Jin
    • Korean Journal of Medicinal Crop Science
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    • v.14 no.1
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    • pp.31-35
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    • 2006
  • A protocol for plant regeneration from hairy root of Rehmannia glutinosa transformed by Agrobacterium rhizogenes ATCC15834 has been developed. Transgenic shoots were regenerated from hairy roots within 6 weeks after culture on the SH medium supplemented with 0.5 mg/l BA. Shoots were rooted on plant growth regulator free SH medium successfully. The transformed plants, which were regenerated from hairy roots, had thiner roots with extensive lateral branches, wrinkled leaves, shorter node, and grew faster compared with non-transformed plants. The biomass of the transformed plant was 1.28 g (F.W) per plant, significantly higher than the non-transformed plant (0.54 g F.W). The catalpol content in the transformed plant (0.56%) was also higher than that of the non-transformed plants (0.43%).

Fungal pathogen protection in transgenic lettuce by expression of a apoptosis related Bcl-2 gene (Apoptosis 관련 Bcl-2유전자의 도입을 통한 곰팡이 저항성 형질전환 상추의 육성)

  • Seo, Kyung-Sun;Min, Byung-Whan
    • Journal of Plant Biotechnology
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    • v.38 no.3
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    • pp.209-214
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    • 2011
  • Transgenic lettuce plants were successfully obtained from hypocotyl explants inoculated with Agrobacterium tumefaciens, which harbored a binary vector plasmid with Bcl-2 gene, related to apoptosis. After culture and selection on MS medium a number of kanamycin-resistant plantlets were regenerated. Polymerase chain reaction, Southern blot analysis and Northern blot analysis were used to identify and characterize the transgenic plants with the integrated Bcl-2 gene. Over 100 transgenic plants have been established in soil and flowered in the greenhouse. T1 progeny of 100 transgenic lettuce inbred lines were inoculated with Sclerotinia sclerotiorum. Expression of the Bcl-2 peptide in transgenic lettuce plants provides high levels of field resistance against Sclerotinia sclerotiorum, causal agent of the agronomically important fungal disease of lettuce.

Transformation of Populus alba × P. glandulosa by Agrobacterium rhizogenes (Agrobacterium rhizogenes 에 의한 현사시나무의 형질전환(形質轉換))

  • Chung, Kyung Ho;Park, Young Goo;Noh, Eui Rae;Chun, Young Woo
    • Journal of Korean Society of Forest Science
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    • v.78 no.4
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    • pp.372-380
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    • 1989
  • The widely cultivated hybrid poplar Populus alba ${\times}$ P. glandulosa in Korea was transformed with Agrobacterium rhizogenes agropine type strain A4. Genetic transformation was confirmed by the presence of agropine. Alteration in growth rate of hairy roots was seen following changes in the dilution rate of medium and concentration of sucrose, suggesting that improved growth might be achieved by more precise manipulation of the nutrient medium. Plant regeneration occurred from transformed hairy roots on MS medium supplemented with 0.5 mg/l BAP. Transformed plantlets grown in vitro exhibited a more developed root system characterized by fast growth behavior in comparison to normal plantlets. This work demonstrates that the root transformation would be useful in improving plantlet establishment and growth through the effective root system.

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In vitro Propagation of Transgenic Ginsengs Introduced with Ferritin Light Heavy Chain Gene through Single Embryo Culture (Ferritin Light Heavy Chain 유전자가 도입된 인삼형질전환체의 단일배발생을 통한 식물체의 기내증식)

  • 윤영상;김종학;김무성;양덕춘
    • Korean Journal of Plant Resources
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    • v.17 no.2
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    • pp.161-168
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    • 2004
  • Optimal regeneration conditions of ginseng transformants were studied. It has been known that Ferritin Light Heavy Chain (FLHC) gene remove the several heavy metal by combination, store and transport. To obtain the ginseng tolerant to heavy metal, binary vector was introduced in Agrobacterium by tri-parental mating and then Agrobacterium tumefaciens MP90/FLHC was selected on the AB media and MS media containing kanamycin. Explants were co-cultured with Agrobacterium tumefaciens MP90/FLHC, which contained NPT II as a selectable marker, tadpole ferritin heavy chain (FLHC) gene and human ferritin light chain gene and then a number of embryos were induced. The induced embryo transferred to shooting media consisting of MS medium supplemented with GA 10 mg/L. As a result of examination that induced the normal growth of transfomants, transformants showed the equivalent growth in both root and shoot on the media containing the 1/3 MS.

An Effective Selection of PAT Gene Transformed Populus alba $\{times}$ Populus glandulosa No.3 using Herbicide Basta Treatment (제초제 Basta를 이용한 Phosphinothricin Acetyltransferase 유전자로 형질전환된 현사시 3호의 효율적인 선발)

  • 오경은;문흥규;박재인;양덕춘
    • Korean Journal of Plant Resources
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    • v.17 no.1
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    • pp.28-33
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    • 2004
  • This study was conducted to simple transformants selection by herbicide Basta treatment after transformation with Agrobacteium tumefaciens MP90/PAT in hybrid poplar(Populus alba ${\times}$ P. glandulosa No. 3). In preliminary study, we determined that the lethal concentration of herbicide Basta was 1.0mg/L in callus culture, adventitious bud formation and axillary bud elongation experiment. By the treatment of 1.0mg/L Basta, we could be selected the transformed shoots effectively from the various cultures. In addition, the treatment was useful on selection of transformants which are growing in soil pot. Finally, we also confirmed the transformation by PAT assay, Above results show that the herbicide Basta treatment and PAT assay can be a very simple and effective method for the identification of PAT gene transformed hybrid poplar.

Optimization of particle gun-mediated transformation system in Cymbidium (유전자총을 이용한 형질전환 심비디움 식물체 생산체계 최적화)

  • Noh, Hee-Sun;Kim, Mi-Seon;Lee, Yu-Mi;Lee, Yi-Rae;Lee, Sang-Il;Kim, Jong-Bo
    • Journal of Plant Biotechnology
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    • v.38 no.4
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    • pp.293-300
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    • 2011
  • This study is conducted to develop an efficient transformation system via particle bombardment with PLBs (Protocorm-like bodies) in Cymbidium. For this, pCAMBIA3301 vector which carries a herbicide-resistant bar gene and gus gene as a reporter gene was used for transformation with Cymbidium cultivars 'Youngflower ${\times}$ masako' line. To select transformants, proper concentration of herbicide, PPT (phosphinotricin), should be determined. As a result, 5 mg/l of PPT was selected as a proper concentration. Further, proper conditions for particle bombardment were determined to obtain a high frequency of transformation. Results showed that 1.0 ${\mu}g$ of DNA concentration, 1,100 and 1,350 psi for helium gas pressure, 1.0 ${\mu}m$ of gold particle and 6 cm of target distance showed the best result for the particle bombardment experiment. Also, pre-treatment with combination 0.2 M sorbitol and 0.2 M mannitol for 4 hrs prior to genetic transformation increased the transformation efficiency up to 2.5 times. Using transformation system developed in this study, 3.2 ~ 4.0 transgenic cymbidium plants can be produced from 100 bombarded PLBs on average. Putative transgenic plants produced in this system confirmed the presence of the bar gene by PCR analysis. Also, leaves from randomely selected five transgenic lines were applied for Basta solution (0.5% v/v) to check the resistance to the PPT herbicide. As a result, three of them showed resistance and one of them showed the strongest resistance with the maintenance of green color as non-transformed plants showed. Using this established transformation system, more genes of interests can be introduced into Cymbidium plants by genetic transformation in the future.