• Title/Summary/Keyword: Agrobacterium-mediated Transformation

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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binary vector (pPZP211) carrying with CaMV 35S promoter-nptII gene as selectable marker gene and 35S promoter-DQ gene (unpublished data) as target gene.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.

Agrobacterium-mediated transformation produces transgenic oilseed rape with a high-yield trait (아그로박테리움 형질전환법을 이용한 수량증대 유채 식물체 개발)

  • Jong Bo Kim
    • Journal of Plant Biotechnology
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    • v.50
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    • pp.63-69
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    • 2023
  • This study includes the transformation of genes such as ORE7, the increase of gene expression, and the use of the bar gene as a selectable marker that shows herbicide resistance with Agrobacterium tumefaciens using hypocotyls from the oilseed rape "Youngsan" cultivar. To establish an Agrobacterium transformation system for the production of oilseed rape with a high-yield trait, infection time and co-cultivation period with Agrobacterium were tested. Therefore, when hypocotyls from the oilseed rape "Youngsan" cultivar were infected with Agrobacterium for 20 min and co-cultivated for 3 days, approximately 32-36 putatively transformed hypocotyls with shoots including roots survived from 100 inoculated hypocotyls after 4 weeks of transformation on a selection medium containing 20 mg/L of phosphinothricin (PPT) as a selectable agent. Additionally, a PCR assay was performed to confirm the insertion of target genes and showed the presence of the ORE7 gene as a high-yielding trait and the bar gene as a selectable marker. Treatment with 0.5% (v/v) Basta solution as a selectable agent for 6 days with leaves from transformed oilseed rape expressed the bar gene. Therefore, this study can contribute to the development of special oilseed rapes containing agriculturally useful traits such as herbicide resistance, drought tolerance, high yielding traits, and high oleic acid content.

Transformation of Maize Controlling Element Ac and Ds into Armoracia rusticana via, Agrobacterium tumefaciens (Agrobacterium tumefaciens를 매개로 한 옥수수 유동유전자 Ac 및 Ds에 의한 서양고추냉이 (Armoracia rusticana)의 형질전환)

  • 배창휴;노일섭;임용표;민경수;김동철;김학진;이효연
    • Korean Journal of Plant Tissue Culture
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    • v.21 no.6
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    • pp.319-326
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    • 1994
  • For the gene tagging of Armoracia rusticana, maize controlling element Ac and Ds were introduced into A.rusticana via Agrobacterium-mediated transformation method. We established an efficient in via regeneration and transformation system for gene transfer in A. rusticana. The optimum in via regeneration condition has been obtained from leaf, petiole and root organs on modified MS medium supplemented with NAA 0.1 mg/L plus BA 1.0 mg/L for direct shooting and with free growth regulators for root induction for transformation, the leaf, petiole and root explants of A. rusticana were concultivated with Agrobacterium tumefaciens, LBA4404 which carries a binary vector pEND4K containing maize controlling element Ac or Ds, respectively: Selections were performed in the shoot induction medium supplemented with 100 mg/L kanamycin, and 500 mg/L carbenicillin transformation frequency showed about 8 to 10% in case of leaf disks. PCR md Southern blot analyses showed that the Ac and the Ds elements were integrated into the chromosome of donor plants.

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Genetic Transformation of Populus nigro x maximowiczii Using Agrobacterium tumefaciens Harboring Antisense OMT Gene

  • Ahn, In-Suk;Park, Young-Goo;Shin, Dong-Ill;Woo, Sahng-Young;Park, Hee-Sung;Park, Jang-Won;Sul, Ill-Whan
    • Journal of Plant Biotechnology
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    • v.3 no.3
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    • pp.135-140
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    • 2001
  • An Agrobacterium tumefaciens LBA4404 (harboring antisense OMT gene)-mediated transformation method has been developed for poplar (P.nigra x maximowiczii) using prolonging co-cultivation time. Explants on LT (longterm) were induced transgenic calli one month earlier than those from ST (short-term) co-cultivation and remained healthier on LT than ST. With this approach, LT method reduced time to produce transgenic calli. Shoots were successfully regenerated from transgenic calli on SIM (Shoot Induction Medium) and rooted well on the basal medium spontaneously. The presence of antisense OMT gene was verified both by PCR and Southern analysis. Each transgenic poplar was phenotypically indishtinguishable when compared with controls for their growth pattern, leaf morphologies and xylem coloration.

