• 제목/요약/키워드: Transgenic rice plant.

검색결과 180건 처리시간 0.021초

형질전환 벼 현탁세포 배양에서 hGM-CSF의 in situ Recovery 연구 (In situ Recovery of hGM-CSF in Transgenic Rice Cell Suspension Cultures)

  • 명현종;최홍열;남형진;김동일
    • KSBB Journal
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    • 제30권3호
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    • pp.103-108
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    • 2015
  • Production of foreign proteins by transgenic plant cell cultures has several advantages such as post-translational modification, low risk of product contamination and low-cost production and purification. However, target proteins are degraded by extracellular proteases existing in the media. A solution to this problem is the use of perfusion culture and ion exchange chromatography for the application of integrated bioprocess using in situ recovery. With this method, production of human granulocyte-macrophage colony-stimulating factor (hGM-CSF) was investigated in this study. First, optimization of cell concentration during the induction phase for the production of hGM-CSF was examined. As cell concentration increased, the level of hGM-CSF was decreased due to the presence of extracellular proteases. Induction using sugarfree media produced 33% more hGM-CSF. The effects of pH on the binding of hGM-CSF to cationic and anionic exchange resins were also investigated. In terms of stability, optimal pH was found to be 5~7. In the case of using buffer exchange when CM-Sepharose was used as a cationic exchange resin, optimal pH for binding was 4.8 and adsorption yield was 77%. When DEAE-Sepharose was used as an anionic exchange resin, it was 5.5 (74%). Without buffer exchange, optimal pH was 4.6 (84%). From these results, an integrated bioprocess using in situ recovery with simultaneous production and separation of foreign protein in transgenic plant cell suspension cultures was found to be feasible.

Agrobacterium tumefaciens에 의한 벼 형질전환에 미치는 품종과 Acetosyringone의 영향 (Effects of Variety and Acetosyringone Influencing Transformation of Rice Mediated by Agrobacterium tumefaciens)

  • 권용삼;이효신;김경민;이병현;조진기;손재근
    • 식물조직배양학회지
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    • 제27권2호
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    • pp.95-100
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    • 2000
  • 배추에서 분리된 cytosolic glutathione reductase (BcGR1)유전자를 벼에 효과적으로 도입하기 위하여 몇 가지 실험을 수행하여 얻어진 결과를 요약하면 다음과 같다. 수정 후 3주된 미숙배에서 유도된 캘러스를 이용하여 형질전환 효율의 품종간 차이를 조사한 바 '대립벼'가 42.5%로 가장 높게 나타났다. 공동배양 배지 내에 acetosyringone (AS)이 첨가되지 않았을 경우 형질전환된 개체를 얻을 수 없었으나, 50$\mu$M을 첨가되었을 때 41.0%의 가장 높은 형질 전환효율을 나타내었다. PCR 증폭과 Southern blot 분석을 실시한바 BcGR1 유전자가 형질전환체의 게놈상에 정상적으로 삽입된 것이 확인되었으며, T$_1$세대 28개통 중 17개체의 hygromycin 저항성 유전형질이 3:1로 분리되었다.

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Genomic Variations of Rice Regenerants from Tissue Culture Revealed by Whole Genome Re-Sequencing

  • Qin, Yang;Shin, Kong-Sik;Woo, Hee-Jong;Lim, Myung-Ho
    • Plant Breeding and Biotechnology
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    • 제6권4호
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    • pp.426-433
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    • 2018
  • Plant tissue culture is a technique that has invariably been used for various purposes such as obtaining transgenic plants for crop improvement or functional analysis of genes. However, this process can be associated with a variety of genetic and epigenetic instabilities in regenerated plants, termed as somaclonal variation. In this study, we investigated mutation spectrum, chromosomal distributions of nucleotide substitution types of single-nucleotide polymorphisms (SNPs) and insertions/deletions (InDels) by whole genome re-sequencing between Dongjin and Nipponbare along with regenerated plants of Dongjin from different induction periods. Results indicated that molecular spectrum of mutations in regenerated rice against Dongjin genome ranged from $9.14{\times}10^{-5}$ to $1.37{\times}10^{-4}$ during one- to three-month callus inductions, while natural mutation rate between Dongjin and Nipponbare genomes was $6.97{\times}10^{-4}$. Non-random chromosome distribution of SNP and InDel was observed in both regenerants and Dongjin genomes, with the highest densities on chromosome 11. The transition to transversion ratio was 2.25 in common SNPs of regenerants against Dongjin genome with the highest C/T transition frequency, which was similar to that of Dongjin against Nipponbare genome.

