• Title/Summary/Keyword: Southern blot analysis

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Flanking Sequence and Copy-Number Analysis of Transformation Events by Integrating Next-Generation Sequencing Technology with Southern Blot Hybridization

  • Qin, Yang;Woo, Hee-Jong;Shin, Kong-Sik;Lim, Myung-Ho;Cho, Hyun-Suk;Lee, Seong-Kon
    • Plant Breeding and Biotechnology
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    • v.5 no.4
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    • pp.269-281
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    • 2017
  • With the continual development of genetically modified (GM) crops, it has become necessary to develop detailed and effective molecular characterization methods to select candidate events from a large pool of transformation events. Relative to traditional molecular analysis methods such as the polymerase chain reaction (PCR) and Southern blot hybridization, next generation sequencing (NGS) technology for whole-genome sequencing of complex crop genomes had proven comparatively useful for in-depth molecular characterization. In this study, four transformation events, including one in Bacillus thuringiensis (Bt)-resistant rice, one in resveratrol-producing rice, and two in beta-carotene-enhanced soybeans, were selected for molecular characterization. To merge NGS analysis and Southern blot-hybridization results, we confirmed the transgene insertion sites, insertion construction, and insertion numbers of these four transformation events. In addition, the read-coverage depth assessed by NGS analysis for inserted genes might provide consistent results in terms of inserted T-DNA numbers in case of complex insertion structures and highly duplicated donor genomes; however, PCR-based methods can produce incorrect conclusions. Our combined method provides an effective and complete analytical approach for whole-genome visual inspection of transformation events that require biosafety assessment.

Agrobacterium-mediated Transformation of Rice 'Ilmibyeo' using HPT Selection Maker Gene

  • Guo, Jia;Cho, Joon-Hyeong;Jo, Hye-Jeong;Seong, Eun-Soo;Wang, Myeong-Hyeon
    • Korean Journal of Plant Resources
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    • v.20 no.3
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    • pp.242-246
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    • 2007
  • This study was conducted to produce the transgenic plant of rice. We obtained Agrobacterium AGL1 harbaring pCambial 300 vector with HPT gene. We carried out PCR analysis of 22 ea putative transgenic rice to investigate transformed lines. The 3 ea transgenic lines were detected insertion of HPT gene. Transgenic lines selected from PCR analysis were performed by Southern blot. From Southern blot, we obtained that two transgenic lines detected single band. We are going to study the method improving of cotransformation as well as transformation efficiency in rice.

Expression of Glutathione Reductase Gene in Transgenic Tobacco Plant (형질전환 담배 식물체에서 Glutathione Reductase 유전자의 발현)

  • 이효신;조진기
    • Korean Journal of Plant Tissue Culture
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    • v.28 no.2
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    • pp.87-90
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    • 2001
  • BcGRl gene encoding cytosolic glutathione reductase of Chinese cabbage (Brassica campestris var. Pekinensis cv. Seoul) was placed under the control of the CaMV 35S promoter and introduced into tobacco (Nicotiana tabacum L. cv. Samsun) via Agrobacterium-mediated transformation. T$_{0}$ 32 independent plants transformed with BcGRl gene were selected with kanamycin and they were confirmed by polymerase chain reaction (PCR) and Southern blot analysis. Northern blot analysis revealed that the constitutive expression of BcGRl gene and there was no relationship between the copy number of introduced gene and the levels of BcGRl transcripts.

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EVALUATING TWO METHODS FOR FINGERPRINTING GENOMES FOR STREPTOCOCCUS MUTANS IN CHILDREN : A COMPARISON WITH AP-PCR AND SOUTHERN BLOT RFLP (유전자형에 따른 Streptococcus mutans의 subtyping: Southern blot RFLP와 AP-PCR을 이용한 비교)

