• 제목/요약/키워드: plant transgenic vector system

검색결과 46건 처리시간 0.03초

벼에서 CRISPR/Cas9 활용 고빈도 유전자 편집 방법 (A novel method for high-frequency genome editing in rice, using the CRISPR/Cas9 system)

  • 정유진;배상수;이긍주;서필준;조용구;강권규
    • Journal of Plant Biotechnology
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    • 제44권1호
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    • pp.89-96
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    • 2017
  • CRISPR/Cas9 기술은 생명공학을 활용한 신품종 작물육성에 있어 패러다임 변혁을 가져다 줄 핵심 기반기술이다. 본 연구에서는 CRISPR/Cas9를 이용하여 유전자편집기술을 기존에 알려진 방법보다 쉽고 정확하게 실험 할 수 있도록 sgRNA 디자인, 벡터구축, 형질전환체 육성 및 분석 등을 자세히 기술하였다. sgRNA는 http://www.rgenome.net/ 사이트에서 NGG 영역을 중심으로 하여 target-up: 5'-ggcaGNNNNNNNNNNNNNNNNNNNN-3'과 target-down: 5'-aaacNNNNNNNNNNNNNNNNNNNNC-3'의 올리고를 디자인하였다. 식물형질전환용 벡터는 pPZP-Cas9-RGEN을 기본으로 하였으며, sgRNA의 프로모터는 OsU3를 이용하여 pPZP::35S::Cas9::PinII-OsU3::sgRNA::Bar-Gen 순으로 구축하였다. 형질전환체의 육성은 단기형질전환 Agrobacterium 법을 사용하였으며 재분화 식물체를 얻는데48일 정도 소요되었다. 형질전환체 유무는 genomic PCR 분석으로 single copy 선발은 TaqMan PCR로 분석하였다. 정밀유전자편집 식물체는 T1 세대에서 T-DNA 삽입되지 않은 식물체를 Bar-strip에 의해 선발하였다. 선발된 식물체의 sgRNA 영역의 염기배열 조사에 의해 유전자 편집 식물체를 육성하였다. 따라서 본 연구에서 CRISPR/Cas9 system에 의한 정밀유전자편집 기술을 이용하여 보다 빠르고 쉽고 경제적으로 유전자가 편집된 개체를 확보할 수 있었다. 본 실험에서 확립된 system은 상업용 식물 계통육성에 이용 가능하여 육종적 가치가 매우 클 것으로 사료된다.

바이러스 질병 예방을 위한 식물 경구 백신 연구 동향 (Recent Studies of Edible Plant Vaccine for Prophylactic Medicine against Virus-mediated Diseases)

  • 한범수;박종석;김형국;하선화;조강진;김용환;김종범
    • Journal of Plant Biotechnology
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    • 제31권2호
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    • pp.151-161
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    • 2004
  • Transgenic plants have been studied as delivery system for edible vaccine against various diseases. Edible plant vaccines have several potential advantages as follows: an inexpensive source of antigen, easy administration, reduced need for medical personnel, economical to mass produce and easy transport, heat-stable vaccine without refrigerator, generation of systemic and mucosal immunity and safe antigen without fetal animal-virus contaminants. The amount of recombinant antigens in transgenic plants ranged from 0.002 to 0.8% in total soluble protein, depending on promoters for the expression of interested genes and plants to be used for transformation. Throughout the last decade, edible plant vaccine made notable progresses that protect from challenges against virus or bacteria. However edible plant vaccines have still problems that could be solved. First, the strong promoter or inducible promoter or strategy of protein targeting could be solved to improve the low expression of antigens in transgenic plants. Second, the transformation technique of target plant should be developed to be able to eat uncooked. Third, marker-free vector could be constructed to be more safety. In this review we describe advances of edible plant vaccines, focusing on the yields depending on plants/promoters employed and the results of animal/clinical trials, and consider further research for the development of a new plant-derived vaccine.