Plastid Transformation in the Monocotyledonous Cereal Crop, Rice (Oryza sativa) and Transmission of Transgenes to Their Progeny

  • Lee, Sa Mi;Kang, Kyungsu;Chung, Hyunsup;Yoo, Soon Hee;Ming Xu, Xiang;Lee, Seung-Bum;Cheong, Jong-Joo;Daniell, Henry;Kim, Minkyun
    • Molecules and Cells
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    • 제21권3호
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    • pp.401-410
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    • 2006
  • The plastid transformation approach offers a number of unique advantages, including high-level transgene expression, multi-gene engineering, transgene containment, and a lack of gene silencing and position effects. The extension of plastid transformation technology to monocotyledonous cereal crops, including rice, bears great promise for the improvement of agronomic traits, and the efficient production of pharmaceutical or nutritional enhancement. Here, we report a promising step towards stable plastid transformation in rice. We produced fertile transplastomic rice plants and demonstrated transmission of the plastidexpressed green fluorescent protein (GFP) and aminoglycoside 3′-adenylyltransferase genes to the progeny of these plants. Transgenic chloroplasts were determined to have stably expressed the GFP, which was confirmed by both confocal microscopy and Western blot analyses. Although the produced rice plastid transformants were found to be heteroplastomic, and the transformation efficiency requires further improvement, this study has established a variety of parameters for the use of plastid transformation technology in cereal crops.

Sodium butyrate와 sodium pyruvate 첨가에 의한 hCTLA4Ig 생산성 증대 (Enhanced Production of hCTLA4Ig by Adding Sodium Butyrate and Sodium Pyruvate)

  • 유미희;김수진;권준영;남형진;김동일
    • KSBB Journal
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    • 제26권5호
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    • pp.386-392
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    • 2011
  • Human cytotoxic T-lymphocyte antigen 4-immunoglobulin (hCTLA4Ig), an immunosuppressive agent, was expressed in transgenic rice cells using RAmy3D promoter and RAmy1A signal peptide for the inducible production and secretion into culture media by sugar depletion. In this study, sodium butyrate was used as a small molecular enhancer (SME) to enhance the production of hCTLA4Ig in transgenic rice cell suspension cultures. When 1 mM sodium butyrate was added in sugar-free media, relative viability was not reduced, while the productivity was improved 1.3-fold. In addition, by supplementing 87 mM sodium pyruvate as an alternative energy source during the production phase, death rate of the cells was decreased. When sodium pyruvate was not added, most cells became dead at day 6. However, by adding sodium pyruvate, 18% of viability can be maintained until day 10 and the production of hCTLA4Ig was enhanced 1.4-fold. When the combination of sodium pyruvate and sodium butyrate at optimum concentrations was added, the highest viability and hCTLA4Ig production could be obtained. The highest level of hCTLA4Ig reached up to 35 mg/L at day 10.

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

  • 이혜정;;지무근;장대원;조용구
    • Journal of Plant Biotechnology
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    • 제38권4호
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    • pp.251-257
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    • 2011
  • 벼의 염기서열 분석이 완료됨에 따라 유전자의 세포내 기능을 밝히기 위한 기능유전체 연구가 활발히 진행되고 있다. 이를 위해 효율적으로 아그로박테리움을 이용해 원하는 유전자를 식물체 내로 형질전환을 하기 위한 노력은 지금도 계속 진행되고 있다. 본 실험에서는 캘러스를 유기한 후 아그로박테리움을 이용해 접종하는 기존의 방법과 달리, 성숙 종자를 소독한 후 2,4-D가 포함된 액체배지에 24시간 침종하여 배 부분이 발아하기 시작하는 종자를 이용해 바로 아그로박테리움을 접종하여 체세포변이의 발생을 최소화하고 유전자를 포함하고 있는 아그로박테리움이 식물 조직내로 침투할 수 있는 효율을 증가시키며, 그 후 캘러스를 유기하여 재분화 시킴으로써 형질전환 식물체를 얻는 방법을 새롭게 수립하였다. 배양과정 중 공동배양 배지에 아그로박테리움 성장억제물질인 silver nitrate와 항산화 물질인 DTT를 첨가하여 공동 배양 기간을 7일 이상으로 늘림으로써 벼 형질전환효율을 증가시킬 수 있었고, PCR 분석을 통해 원하는 목표 유전자가 형질전환체에 안정적으로 도입이 되는 것도 확인할 수 있었다. 또한, 이 방법은 형질전환 효율이 낮은 일품벼와 같은 품종에도 적용할 수 있을 것으로 판단된다. 이러한 결과를 종합해 볼 때, 본 실험을 통해 얻어진 새로운 공동배양 방법은 우수한 농업적 형질을 가진 벼 육종 소재 및 품종 개발시 효율적으로 이용할 수 있을 것으로 생각된다.