  • Jeong, Tae-Sung;Kim, Shin
    • Journal of the korean academy of Pediatric Dentistry
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    • v.25 no.2
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    • pp.292-303
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    • 1998
  • The arbitrary primer polymerase chain reaction(AP-PCR) and Southern blot restriction fragment length polymorphism(RFLP) were used to genotype the cariogenic pathogen S. mutans in children. Following the morphologic chracteristics of colony on selective medium for S. mutans, total genomic DNA from 155 strains was extracted by conventional methods. Among 155 strains, 143 strains (92.3%) were confirmed S. mutans by PCR with dexA gene and 114 strains were used in this study. Three random sequence 10-base oligonucleotide primers were chosen for AP-PCR. The amplified DNA products were separated electrophoretically in a 2% agarose gel containing ethidium bromide and the banding patterns were compared among different strains. For RFLP analysis, DNA was digested with EcoRI and BamHI, separated on a 0.7 % agarose gel and transferred to a nylon membrane. The membrane was probed with a previously characterised 1.6 kilobases (kb) DNA fragment cloned from gtf B gene of S. mutans. The probe was labeled with isotope[$^{32}P-{\alpha}CTP$], and hybridized fragments were detected with intensifying screen. AP-PCR produced 4-8 DNA bands in the 0.25-10 kb regions and distinguished 9, 10 or 12 genotypes, depending on the specific primer used. Southern blot RFLP analysis revealed 2 hybridization patterns consisting of 1 DNA fragments 450, 500 bp. These results indicate that AP-PCR is more discriminative method for genotyping of S. mutans.

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Transformation of Orchardgrass (Dactylis glomerata L.) with Glutathione Reductase Gene (Glutathione Reductase 유전자의 도입에 의한 오차드그래스의 형질전환)

  • 이효신;배은경;김기용;원성혜;정민섭;조진기
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.21 no.1
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    • pp.21-26
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    • 2001
  • To develop transgenic orchardgrass resistant to reactive oxygen species produced from environmental stresses, a vector with the cytosolic glutathione reductase cDNA (BcGRl) from Chinese cabbage was constructed under the control of the cauliflower mosaic virus 35S promoter and was introduced into orchardgrass using Agrobacterium tumefaciens EHA101. Transgenic plants from hygromycin-selected calli of orchardgrass did not show any morphological difference from wild-type plants. The results of PCR amplification and genomic Southern blot analysis confirmed the integration of foreign gene into the chromosome of transgenic orchardgrass. Northern blot analysis with total RNA from leaves also confirmed the constitutive expression of BcGR1 in transgenic orchardgrass.

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Expression and Inheritance of bar Gene in Petunia hybrida Transformed with Agrobacterium (Petunia hybrida에 Agrobacterium으로 도입된 bar Gene의 발현과 후대검정)

  • Ha, Young-Min;Kim, Jong-Chul;Lee, Sang-Woo;Lee, Shin-Woo;Kim, Zhoo-Hyeon
    • Journal of Plant Biotechnology
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    • v.30 no.2
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    • pp.143-149
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    • 2003
  • This experiment was carried out to confirm the stability of bar gene introduced into petunia plant through Agrobacerium-mediated transformation. Twenty-five transgenic plants T$_{0}$ plants, back cross (BC$_1$) populations to wild type and F$_1$plants between different T$_{0}$ plants were prepared, and polymerase chain reaction(PCR), PCR-Southern blot analysis, and field test with 0.1% Basta treatment were done. The results of PCR, PCR-Southern blot hybridization, and field test indicated that NPTII and bar gene introduced into the genome of petuina plants were stably transmitted to their progenies, and conferred the plants resistance to herbicide, Basta.sta.

Structural Analysis of Repeated Tomato Phenylalanine Ammonia-Lyase Gene (PAL X1, PAL X2) (반복배열된 토마토 phenylalanine ammonia-Iyase(p AL X1, PAL X2) 유전자의 구조해석)

  • Lee, Shin-Woo;Yeo, Yun-Soo
    • Applied Biological Chemistry
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    • v.42 no.1
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    • pp.34-38
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    • 1999
  • We observed the structure of phenylalanine ammonia-lyase gene (PAL) which is one of the best studied plant defense-related genes responding to pathogen infection by producing suberin, lignin, and phytoalexins. In tomato, at least 5 different genetic loci have been identified by genomic southern blot hybridization and nucleotide sequence analyses of partially cloned gene fragments (Lee et al. 1992). However, our results suggest that two other isoforms designated as PAL X1 and PAL X2 are located on the chromosome in tomato plant. Furthermore, the preliminary results obtained from southern blot hybridization analyses of subcloned fragment digested with several restriction endonuclease indicated that PAL X1 and PAL X2 clones contain at least two copies of PAL gene and partial nucleotide sequence analyses of each subcloned fragment with the same primer taken from known nucleotide sequence of PAL5 gene indicated that they are located side by side on the same chromosome.

