• Title/Summary/Keyword: type II callus

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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.

Efficient Plant Regeneration Using Mature Seed-Derived Callus in Zoysiagrass (Zoysia japonica Steud.) (성숙종자 유래 캘러스를 이용한 들잔디 (Zoysia japonica Steud.)의 효과적인 식물체 재분화)

  • ;TOHYAMA, kohichi
    • Korean Journal of Plant Tissue Culture
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    • v.28 no.2
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    • pp.61-67
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    • 2001
  • Using mature seed-derived callus, optimal conditions for efficient callus growth and plant regeneration, and regeneration efficiency by callus type were investigated in zoysiagrass (Zoysia japonica steud.). Callus induction was highest when the seeds were cultured on MS medium containing 2 mg/L 2,4-D, 0.2 mg/L BAP, 4 mg/L thiamine-HCl and 100 mg/L $\alpha$-ketoglutaric acid. Callus growth was highest when callus were cultured on MS medium containing 0.5 mg/L 2,4-D, 0.05 mg/L BAP, 4 mg/L thiamine-HCl and 100 mg/L $\alpha$-ketoglutaric acid. Plant regeneration was highest when callus was transferred on MS medium containing 3% maltose and 1 mg/L BAP, or 1 mg/L thidiazuron (TDZ). The combinations and concentrations of 2,4-D and BAP were shown to be critical factors for both the frequency and the type of callus. And four morphologically distinct types of callus were induced from the 2,4-D and BAP treatment. Type I,II and III calli produced shoots upon subculture, while the watery callus, type IV produced roots without shoots. Of four types of callus, type I exhibited the maximum frequency (82%) of shoot regeneration and the minimum frequency (4%) of albinism.

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Production of Ginseng Saponins with Cell Culture(II) (세포배양에 의한 고려인삼 성분의 생산 연구(II))

  • Chi, Hyung-Joon;Shin, Kuk-Hyun;Kim, Hyun-Soo;Cho, Hee-Jae
    • Korean Journal of Pharmacognosy
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    • v.20 no.3
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    • pp.162-169
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    • 1989
  • Tissue culture of the roots of Panax ginseng was carried out to enhance the production of ginseng callus as well as to increase its contents of ginsenosides. A long cylinder type callus mass was formed when cultured IK callus by rotary shaking culture method, the growth ratio of the callus being 7.71 which was approximately 4 fold higher than those obtained by other culture methods. Ginsenosides $Rg_1$, Re and $Rb_1$ could be detected from the callus mass by TLC, however, their total contents were revealed to be approximately 9% compared to that of the fresh ginseng root equivalent by HPLC analysis,.

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The development of transgenic maize expressing Actinobacillus pleuropneumoniae ApxIIA gene using Agrobacterium (아그로박테리움을 이용한 Actinobacillus pleuropneumoniae ApxIIA (ApxII toxin) 유전자 발현 옥수수 형질전환체 개발)

  • Kim, Hyun-A;Yoo, Han-Sang;Yang, Moon-Sik;Kwon, Suk-Yoon;Kim, Jin-Seog;Choi, Pil-Son
    • Journal of Plant Biotechnology
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    • v.37 no.3
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    • pp.313-318
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    • 2010
  • To develop edible vaccines for swine, the embryogenic calli (type II) derived from HiII genotype were inoculated with A. tumefaciens strain C58C1 containing the binary vector pMYV611, 613, 616, and V621, 622 and 623 respectively. Six of those vectors carry nptII gene which confers resistance to paromomycin and apxIIA gene producing ApxII toxin which is generated in various serum types of A. pleuropneumoniae as a target gene. The 4,120 callus clones for pMYV611, 5,959 callus clones for pMYV613, 7,581 callus clones for pMYV616, 52,329 callus clones for V621, 48,948 callus clones for V622, and 56,188 callus clones for V623 were inoculated. The frequency of positive response clone was confirmed into range of 2.3% - 4.4% for each vectors by NPTII ELISA kit assay, and the selected callus clones of them were finally 3 callus clones from pMYV611 (0.07%), 4 callus clones from pMYV613 (0.07%), 2 callus clones from pMYV616 (0.03%), 51 callus clones from V621 (0.1%), 72 callus clones from V622 (0.15%), and 102 callus clones from V623 (0.18%) respectively. From the selected callus clones of each binary vector, the integration of the apxIIA gene into maize genome was detected from 2 plants of pMYV613 and 2 plants of V623 by Southern blot analysis.