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Genetic transformation of Sedum erythrostichum via Agrobacterium-mediated transformation by introducing herbicide-resistant gene (아그로박테리움을 통한 제초제 저항 꿩의비름(Sedum erythrostichum) 형질전환체 개발)

  • 윤의수;정재훈;최용의
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2002.11b
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    • pp.30-30
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    • 2002
  • 꿩의비름 (Sedum erythrostichum)은 매우 우수한 지피식물이며 건조에 강한 대표적 식물로 바위정원 (rock garden)을 가꾸는데 있어서 중요한 수종으로 이용되며, 유럽등지에서는 지붕에 식재하기도 하며 최근에는 빌딩옥상녹화의 대표적 수종으로 식재되고 있다. 또한 한방에서는 경천이라 불리우기도 하는데 피부상처 치유 및 미백효과가 탁월하다고 알려져 있다. 본 연구에서는 Agrobacterium을 매개로한 꿩의비름의 형질전환 시스템을 개발하고 아울러 phosphinothricin-N-acetyltransferase (PAT) 유전자를 도입하여 제초제 저항 식물을 개발하고자 수행되었다. 꿩의비름 잎을 Agrobacterium에 담근후 0.5 mg/l NAA와 2 mg/1 BA가 첨가된 MS 배지에 3일간 공동배앙 하였다. 그 후 300 mg/1 cefotaxime이 첨가된 같은 배지에 옮겨 계대하면서 Agrobacterium을 제거하였다. 약 3주후에 잎 절편으로 부터 직접적으로 부정아가 형성되기 시작 하였는데 이 시기부터 잎 절편을 25 mg/1 kanamycin이 첨가된 선발배지에 옮겨 주었다. 이 결과 배양된 잎 절편 절편 중 3.75%에서 kanamycin에 저항하는 부정아를 얻을 수 있었다. 형질전환체는 X-gluc 반응, PCR, Southern, Nothern analysis를 통하여 확인하였다. 약 94%의 형질전환 식물체는 성공적으로 토양에 옮길 수 있었으며 약 3개월후에 꽃을 피웠다. 형질전환체는 제초제인 Basta ($^{(R)}$ phosphinothricine at 200 mg/1)를 살포하여 주었을 경우 생존함을 확인 하였다.

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Direct Regeneration of Transgenic Buckwheat from Hypocotyl Segment by Agrobacterium-mediated Transformation

  • Kim, Hyun-Soon;Kang, Hyeon-Jung;Lee, Young-Tae;Lee, Seung-Yeob;Ko, Jeong-Ae;Rha, Eui-Shik
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.46 no.5
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    • pp.375-379
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    • 2001
  • Transgenic plants from hypocotyl segments of buckwheat were produced with the Agrobacterium strain LBA4404 harboring the binary vector pBI121 containing chimeric genes of neomycin phosphotransferase II (npt II) and $\beta$-glucuronidase (gus). Two weeks after co-cultivation with Agrobacterium, most of the hypocotyl segments gradually became brown and died on the selection medium containing 100mg/$\ell$ of kanamycin. Plants regenerated from the hypocotyl explants grown on selection medium were GUS-positive in the leaf, stem and vascular tissues by histochemical assay, and varied in gus activity (440-2568 pmol, 4-MU/mg protein) by fluorimetry. The plants showing GUS activity were confirmed of containing GUS and NPT-II genes by polymerase chain reaction (PCR). Within 3 months, transgenic buckwheat plants were able to obtained from the hypocotyl segments.

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Agrobacterium-mediated transformation of Bacillus thuringiensis cry1Ac gene in chrysanthemum (Dendranthema grandiflorum Kitamura) 'Linneker Salmon' (국화(Dendranthema grandiflorum Kitamura) 'Linneker Salmon'에 Agrobacterium을 이용한 Bacillus thuringiensis cry1Ac 유전자의 형질전환)

  • Han, Bong-Hee;Lee, Su-Young;Lim, Jin-Hee
    • Journal of Plant Biotechnology
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    • v.35 no.2
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    • pp.147-153
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    • 2008
  • Cry1Ac gene was introduced into chrysanthemum (Dendranthema grandiflorum Kitamura) 'Linneker Salmon' through Agrobacterium-mediated gene transformation to develop new lines showing resistance to tobacco cutworm (Spodoptera litura). Cry1Ac gene was transferred into chrysanthemum by Agrobacterium C58C1 containing pCAMBIA2301. After infection of Agrobacterium C58C1 with leaf segments, the segments were cultured on regeneration medium (MS + 1.0 mg/L BA + 0.5 mg/L IAA) containing 10 mg/L kanamycin for the first selection, on the same medium containing 20 mg/L kanamycin for the second selection, and on rooting medium (MS basal medium) containing 20 mg/L kanamycin for the third selection. Until the third selection, sixty nine plantlets (1.6%) were survived and rooted. Thirty six ones (0.8%) among them were confirmed as putative transformants with nptll gene by nptll primer PCR, and 35 (0.8%) of 36 ones as transformants with nptll gene and cry1Ac gene by Southern analysis. The gene transformation efficiency of cry1Ac gene was favorable with 0.8%. The resistance of tobacco cutworm (Spodoptera litura) in chrysan-themum transformant introduced cry1Ac gene was tested in green house. Three transformants were confirmed to have resistance to tobacco cutworm.