FOX hunting system을 이용한 배추 기능유전자 탐색 (Systematic approaches to identify functional genes using the FOX-hunting system in Chinese cabbage)

  • 이인호;정유진;박종인;노일섭;강권규
    • Journal of Plant Biotechnology
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    • 제37권2호
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    • pp.174-185
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    • 2010
  • Full-length cDNAs are essential for the correct annotation of genomic sequences and for the functional analysis of genes and their products. To elucidate the functions of a large population of Chinese cabbage (Brassica rapa) genes and to search efficiently for agriculturally useful genes, we have been taking advantage of the full-length cDNA Over-eXpresser (FOX) gene hunting system. With oligo dT column it purify the each mRNA from the flower organs, leaf and stem tissue. And about 120,000 cDNAs from the library were transformed into $\lambda$-pFLCIII-F vector. Of which 115,000 cDNAs from the library were transformed into T-DNA binary vector, pBigs for transformation study. We used normalized full-length cDNA and introduced each cDNA into Arabidopsis by in planta transformation. Full-length Chinese cabbage cDNAs were expressed independently under the CaMV 35S promoter in Arabidopsis. Selfed seeds were harvested from transgenic Arabidopsis. We had selected 2,500 transgenic plants by hygromycin antibiotic tolerant test, and obtained a number of transgenic mutants. Each transgenic Arabidopsis was investigated in morphological changes, fertility and leaf colour. As a result, 285 possible morphological mutants were identified. Introduced cDNA was isolated by PCR amplification of the genomic DNA from the transgenic mutants. Sequencing result and BLAST analysis showed that most of the introduced cDNA were complete cDNAs and functional genes. Also, we examined the effect of Bromelain on enhancing resistance to soft rot in transgenic Chinese cabbage 'Osome'. The bromelain gene identified from FOX hunting system was transformed into Chinese cabbage using Agrobacterium methods. Transformants were screened by PCR, then RT-PCR and real time PCR were performed to analyze gene expression of cysteine protease in the T1 and T2 generations. The anti-bacterial activity of bromelain was tested in Chinese cabbages infected with soft rot bacteria. The results showed that the over-expressed bromelain gene from pineapple conferred enhanced resistance to soft rot in Chinese cabbage.

Expression of Chromium (VI) Reductase Gene of Heavy Metal Reducing Bacteria in Tobacco Plants

  • Jin, Tae-Eun;Kim, Il-Gi;Kim, Won-Sik;Suh, Suk-Chul;Kim, Byung-Dong;Rhim, Seong-Lyul
    • Journal of Plant Biotechnology
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    • 제3권1호
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    • pp.13-17
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    • 2001
  • A Chromium (VI)[Cr(VI)] reductase gene from heavy metal reducing bacteria Pseudomonas aeruginosa HP014 was used to transform tobacco plant cells. A chimeric construct containing the Cr(VI) reductase gene was transfered to tobacco leaf disks using an Agrobacteriun tumefaciens binary vector system. From the leaf disks, transformed plantlets were regenerated. Hybridization experiments demonstrated that the Cr(VI) reductase gene was inserted into and expressed in the regenerated plants. The Cr(VI) reduction activity showed that the transgenic plants may be a another possible tool to reduce the pollution of the toxic Cr(VI) in soil.

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Highly efficient production of transgenic Scoparia dulcis L. mediated by Agrobacterium tumefaciens: plant regeneration via shoot organogenesis

  • Aileni, Mahender;Abbagani, Sadanandam;Zhang, Peng
    • Plant Biotechnology Reports
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    • 제5권2호
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    • pp.147-156
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    • 2011
  • Efficient Agrobacterium-mediated genetic transformation of Scoparia dulcis L. was developed using Agrobacterium tumefaciens strain LBA4404 harboring the binary vector pCAMBIA1301 with ${\beta}$-glucuronidase (GUS) (uidA) and hygromycin phosphotransferase (hpt) genes. Two-day precultured leaf segments of in vitro shoot culture were found to be suitable for cocultivation with the Agrobacterium strain, and acetosyringone was able to promote the transformation process. After selection on shoot organogenesis medium with appropriate concentrations of hygromycin and carbenicillin, adventitious shoots were developed on elongation medium by twice subculturing under the same selection scheme. The elongated hygromycin-resistant shoots were subsequently rooted on the MS medium supplemented with $1mg\;l^{-1}$ indole-3-butyric acid and $15mg\;l^{-1}$ hygromycin. Successful transformation was confirmed by PCR analysis using uidA- and hpt-specific primers and monitored by histochemical assay for ${\beta}$-GUS activity during shoot organogenesis. Integration of hpt gene into the genome of transgenic plants was also verified by Southern blot analysis. High transformation efficiency at a rate of 54.6% with an average of $3.9{\pm}0.39$ transgenic plantlets per explant was achieved in the present transformation system. It took only 2-3 months from seed germination to positive transformants transplanted to soil. Therefore, an efficient and fast genetic transformation system was developed for S. dulcis using an Agrobacterium-mediated approach and plant regeneration via shoot organogenesis, which provides a useful platform for future genetic engineering studies in this medicinally important plant.