종자내 아미노산 합성 조절 유전자에 관한 연구 (Amino Acid Biosynthesis and Gene Regulation in Seed)

  • 임용표;서미정;조수진;이정희;이효연
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1996년도 제10회 식물생명공학심포지움 고등식물 발생생물학의 최근 진보
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    • pp.61-74
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    • 1996
  • Human and monogastric animals can not synthesize 10 out of the 20 amino asids and therefor need to obtain these from their diet. The plant seed is a major source of dietary protein. It is particular important in their study to increase nutritional quality of the seed storage proteins. The low contents of lysine, asparagine and threonenein various cereal seeds and of cystein and methionine. In legume seeds is due to the low proportions of these amino acids in the major storage proteins, we have tried to apply the three strategies; (1) mutagenesis and selection of specific amino acid analogue resistance, (2) cloning and expression study of lysine biosynthesis related gene, (3) transfomation of lysine rich soybean glycinin gene. The 5-methyltryptophan (5MT) resistant cell lines, SAR1, SAR2 and SAR3 were selected from anther derived callus of rice (Oryza sativa L. "Sasanishiki"). Among these selected cell lines, two (SAR1 and SAR3) were able to grow stably at 200 mg/L of 5MT. Analysis of the freed amino acids in callus shows that 5MT resistant cells (SAR3) accumulated free tryptophan at least up to 50 times higher than those that of the higher than of SAS. These results indicated that the 5MT resistant cell lines are useful in studies of amino acid biosynthesis. Tr75, a rice (Oryza sativa L., var. Sasanishiki) mutant resistant to 5MT was segregated from the progenies of its initial mutant line, TR1. The 5MT resistant of TR75 was inherited in the M8 generations as a single dominant nuclear gene. The content of free amino acids in the TR75 homozygous seeds increased approximately 1.5 to 2.0 fold compared to wild-type seeds. Especially, the contents of tryptophan, phenylalanine and aspartic acid were 5.0, 5.3 and 2.7 times higher than those of wild-type seeds, respectively. The content of lysine is significantly low in rice. The lysine is synthesized by a complex pathway that is predominantly regulated by feedback inhibition of several enzymes including asparginase, aspatate kinase, dihydrodipicolinat synthase, etc. For understanding the regulation mechanism of lysine synthesis in rice, we try to clone the lysine biosynthetic metabolism related gene, DHPS and asparaginase, from rice. We have isolated a rice DHPS genomic clone which contains an ORF of 1044 nucleotides (347 amino acids, Mr. 38, 381 daltons), an intron of 587 nucleotides and 5'and 3'-flanking regions by screening of rice genomic DNA library. Deduced amino acid sequence of mature peptide domain of GDHPS clone is highly conserved in monocot and dicot plants whereas that of transit peptide domain is extremely different depending on plant specie. Southern blot analysis indicated that GDHPS is located two copy gene in rice genome. The transcripts of a rice GDHPS were expressed in leaves and roots but not detected in callus tissues. The transcription level of GDHPS is much higher in leaves indicating enormous chloroplast development than roots. Genomic DNA clones for asparaginase genes were screened from the rice genomic library by using plaque hybridization technique. Twelve different genomic clones were isolated from first and second screening, and 8 of 12 clones were analyzed by restriction patterns and identified by Southern Blotting, Restriction enzyme digestion patterns and Southern blot analysis of 8 clones show the different pattern for asparaginase gene. Genomic Southern blot analysis from rice were done. It is estimated that rice has at least 2-3 copy of asparaginase gene. One of 8 positive clones was subcloned into the pBluescript SK(+) vector, and was constructed the physical map. For transformation of lysine rich storage protein into tobacco, soybean glycinin genes are transformed into tobacco. To examine whether glycinin could be stably accumulated in endosperm tissue, the glycinin cDNA was transcriptionally fused to an endosperm-specific promotor of the rice storage protein glutelin gene and then introduced into tobacco genomic via Agrobacterium-mediated transformation. Consequently the glycinin gene was expressed in a seed-and developmentally-specific manner in transgenic tobacco seeds. Glycinin were targeted to vacuole-derived protein bodies in the endosperm tissue and highly accumulated in the matrix region of many transgenic plant (1-4% of total seed proteins). Synthesized glycinin was processed into mature form, and assembled into a hexamer in a similar manner as the glycinin in soybean seed. Modified glycinin, in which 4 contiguous methionine residues were inserted at the variable regions corresponding to the C - teminal regions of the acidic and basic polypeptides, were also found to be accumulated similarly as in the normal glycinin. There was no apparent difference in the expression level, processing and targeting to protein bodies, or accumulation level between normal and modified glycinin. glycinin.