Effect of Surface Sterilization Method on Agrobacterium-mediated Transformation of Field-grown Zoysiagrass Stolon (포장생육 잔디 포복경을 이용한 잔디 형질전환에 있어서 살균방법의 영향)

  • Ahn, Na-Young;Alam, Iftekhar;Kim, Yong-Goo;Bae, Eun-Ji;Lee, Kwang-Soo;Lee, Byung-Hyun
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.33 no.2
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    • pp.100-104
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    • 2013
  • Zoysiagrass (Zoysia japonica Steud.) is an important forage and turfgrass that spreads by stolons and rhizomes. Zoysiagrass stolon can be used directly for Agrobacterium-mediated genetic transformation by exploiting the potential of direct shoot formation. However, surface sterilization of field-grown stolons is difficult and remains to be explored. We developed an effective surface sterilization and culture method using the stolon explant for infection with Agrobacterium tumefaciens. Among various treatments, sequential disinfection in 30% bleach for 15 min followed by 0.1% mercuric chloride for 25 min resulted in the highest number of clean stolons. The efficacy of mercuric chloride was increased under vacuum conditions by incubating at 800 mbar for 5 min. The inclusion of 2.5 mg/l amphotericin B further prevents fungal growth in in vitro cultures. This protocol would speed up the development of transgenic plants by utilizing field-grown stolon nodes.

Factors Affecting Genetic Transformation of Italian Ryegrass (이탈리안 라이그래스의 형질전환에 미치는 몇 가지 요인의 영향)

  • Lee, S.H.;Woo, H.S.;Lee, B.H.
    • Journal of Animal Science and Technology
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    • v.46 no.2
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    • pp.235-242
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    • 2004
  • A system for the production of transgenic plants has been developed for Italian ryegrass(Lolium mult리orum Lam.) via Agrobacterium-mediated transformation of embryogenic callus. Mature seed-derived calli were infected and co-cultured with Agrobacterium EHA101 carrying standard binary vector pIG121Hm encoding the hygromycin phosphotransferase(HPT), neomycin phosphotransferase II (NPTII) and intron-oontaining $\beta$g1ucuronidase( intron-GUS) genes in the T-DNA region. The effects of several factors on transformation and the expression of the GUS gene were investigated. Inclusion of 200${\mu}M$ acetosyringone(AS) in inoculation and co-cultivation media lead to a significant increase in stable transformation efficiency. Increasing Agrobacterium cell density up to 1.0 in $OD_{600}$ during infection increased transfonnation efficiency of embryogenic calli. The highest transfonnation efficiency was obtained when embryogenic calli were incoulated with Agrobacterium in the presence of 0.1% Tween20 and 200${\mu}M$ AS. Hygromycin resistant calli were developed into complete plants via somatic embryogenesis. GUS histochemical assay and PCR analysis of transgenic plants demonstrated that transgenes were integrated into the genome of Italian ryegrass.

Plant Regeneration and Transformation of Kentucky Bluegrass(Poa pratensis L.) via the Plant Tissue Culture (조직배양을 이용한 Kentucky bluegrass(Poa pratensis L.)의 식물체 재분화 및 형질전화 조건의 검토)

  • Miki Kusano;Koichi Tohyama;Bae, Chang-Hyu;Riu, Key-Zyung;Lee, Hyo-Yeon
    • Journal of Plant Biotechnology
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    • v.30 no.2
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    • pp.115-121
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    • 2003
  • In this study, plant regeneration and Agrobacterium tumefaciens-mediated transformation Kentucky bluegrass(Poa pratensis L.) were evaluated. Three different types of calli were produced depending on the combinations of growth regulators. They were non-friable brown or gray-colored callus (type I), compact, friable and yellow or white-colored callus (typeII), and soft, watery translucent callus with differentiated structure (typeIII). The highest regenerable organogenic callus (typeII) was obtained on the medium containing 1mg/L, 2,4-D and 0.1mg/L BA. Additionally, the production of typeII calli increased significantly when AgNO$_3$ was added to the callus induction and growth medium. The highest frequency of multiple shout formation from typeII callus was obtained on MS medium containing 1mg/L BA and 1mg/L Thidiazuron(TDZ). The organogenic calli(typeII) were inoculated with Agrobacterium tumefaciens strain EHA101 harboring the binary vector pIG121Hm with $\beta$-glucuronidase gene, and various factors were found to influence the transfer-DNA delivery efficiency. The highest transient GUS activity was observed on typeIIcallus. In the present work, we reported the first transient GUS activity of Kentucky bluegrass mediated by Agrobacterium tumefaciens. Our system may contribute to genetic improvement for breed-recalcirtrant grass species, Kentucky bluegrass.