• Title/Summary/Keyword: 형질전환 식물체

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High-efficiency and Rapid Agrobacterium-mediated genetic transformation method using germinating rice seeds (벼 발아초기 종자를 이용한 고효율 단기형질전환 방법)

  • Lee, Hye-Jung;Abdula, Sailila E.;Jee, Moo-Geun;Jang, Dae-Won;Cho, Yong-Gu
    • Journal of Plant Biotechnology
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    • v.38 no.4
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    • pp.251-257
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    • 2011
  • Rice is the most important crop as a model plant for functional genomics of monocotyledons. Rice is usually transformed using Agrobacterium tumefaciens. However, the transformation efficiency using previous method is still low. In this study, we established a new method by modifying the general Agrobacterium protocol especially in the inoculation and co-cultivation step. We directly inoculated Agrobacterium containing a CIPK15 gene under the control of CaMV 35S promoter and NOS terminator in the pCAM1300 vector into the pre-soaked seeds in N6D media for 24 hours. After 7 days of culture at $25^{\circ}C$, calli were formed on seeds cultured on the co-cultivation medium containing an antioxidant compound (1 mM dithiothreitol) and of Agrobacterium growth-inhibiting agent (3 mg/L silver nitrate). We obtained 35 and 22 transgenic plants in rice cultivars, Gopumbyeo and Ilpumbyeo, with increase of transformation efficiency by 30.4% and 22.6%, respectively compared to the general transformation method. The new method in this study would lead to reduction of substantial labor and time to generate transgenic plants.

The use of cotyledonary-node explants in Agrobacterium tumefaciensmediated transformation of cucumber (Cucumis sativus L.) (Agrobacterium에 의한 오이 형질전환에서 자엽절 절편의 이용)

  • Jang, Hyun-A;Kim, Hyun-A;Kwon, Suk-Yoon;Choi, Dong-Woog;Choi, Pil-Son
    • Journal of Plant Biotechnology
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    • v.38 no.3
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    • pp.198-202
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    • 2011
  • Agrobacterium tumefaciens-mediated cotyledonary-node explants transformation was used to produce transgenic cucumber. Cotyledonary-node explants of cucumber (Cucumis sativus L. cv., Eunsung) were co-cultivated with Agrobacterium strains (EHA101) containing the binary vector (pPZP211) carrying with CaMV 35S promoter-nptII gene as selectable marker gene and 35S promoter-DQ gene (unpublished data) as target gene. The average of transformation efficiency (4.01%) was obtained from three times experiments and the maximum efficiency was shown at 5.97%. A total of 9 putative transgenic plants resistant to paromomycin were produced from the cultures of cotyledonary-node explants on selection medium. Among them, 6 transgenic plants showed that the nptII gene integrated into each genome of cucumber by Southern blot analysis.

Expression of Recombinant Erythropoietin Gene in Transgenic Tobacco Plant (형질전환 담배 식물체에서 재조합 erythropoietin 유전자의 발현)

  • CHOI, Jang Won;PARK, Hee Sung
    • Korean Journal of Plant Tissue Culture
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    • v.24 no.1
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    • pp.63-69
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    • 1997
  • Erythropoietin (EPO) is a glycoprotein that mediates the growth and differentiation of erythroid progenitors. In order to produce recombinant human erythropoietin in tobacco plant, the EPO genomic DNA (5.4 kb) was cloned into plant expression vectors, pBI$\Delta$GUS121, pBD$\Delta$GUS121 and pPEV-1, and introduced in Nicotiana tabacum (var. Xanthi) via Agrobacterium tumefaciens-mediated transformation. After selection on MS media containing kanamycin (Km), 10 Km-resistant plants were obtained per each construct. The correct integration of EPO genomic DNA in the genome of transgenic plant was confirmed by polymerase chain reaction (PCR). Northern blot showed that transcripts of 1.8 kb length were produced in leaves of the plants, but there was no difference of mRNA amount according to promoter number and 5'-untranslated sequence (UTS). The proteins obtained from leaves of transgenic plants were immunologically detected by Western blot using rabbit anti-human EPO polyclonal antibody. The expressed protein appeared as smaller band of apparent mass of 30 kDa as compared to the EPO protein from human urine (37 kDa), suggesting that the modification (glycosylation) system in tobacco plant might be different from that of mammalian cells.