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항원 생산 기반으로서의 식물 연구 (Plants as platforms for the production of vaccine antigens)

  • 염정원;전재흥;정혁;김현순
    • Journal of Plant Biotechnology
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    • 제37권3호
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    • pp.250-261
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    • 2010
  • The expression of vaccine antigens in transgenic plants has the potential to provide a convenient, stable, safe approach for oral vaccination alternative to traditional parenteral vaccines. Over the past two decades, many different vaccine antigens expressed via the plant nuclear genome have elicited appropriate immunoglobulin responses and have conferred protection upon oral delivery. Up to date, efforts to produce antigen proteins in plants have focused on potato, tobacco, tomato, banana, and seed (maize, rice, soybean, etc). The choice of promoters affects transgene transcription, resulting in changes not only in concentration, but also in the stage tissue and cell specificity of its expression. Inclusion of mucosal adjuvants during immunization with the vaccine antigen has been an important step towards the success of plant-derived vaccines. In animal and Phase I clinical trials several plant-derived vaccine antigens have been found to be safe and induce sufficiently high immune response. Future areas of research should further characterize the induction of the mucosal immune response and appropriate dosage for delivery system of animal and human vaccines. This article reviews the current status of development in the area of the use of plant for the development of oral vaccines.

황 함유 필수아미노산이 증대된 기능성 형질전환 감자 개발 현황 (Development of transgenic potato with high content of sulphur-containing essential amino acids)

  • 구영민;김태원;이민경;이신우
    • Journal of Plant Biotechnology
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    • 제40권1호
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    • pp.1-8
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    • 2013
  • 감자는 벼, 보리, 밀과 함께 세계 4 대 식량작물에 속하며 고품질의 전분과 함께 비타민 C 함량이 높고 단백질의 함량도 높다. 그러나 메티오닌과 시스테인 등의 황 함유 아미노산과 함께 필수아미노산이 부족하여 영양학적으로 가치가 다소 낮다는 것이 단점이다. 따라서 최근에는 유전자재조합 기술 및 대사공학기술을 이용하여 이들 필수아미노산의 함량을 증대시키기 위한 연구가 활발히 진행되고 있다. 본 논문에서는 황 함유 필수 아미노산의 함량을 증가시키기 위한 연구현황 및 문제점 등을 조사하였다.

벼 Brassinosteroid Insensitive 1 Receptor Kinase의 기능에 관한 연구 (Functional analysis of the rice BRI1 receptor kinase)

  • 연진욱;김회택;노일섭;오만호
    • Journal of Plant Biotechnology
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    • 제43권1호
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    • pp.30-36
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    • 2016
  • Brassinosteroids (BRs) are essential plant steroid hormones required for cell elongation, plant growth, development and abiotic and biotic stress tolerance. BRs are recognized by BRI1 receptor kinase that is localized in the plasma membrane, and the BRI1 protein will eventually autophosphorylate in the intracellular domain and transphosphorylate BAK1, which is a co-receptor in Arabidopsis thaliana. However, little is known of the role OsBRI1 receptor kinase plays in Oryza sativa, monocotyledonous plants, compared to that in Arabidopsis thaliana, dicotyledonous plants. As such, we have studied OsBRI1 receptor kinase in vitro and in vivo with recombinant protein and transgenic plants, whose phenotypes were also investigated. A OsBRI1 cytoplasmic domain (CD) recombinant protein was induced in BL21 (DE3) E.coli cells with IPTG, and purified to obtain OsBRI1 recombinant protein. Based on Western blot analysis with phospho-specific pTyr and pThr antibodies, OsBRI1 recombinant protein and OsBRI1-Flag protein were phosphorylated on Threonine residue(s), however, not on Tyrosine residue(s), both in vitro and in vivo. This is particularly intriguing as AtBRI1 protein was phosphorylated on both Ser/Thr and Tyr residues. Also, the OsBRI1 full-length gene was expressed in, and rescued, bri1-5 mutants, such as is seen in normal wild-type plants where AtBRI1-Flag rescues bri1-5 mutant plants. Root growth in seedlings decreased in Ws2, AtBRI1, and 3 independent OsBRI1 transgenic seedlings and had an almost complete lack of response to brassinolide in the bri1-5 mutant. In conclusion, OsBRI1, an orthologous gene of AtBRI1, can mediate normal BR signaling for plant growth and development in Arabidopsis thaliana.