Effect of Callus Type and Antioxidants on Plant Regeneration and Transformation of Tall Fescue (캘러스의 형태와 항산화물질 첨가가 톨 페스큐의 식물체 재분화와 형질전환효율에 미치는 영향)

  • Lee Ki-Won;Lee Sang-Hoon;Kim Do-Hyun;Lee Dong-Gi;Won Sung-Hye;Lee Hyo-Shin;Lee Byung-Hyun
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.26 no.2
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    • pp.77-82
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    • 2006
  • An efficient transformation system for the production of transgenic plants has been developed for tall fescue (Festuca arundinacea Schreb.) via Agrobacterium-mediated transformation of seed-derived callus. From the point of morphogenetic capacity, three types of callus were selected. High frequency of plant regeneration was obtained by selection of type II callus, and the plant regeneration frequency was 52.6% when embryogenic callus were cultured on the regeneration medium. Supplementation of the media with 10 mg/L $AgNO_3$ and 40 mg/L cysteine enhanced frequencies of plant regeneration up to 65.3%. The highest transformation efficiency was also obtained when type II callus were inoculated with Agrobacterium. Southern blot analysis of PCR products of transgenic plants demonstrated that transgenes were successfully integrated into the genome of tall fescue. Efficient regeneration system and transformation established in this study will be useful for molecular breeding of tall fescue through genetic transformation.

Yellowish Friable Embryogenic Callus (YFEC) Production and Plant Regeneration from Immature Embryo Cultures of Domestic Maize Cultivars and Genotypes (Zea may L.) (국내 옥수수 품종 및 계통의 미숙배 배양으로부터 Yellowish Friable Embryogenic 캘러스 (YFEC) 생산과 식물체 재생)

  • Cho Mi-Ae;Park Yun-Ok;Kim Jin-Suck;Park Ki-Jin;Min Hwang-Ki;Liu Jang-Ryol;Choi Pil-Son
    • Journal of Plant Biotechnology
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    • v.32 no.2
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    • pp.117-121
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    • 2005
  • Immature embryos of 3 cultivars (Du Me Chal, Mi Baek Chal, Heug Jeom Chal) and 5 genotypes (HW1, KL103, HW3, HW4, KW7) were cultured on medium containing MS salts, Eriksson's vitamins, 1 mg/L 2,4-dichlorophenoxyacetic acid, 25 mM proline, 100 mg/L casamino acid, 3 mM MES, 1.7 mg/L $AgNO_3$ and 20 g/L sucrose (SIM). Frequency of somatic embryo formation on explant of immature embryos showed in HW1 (45.20%), KL103 (5.75%), HW3 (37.20%), HW4 (30.10%), KW70 (55.20%), Mi Baek Chal (18.74%), Heug Jeom Chal (22.41%), Du Me Chal (36.72%) and Hi II type (<10%), respectively. Yellowish friable embryogenic callus (YFEC) such as type II callus of Hi II genotype only produced from the HW3 and Heug Jeom Chal, whereas other cultivars and genotypes were directly formed somatic embryos with late-embryonic stages or expanded yellowish compact somatic embryo with morphological abnormality. The yellowish friable embryogenic callus (YFEC) could be proliferated on the same medium, which were maintained embryogenic capacity for 6 months over. Upon transfer to first regeneration and second regeneration medium, somatic embryos converted to plantlets at a frequency of approximately 100%. However, the expanded somatic embryos with abnormal morphology were slowly proliferated when subcultured on the same medium, and some of them were degenerated or converted to plantlets at a frequency of approximately 25%. Accordingly, The Heug Jeom Chal and HW3 genotype will be further used for development of high frequency transformation system in domestic maize germplasm.