Production of Useful Proteins by Plant Cell Culture

  • Kwon, Tae-Ho;Kim, Dae-Hyun;Jang, Yong-Suk;Yang, Moon-Sik
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1999년도 제13회 식물생명공학심포지움 New Approaches to Understand Gene Function in Plants and Application to Plant Biotechnology
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    • pp.45-49
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    • 1999
  • Plant cell culture is emerging to express bioactive foreign proteins because it has several advantages in that it is safe, economical, genetically stable and eukaryotic expression system comparing with other expression systems. However several limitations such as slow growth rate, low expression level and lack of well established down stream process need to be answered. As a preliminary approach to produce the immunologically interested molecules through the plant cell culture, we tested if granulocyte-macrophage colony stimulating factors (GM-CSFs) from both murine (mGM-CSF) and human (hGM-CSF) are produced as a biologically active form through plant cell culture. The murine and human GM-CSF genes were cloned into the plant expression vector, pBI121, and Ti-plasmid mediated transformation of tobacco leaves was conducted using Agrobacterium tumefaciens harboring both recombinant GM-CSF (rGM-CSF) genes. Cell suspension culture was established from the leaf-derived calli of transgenic tobacco plant. Northern blot analysis indicated the expression of the introduced mGM-CSF gene in both transgenic plant and cell suspension cultures. In addition, the biological activities of both murine and human GM-CSF from plant cell culture were confirmed by measuring the proliferation of the GM-CSF dependent FDC-PI and TF-1 cells, respectively.

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A novel technique for recombinant protein expression in duckweed (Spirodela polyrhiza) turions

  • Chanroj, Salil;Jaiprasert, Aornpilin;Issaro, Nipatha
    • Journal of Plant Biotechnology
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    • 제48권3호
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    • pp.156-164
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    • 2021
  • Spirodela polyrhiza, from the Lemnaceae family, are small aquatic plants that offer an alternative plant-based system for the expression of recombinant proteins. However, no turion transformation protocol has been established in this species. In this study, we exploited a pB7YWG2 vector harboring the eYFP gene that encodes enhanced yellow fluorescent protein (eYFP), which has been extensively used as a reporter and marker to visualize recombinant protein localization in plants. We adopted Agrobacterium tumefaciens-mediated turion transformation via vacuum infiltration to deliver the eYFP gene to turions, special vegetative forms produced by duckweeds to endure harsh conditions. Transgenic turions regenerated several duckweed fronds that exhibited yellow fluorescent emissions under a fluorescence microscope. Western blotting verified the expression of the eYFP protein. To the best of our knowledge, this is the first report of an efficient protocol for generating transgenic S. polyrhiza expressing eYFP via Agrobacterium tumefaciens-mediated turion transformation. The ability of turions to withstand harsh conditions increases the portability and versatility of transgenic duckweeds, favoring their use in the further development of therapeutic compounds in plants.

NDP Kinase 2 유전자를 도입한 산화스트레스 내성 형질전환 감자의 선발 (Selection of Transgenic Potato Plants Expressing NDP Kinase 2 Gene with Enhanced Tolerance to Oxidative Stress)