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Regeneration of Fertile Transgenic Rice Plane from a Korean Cultivar, Nakdongbyeo (한국 재배종 낙동벼에서 임성 형질전환식물체의 재분화)

  • Soo In LEE;Hyun Jin CHUN;Chae Oh LIM;Jeong Dong BAHK;Moo Je CHO
    • Korean Journal of Plant Tissue Culture
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    • v.22 no.3
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    • pp.175-182
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    • 1995
  • Rice is one of the most successful monocot in regenerating fertile and genetically stable transgenic plants. However there is no report of a rice line developed in Korea that can be used for regeneration of fertile and genetically stable transformants. In this paper we first demonstrate that a Korean variety Nakdongbyeo, is suitable to obtain transgenic rice plants. Protoplasts from embryogenic suspension cultures were co-transformed with HPT (hygromycin phosphotransferase) and GUS ($\beta$-glucuronidase) genes in separate plasmids in the presence of PEG (polyethylene glycol). In 5 independent experiment, the average frequency of calli showing hygromycin resistance were 1.73%. Plantlets were regenerated from the Hy $g^{R}$ calli. The average efficiency of plantlet regeneration was apprbximately 27%. Based on the GUS activities of hygromycin resistant calli, ca.35% of the resistant calli carried active GUS genes. The R0 transgenic plantlets were grown to maturity and Rl seeds were obtained. By examining the in siぉ activity of GUS in Rl seeds and seedlings, we confirmed that the GUS transgene driven by a CaMV 35S (cauliflower mosaic virus) promoter showed proper expression patterns. We also confirmed Mendelian segregation of the HPT transgene in the Rl generation.n.

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Development of herbicide tolerant soybean using Agrobacterium tumefaciens (아그로박테리움을 이용만 제초제 저항성 콩 개발)

  • Lee, Ki-Jong;Park, Hong-Jae;Yi, Bu-Young;Lee, Kyeong-Ryeol;Kim, Myung-Sik;Woo, Hee-Jong;Jin, Yong-Moon;Kweon, Soon-Jong
    • Journal of Plant Biotechnology
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    • v.35 no.1
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    • pp.69-74
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    • 2008
  • This study aims to establish the efficient soybean transformation system and develop soybean [Glycine max (L.) Merill] transformants using cotyledonary node explants. The cotyledonary node of soybean were co-cultivated with Agrobacterium tumefaciens strains (KYRT1, EHA105). These strains contain the binary vector pCAMBIA3301 which carries a herbicide-resistant far gene. Korean cultivars (Danbaekkong, Eunhakong) and foreign cultivars (Jack, Peking) were the most efficient in regenerating cotyledonary node. Therefore, they were chosen for the transformation. Results showed that the T-DNA transfer reached up to 60% and transformation efficiency reached up to 3% in the cotyledonary node explants from Jack cultivar, co-cultivated with EHA105 strain. Histochemical GUS evaluation showed that 12 individual lines, transformed with the 현 gene, have positive response. The transformed soybeans have been confirmed in the $T_0$ generation through phenotypic assay using herbicide $Basta^{(R)}$ and Southern blot analysis.

Functional characterization of a CCCH type zinc-finger protein gene OsZF2 by ectopic overexpression of the gene in rice (과발현 형질전환벼에서 CCCH type zinc-finger protein 유전자 OsZF2 기능 분석)

  • Lee, Jung-Sook;Yoon, In-Sun;Yoon, Ung-Han;Lee, Gang-Seob;Byun, Myung-Ok;Suh, Seok-Chul
    • Journal of Plant Biotechnology
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    • v.36 no.1
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    • pp.23-29
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    • 2009
  • We have previously isolated a CCCH type zinc-finger protein gene, OsZF2 (Oryza sativa Zinc Finger 2), from the cold-treated rice cDNA library. To investigate the potential role of OsZF2, transgenic rice lines over-expressing OsZF2 under the control of CaMV 35S promoter have been developed through Agrobacterium-mediated transformation. Elevated level of OsZF2 transcripts was confirmed by RNA gel blot analysis in transgenic rice. Under the 100 mM NaCl condition, the transgenic rice showed significantly enhanced growth rate in terms of shoot length and fresh weight, implicating that OsZF2 is likely to be involved in salt response of rice. In the field condition, however, the transgenic rice showed a dwarf phenotype and flowering time was delayed. Genome expression profiling analysis of transgenic plants using the 20K NSF rice oligonucleotide array revealed many up-regulated genes related to stress responses and signaling pathways such as chaperone protein dnaJ 72, salt stress-induced protein, PR protein, disease resistance proteins RPM1 and Cf2/Cf5 disease resistance protein, carbohydrate/ sugar transporter, OsWAK kinase, brassinosteroid LRR receptor kinase, and jasmonate O-methyltransferase. These data suggest that the CCCH type zinc-finger protein OsZF2 is a upstream transcriptional factor regulating growth and stress responsiveness of rice.