Distinctive response of maize (Zea mays L.) genotypes in vitro with the acceleration of phytohormones

  • Muppala, Sridevi;Gudlavalleti, Pavan Kumar;Pagidoju, Sreenu;Malireddy, Kodandarami Reddy;Puligandla, Sateesh Kumar;Dasari, Premalatha
    • Journal of Plant Biotechnology
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    • v.47 no.1
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    • pp.26-39
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    • 2020
  • In maize, immature embryos (IEs) are highly regenerative explants most suitable for producing high frequencies of plantlet regeneration in vitro. Apart from media, explants, and hormones, genotypic variation also influences in vitro characters to a great extent. In the present study, IEs were used to study the distinctive effect of variation of size/stage and hormones in different genotypes on five in vitro characters viz., frequency of callus induction, growth rate of total callus, frequency of E. callus induction, and volume and number of regenerated plantlets. LS medium with different concentrations of 2,4-D (0.5, 1.5, 2.5, 4.0 and 5.0 mg/L) were used to study the former four in vitro characters, and medium with 6-benzylaminopurine and kinetin (0.5 mg/L, each) was used for plantlet regeneration. IEs of 1.0, 1.5, 2.0, 2.5 and 3.0 mm in size were isolated from four inbred lines viz., NM74C, NM81A, NM5883 and NM5884. Two-way ANOVA revealed that explant size and genotypes, as well as hormonal concentrations showed significant effects on in vitro characters. Two millimeter IEs were found to be suitable for in vitro cultures. LS medium with 1.5 mg/L 2,4-D and LS with BAP and Kn (0.5 mg/L, each) were found to be the best hormonal concentrations for callus induction, maintenance, and regeneration, respectively. Among the four genotypes, NM81A and NM5883 yielded more non-embryogenic and Type I E. calli. In contrast, NM74C and NM5884 yielded more highly regenerative Type II calli. Inbred line NM5884 was found to be the best among these four genotypes.

Composition of Amino Acids in Domestic and Foreign Garlic Cultivars (국내외 재배종 마늘의 아미노산 조성)

  • Kwon, Soon-Tae;Chun, Ik Jo;Marklez, Cody
    • Korean Journal of Plant Resources
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    • v.27 no.1
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    • pp.35-42
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    • 2014
  • Correlation and similarity of garlic cultivars was analyzed by measuring the composition of twenty amino acids contents in the bulb and callus from twelve garlic cultivars which were collected from Korea and foreign countries. Arginine and asparagine occupied more than 78% of total amino acids both in bulb and callus followed by glutamic acid, lysine, aspartic acid, valine, glycine, histidine and ornithine in order. Based on correlation coefficients of amino acid composition in the bulb, twelve garlic cultivars were classified into three major groups. Danyang, Euiseong, Seosan, Jeju, Mongol and Turkey cultivars belong to group-I, Namdo, China, Mexico and Nepal cultivars are in group-II, and group-III includes Philippine and Daeseo cultivars. Based on amino acid composition in callus, group-I includes Mongol, Euiseong, Danyang and Seosan cultivars, group-II includes Jeju, Daeseo, China and Namdo cultivars, group-III includes Napal, Mexico, Philippine and Turkey cultivars. Composition of amino acid contained in both callus and bulb is a clear standard to identify northern-type garlic cultivars. Especially the composition of amino acids in callus is more distinctive standard of classification between northern and southern type garlic cultivars than that in bulbs.