  • 탕리;권석윤;윤대진;곽상수;이행순
    • Journal of Plant Biotechnology
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    • 제31권3호
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    • pp.191-195
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    • 2004
  • 복합스트레스 내성 유전자 NDP kinase 2 유전자를 도입시킨 형질전환 감자를 개발하기 위하여 이 유전자를 산화스트레스에 의해 발현이 강하게 유도되는 SWPA2 프로모터 또는 enhanced CaMV 35S 프로모터에 연결한 벡터를 제작한 후 각각 Agrobacterium 매개로 형질전환 하였다. 기관발생 경로에 의해 kanamycin 저항성 식물체를 재분화 시킨 후 Southern 분석으로 외래 유전자가 안정적으로 감자 게놈내로 삽입되었음을 확인하였다. 형질전환 감자 식물체의 잎 조직을 대상으로 10 $\mu$M methyl viologen에 대한 내성 검정을 조사하여 산화스트레스 내성 형질전환 감자 식물체를 2 개체씩 선발하였다. 선발된 식물체는 건조, 고온 등의 여러 가지 환경스트레스 내성 분석을 실시할 예정이며 이로부터 복합재해에 내성을 지닌 감자 품종을 개발할 수 있을 것으로 기대한다.

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

  • 서경순;민병환
    • Journal of Plant Biotechnology
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    • 제38권3호
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    • pp.209-214
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    • 2011
  • 본 실험에서는 상추 연산홍에 apoptosis 관련 유전자인 Bcl-2 유전자를 도입하여 내병성 상추의 육성을 하기 위한 목적으로 형질전환을 수행하였다. 상추의 자엽조직을 NPTII-35S Promoter와 Bcl-2 유전자가 삽입된 Agrobacterium GV 3101과 공동배양 한 후 0.1 mg/L NAA, 0.5 mg/L BAP, 100 mg/L Kanamycin, 300 mg/L Lilacillin이 첨가된 MS 배지에서 식물체가 유기되었다. Kanamycin 내성을 가진 식물체들을 PCR, Southern blot 분석을 통해 Bcl-2 유전자가 안정적으로 식물체 genome 안에 삽입되었음을 확인하였다. 100개의 형질전환식물체가 확인되었으며 T1식물체를 채종하였다. T1 종자를 파종하여 Sclerotinia sclerotiorum. 균주를 접종하여 내병성 검정을 실시하였고 그 중 2개의 line에서 내병성을 확인하였다. 이러한 결과를 통하여 인간의 apoptosis에 관련하는 유전자가 식물체 내에서 안정된 발현을 통하여 내병성을 증가시켰음을 밝혔다.

오이에서 체세포배 발생을 통한 GUS유전자의 발현 및 식물체 재생 (GUS Gene expression and plant regeneration via somatic embryogenesis in cucumber (Cucumis sativus L.))

  • 김현아;이부연;전진중;최동욱;최필선;세이토우토모;이재혁;강동호;이영진
    • Journal of Plant Biotechnology
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    • 제35권4호
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    • pp.275-280
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    • 2008
  • Agrobacterium공동배양법으로 오이의 기관발생을 통한 형질전환에서 가장 문제점 중 하나는 chimeric 형질전환체의 발생빈도이다. 이러한 문제점을 극복하기 위하여 항생제로서 paromomycin이 첨가된 선발배지에서 "은성" 품종의 배축절편으로부터 체세포배발생을 통한 형질전환시스템을 개발하였다. 배축절편을 pPPTN290발현벡터가 도입된 Agrobacterium 균주 (EHA101)에 30분간 접종한 후 2일간 공동배양 하였고, 선발배지에서 2주 간격으로 5회 계대 배양하면서 항생제 저항성 캘러스 선발, 체세포배발생 및 식물체를 유도하였다. pPPTN290발현벡터의 T-DNA는 reporter유전자로서 Ubi 프로모터에 의해 gus유전자가 발현조절 되도록 그리고 항생제로서 paromomycin에 저항성을 갖는 nptII유전자가 35S 프로모터에 의해 발현되도록 제조하였다. 안정적 형질전환과 빈도는 캘러스의 paromomycin항생제 저항성과 GUS유전자의 발현 여부에 의해 조사하였다. Agrobacterium과 공동배양한 928개의 배축절편에서 paromomycin에 저항성을 갖는 56개의 캘러스 클론을 얻었고, 이중 48개 캘러스 클론 (5.2%)에서 GUS유전자가 안정적으로 발현되고 있음을 확인하였다. 48개의 캘러스 클론중에서 오직 5개의 캘러스 클론으로부터 식물체를 얻어 낮은 빈도 (0.5%)를 나타냈다. 수확한 $T_1$종자에서 GUS양성반응은 gus유전자가 오이 게놈에 안정적으로 도입 및 발현되고 있음을 확인하였다.