Transformation of Pisum sativum L. var sparkle: A Non Tissue Culture Method (Agrobacterium tumefaciens를 이용한 완두(Pisum sativum L.)의 형질전환)

  • Choi, Hong Jib;Park, Soon Ki;Yoon, Young Hwi;Kim, Dal Ung
    • Current Research on Agriculture and Life Sciences
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    • v.11
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    • pp.11-17
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    • 1993
  • The transfer of genetic material into pea tissue was accomplished by using an avirulent strain of Agrobacterium tumefaciens containing the binary vector. The method used for transformation requires non-tissue culture steps as it involves the inoculation of the site of the shoot removed of germinating seeds. The identification of ${\beta}$-glucuronidase activity in the tissues of $T_0$ pea plants indicates that the plant expressible ${\beta}$-glucuronidase gene, contained the T-DNA region from pLPBO2, had been transferred at least into somatic tissues. Putative transformed $T_0$ pea plants were advanced to produce $T_1$ plants which were also assayed for the presence of the transferred ${\beta}$-glucuronidase gene. The presence of the ${\beta}$-glucuronidase gene in DNAs isolated from $T_1$ plant was demonstrated by DNA gel blot hybridization. This analysis revealed that the transformed plants contained ${\beta}$-glucuronidase gene.

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Effect of Kelpak® on the promotion of in vitro rooting in transgenic rose plantlets (Kelpak® 침지 처리에 의한 형질전환 장미 기내 식물체 발근 촉진)

  • Lee, Su Young;Kwon, O Hyeon;Lee, Hye Jin;Kim, Won Hee
    • Journal of Plant Biotechnology
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    • v.41 no.4
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    • pp.212-215
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    • 2014
  • In order to promote in vitro rooting in SOD2-transgenic rose plantlets, which were not well rooted in a rooting medium (MS medium with NAA $0.03mg{\cdot}L^{-1}$), we dipped the plantlets into liquid $Kelpak^{(R)}$ before placing them in the rooting medium. After 4 weeks, $Kelpak^{(R)}$ significantly promoted in vitro rooting in the plantlets. Therefore, $Kelpak^{(R)}$ can be used successfully to aid in the in vitro rooting of rose plantlets with roots that are not well-generated.

The Introduction of Proteinase Inhibitor II (PI-II) Gene into Flowering Cabbage, Brassica oleracea var. acephala DC. (꽃양배추로의 Proteinase Inhibitor II ( PI-II ) 유전자 도입)

  • 김창길;정재동;안진흥
    • Korean Journal of Plant Tissue Culture
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    • v.25 no.1
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    • pp.45-50
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    • 1998
  • Hypocotyl explants of flowering cabbage were precultured on MS medium without kanamycin and then cocultured with Agrobacterium tumefaciens LBA4404;;pGA875 harboring insect resistantce proteinase inhibitor II(PI-II) gene in MS liquid medium adjusted pH 5.5 for 72hr. These explants were transferred to MS medium containing 20 mg/L kanamycin, 500 mg/L carbenicillin, and 1 mg/L BA. The explants were subsequently subcultured every 2 weeks. After 4 weeks of subculture, kanamycin-resistant shoots were obtained from selection medium. Leaves of putative transformants survived on MS selection medium containing 30 mg/L kanamycin. Incoporation of the PI-II gene into flowering cabbage was confirmed by PCR analysis of genomic DNA. Southern blot analysis showed that ECL-labeled probe for PI-II gene was hybridized to the expected amplified genomic DNA fragment of about 500 by from transgenic flowering cabbage.

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Isolation and Functional Identification of BrDSR, a New Gene Related to Drought Tolerance Derived from Brassica rapa (배추 유래 신규 건조 저항성 관련 유전자, BrDSR의 분리 및 기능 검정)

  • Yu, Jae-Gyeong;Park, Young-Doo
    • Horticultural Science & Technology
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    • v.33 no.4
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    • pp.575-584
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    • 2015
  • Drought stress is a crucial environmental factor determining crop survival and productivity. The goal of this study was to clearly identify a new drought stress-tolerance gene in Brassica rapa. From KBGP-24K microarray data with the B. rapa ssp. pekinensis inbred line 'Chiifu' under drought stress treatment, a gene which was named BrDSR (B. rapa Drought Stress Resistance) was chosen among 738 drought-responsive unigenes. BrDSR function has yet to be determined, but its expression was induced over 6-fold by drought. To characterize BrDSR, the gene was isolated from B. rapa inbred line 'CT001' and found to contain a 438-bp open reading frame encoding a 145 amino acid protein. The full-length cDNA of BrDSR was used to construct an over-expression vector, 'pSL100'. Tobacco transformation was then conducted to analyze whether the BrDSR gene can increase drought tolerance in plants. The BrDSR expression level in T1 transgenic tobacco plants selected via PCR and DNA blot analyses was up to 2.6-fold higher than non-transgenic tobacco. Analysis of phenotype clearly showed that BrDSR-expressing tobacco plants exhibited more tolerance than wild type under 10 d drought stress. Taking all of these findings together, we expect that BrDSR functions effectively in plant growth and survival of drought stress conditions.