Effects of Intramedullary K-wire Insertion on Femoral Lengthening in Canine with Monolateral External Fixator (단측성 외고정 기구를 이용한 개의 대퇴골 신연에 있어서 골수강내 K-강선 삽입의 효과)

  • Hwang, Jae-Min;Kim, Young-Ki;Chin, Hee-Tec;Seok, Seong-Hoon;Lee, Hee-Chun;Koh, Phil-Ok;Chang, Hong-Hee;Lee, Hyo-Jong;Yeon, Seong-Chan
    • Journal of Veterinary Clinics
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    • v.23 no.3
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    • pp.291-299
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    • 2006
  • During long bone lengthening, there are many disadvantages including axial deviation, malalignment and re-fracture which are commonly encountered inspite of its proven abilities. To study the effects of intramedullary K-wire application on the lengthening of long bone, ten skeletally mature mongrel dogs were separated into two groups(Group I, II). Right femurs of group I(5 dogs) were fixed with only monolateral external fixator after subperiosteal osteotomy. Right femurs of group II(5 dogs) were fixed with mono lateral external fixator and intramedullary K-wire after subperiosteal osteotomy. Lengthening was started at 7 days after the surgery with the rate of 0.5 mm per day for 5 weeks and the dogs were sacrificed after 15 weeks postoperatively to examine histologic differences and evaluate bone mineral density. Radiographic examination at an interval of two weeks was done to evaluate the type of callus formed and to analyze complications including instability of external skeletal fixation and axial deviation. Bone mineral density at the lengthened area and contralateral nonlengthened area were measured using quantitative computerized tomography. Histological examination of regenerated bone was performed using Masson's trichrome stain method. The radiographs demonstrated poor callus formation, higher incidence of axial deviation and screw loosening in the group I compared to the group II. The bone mineral density at the lengthened area in the group II was higher than that of the group I(P<0.05). Histological examination showed that the new bone trabeculae in the group II were greater than that of the group I. In conclusion, the combination of monolateral external fixator and intramedullary K-wire can prevent pin loosening, axial deviation and reduce healing period in dogs.

Development of Transgenic Tall Fescue Plants from Mature Seed-derived Callus via Agrobacterium-mediated Transformation

  • Lee, Sang-Hoon;Lee, Dong-Gi;Woo, Hyun-Sook;Lee, Byung-Hyun
    • Asian-Australasian Journal of Animal Sciences
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    • v.17 no.10
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    • pp.1390-1394
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    • 2004
  • We have achieved efficient transformation system for forage-type tall fescue plants by Agrobacterium tumefaciens. Mature seed-derived embryogenic calli were infected and co-cultivated with each of three A. tumefaciens strains, all of which harbored a standard binary vector pIG121Hm encoding the neomycin phosphotransferase II (NPTII), hygromycin phosphotransferase (HPT) and intron-containing $\beta$-glucuronidase (intron-GUS) genes in the T-DNA region. Transformation efficiency was influenced by the A. tumefaciens strain, addition of the phenolic compound acetosyringone and duration of vacuum treatment. Of the three A. tumefaciens strains tested, EHA101/pIG121Hm was found to be most effective followed by GV3101/pIG121Hm and LBA4404/pIG121Hm for transient GUS expression after 3 days co-cultivation. Inclusion of 100 $\mu$M acetosyringone in both the inoculation and co-cultivation media lead to an improvement in transient GUS expression observed in targeted calli. Vacuum treatment during infection of calli with A. tumefaciens strains increased transformation efficiency. The highest stable transformation efficiency of transgenic plants was obtained when mature seed-derived calli infected with A. tumefaciens EHA101/pIG121Hm in the presence of 100 $\mu$M acetosyringone and vacuum treatment for 30 min. Southern blot analysis indicated integration of the transgene into the genome of tall fescue. The transformation system developed in this study would be useful for Agrobacterium-mediated genetic transformation of tall fescue plants with genes of agronomic importance.