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A cDNA Clone for the 5' Exon of Chloroplast ATP Synthase Subunit I Gene (atpF) from Broccoli (Brassica oleracea L. var. Italica) and Its Expression Pattern

  • Choo Bong Hong
    • Journal of Plant Biology
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    • v.38 no.2
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    • pp.137-141
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    • 1995
  • We isolated a cDNA clone, BLSC1, encoding 5' exon of ATP synthase CF0 subunit I from broccoli. BLSC1 is 285 nucleotides long which consists of a 5' noncoding region of 34 nucleotides, a 5' exon of 145 nucleotides and an intron of 106 nucleotides. The 5' exon codes for 48 amino acids which reveals mostly hydrophobic. The amino acid sequence deduced from BLSC1 shares 83%, 83% and 91% identities with the genes coding for atpF from wheat, rice and spinach, respectively. Genomic Southern blot analysis for BLSC1 showed a typically strong signal for a gene located in the chloroplast genome. Northern blot analysis identified three major classes of transcripts showing strong positive signals in the leaves, but only trace amounts of the transcripts were identified in the other organs like stems, flowr buds and roots.

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Cloning of $\alpha$-Amylase Gene from Zea mays (옥수수 $\alpha$-amylase 유전자의 클로닝)

  • 김용욱;강신혜
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.38 no.3
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    • pp.275-282
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    • 1993
  • The objective of this study was to clone a partial fragment of $\alpha$-amylase from Korean maize. We designed and synthesized an oligonucleotide probe and two kinds of PCR primers based on cDNA conserved region of $\alpha$-amylase sequences from other plants. Total RNA from 3-day-old maize seedling was used as template for 1st strand cDNA synthesis and RNA-DNA hybrid was used as template for polymerase chain reaction(PCR). The product of PCR was about 0.5 kb long and inserted into pUC19. We named this recombinant plasmid as pZM$\alpha$'. The cloned fragment was certified by Southern blot analysis using labeled synthetic oligonucleotide as probe.

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Development of transgenic cucumbers expressing Arabidopsis Nit gene (애기장대 Nit유전자 발현 오이 형질전환체 개발)

  • Jang, Hyun A;Lim, Ka Min;Kim, Hyun A;Park, Yeon-Il;Kwon, Suk Yoon;Choi, Pil Son
    • Journal of Plant Biotechnology
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    • v.40 no.4
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    • pp.198-202
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    • 2013
  • To produce transgenic cucumber expressing Nit gene coffering abiotic resistance, the cotyledonary-node explants of cucumber (cv. Eunsung) were inoculated with A. tumefaciens transformed with pPZP211 or pCAMBIA2300 carrying Nit gene, that has cis-acting element involved in resistance to various abiotic environmental stresses. After co-cultivation, the procedures of selection, shoot initiation, shoot elongation, and plant regeneration were followed by cotyledonary-node transformation method (CTM, Jang et al. 2011). The putative transgenic plants were selected when shoots were grown to a length greater than 3 cm from the cotyledonary-node explants on selection medium supplemented with 100 mg/L paromomycin as a selectable agent. The confirmation of transgenic cucumber was based on the genomic PCR, Southern blot analysis, RT-PCR, and Northern blot analysis. A 105 shoots (4.12%) selected from the selection mediums were obtained from 2,547 explants inoculated. Of them, putative transgenic plants were only confirmed with 45 plants (1.77%) by genomic PCR analysis. Transgenic plants showed that the Nit genes integrated into each genome of 39 plants (1.53%) by Southern blot analysis, and the expression of gene integrated into cucumber genome was only confirmed at 6 plants (0.24%) by RT-PCR and Northern blot analysis. These results lead us to speculate that the genes were successfully integrated and expressed in each genome of transgenic cucumber.