• Title/Summary/Keyword: DNA probe method

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Molecular Identification of the Toxic Alexandrium tamiyavanichii (Dinophyceae) by the Whole-cell FISH Method

  • Kim Choong-Jae;Yoshimatsu Sada-Akfi;Sako Yoshihiko;Kim Chang-Hoon
    • Fisheries and Aquatic Sciences
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    • v.7 no.4
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    • pp.175-183
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    • 2004
  • The dinoflagellate Alexandrium tamiyavanichii Balech, a producer of toxins causing paralytic shellfish poisoning (PSP), has recently been considered as one of main organisms responsible for toxication of shellfish in Japan. In this study, A. tamiyavanichii was subjected to a molecular phylogenetic analysis inferred from 28S rDNA D1-D2 sequences and a species-specific LSU rRNA-targeted oligonucleotide DNA probe was designed to identify A. tamiyavanichii using the whole cell-FISH (fluorescence in situ hybridization). The sequences of the 28S rDNA D1-D2 region of A. tamiyavanichii showed no difference from A. cohorticular AF1746l4 (present name A. tamiyavanichii) and formed a distinct clade from the 'tamarensis species complex'. The probe, TAMID2, reacted specifically with A. tamiyavanichii cultured cells, without any cross-reaction with other species belonging to the same genus, including A. tamarense, A. catenella, A. affine, A. fraterculus, A. insuetum and A. pseudogonyaulax. In a test of cross-reactivity with a field sample, TAMID2 reacted consistently with only A. tamiyavanichii, indicating that the present protocol involving the TAMID2 probe might be useful for detecting toxic A. tamiyavanichii in a simple and rapid manner.

Development of prevotella intermedia ATCC 49046 Strain-Specific PCR Primer Based on a Pig6 DNA Probe (Pig6 DNA probe를 기반으로 하는 Prevotella intermedia ATCC 49046 균주-특이 PCR primer 개발)

  • Jeong Seung-U;Yoo So-Young;Kang Sook-Jin;Kim Mi-Kwang;Jang Hyun-Seon;Lee Kwang-Yong;Kim Byung-Ok;Kook Joong-Ki
    • Korean Journal of Microbiology
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    • v.42 no.2
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    • pp.89-94
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    • 2006
  • The purpose of this study is to develop the strain-specific PCR primers for the identification of prevotella inter-media ATCC 49046 which is frequently used in the pathogenesis studies of periodontitis. The Hind III-digested genomic DNA of P. intermedia ATCC 49046 were cloned by random cloning method. The specificity of cloned DNA fragments were determined by Southern blot analysis. The nucleotide sequence of cloned DNA probes was determined by chain termination method. The PCR primers were designed based on the nucleotide sequence of cloned DNA fragment. The data showed that Pig6 DNA probe were hybridized with the genomic DNA from P. intermedia strains (ATCC $25611^T$ and 49046) isolated from the Westerns, not the strains isolated from Koreans. The Pig6 DNA probe were consisted of 813 bp. Pig6-F3 and Pig6-R3 primers, designed base on the nucleotide Sequences Of Pig6 DNA Probe, were 3150 specific to the only both P. intermedia ATCC $25611^T$ and P. intermedia ATCC 49046. In the other hand, Pig6-60F and Pig6-770R primers were specific to the only P. intermedia ATCC 49046. The two PCR primer sets could detect as little as 4 pg of chromosomal DNA of P. intermedia. These results indicate that Pig6-60F and Pig6-770R primers have proven useful for the identification of P. intermedia ATCC 49046, especially with regard to the maintenance of the strain.

Development of TaqMan probe-based real-time PCR for rapid identification of beef, pork and poultry meat (소, 돼지, 가금육류의 신속한 동정을 위한 TaqMan probe를 이용한 real-time PCR 개발)

  • Koh, Ba-Ra-Da;Kim, Ji-Yeon;Na, Ho-Myung;Park, Seong-Do;Kim, Yong-Hwan
    • Korean Journal of Veterinary Service
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    • v.35 no.3
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    • pp.215-222
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    • 2012
  • Species-specific $TaqMan^{(R)}$ probe-based real-time PCR assays were developed for detection of beef, pork, chicken, duck, goose and turkey. The primer and probe sets used in this study were designed to be complementary to fibroblast growth factor (FGF) for cattle and pig, mitochondrial NADH dehydrogenase (ND) subunit 3 and ND2 for chicken and duck, 12S rRNA for goose and turkey, respectively. As internal positive control we used conserved region in the ribosomal 18S RNA gene to ensure the accuracy of the detection of target DNA by real-time PCR. We confirmed that real-time PCR assays with the primer and probe sets were positive for cattle, pig and chicken intended target animal species with no cross-reactivity with other non-target animal species. Only >50 ng DNA of beef show cross-reactivity in the determination of duck. Using species-specific primer and probe sets, it was possible to detect amounts of 0.1 ng DNA of cattle and pig, 1.0 pg DNA of chicken, duck and turkey, and 0.1 pg DNA of goose for raw samples, respectively. The detection limits were 0.1 ng DNA of cattle, 1.0 ng DNA of pig and 1.0 pg DNA of chicken for DNA mixtures (beef, pork and chicken) extracted from heat-treated ($121^{\circ}C$/5 min) meat samples. In conclusion, it can be suggested that the $TaqMan^{(R)}$ probe-based assay developed in this study might be a rapid and specific method for the identification of meat species in raw or cooked meat products.

Application of Species-specific DNA Probe to Field Samples of Alexandrium tamarense (Lebour) Balech (자연 시료로부터 Alexandrium tamarense을 위한 종 특이적 DNA탐침의 응용)

  • Cho, Eun-Seob;Kim, Gi-Young;Park, Hyung-Sik;Kim, Hak-Gyoon;Moon, Sung-Ki;Lee, Jae-Dong
    • Journal of Life Science
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    • v.12 no.3
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    • pp.250-255
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    • 2002
  • Fluorescent species-specific DNA probe (AT1) of toxic dinoflagellate Arexandrium tamarense was tested on several other species, on comparison of binding activity at different preservatives for fixation of the cells, at different culture age and estimation of cell density by light microscope or epifluorescent microscope using whole cell hybridization. Th AT1 probe specifically bound to Alexandrium tamarense, whereas it did not bind to other phytoplankton, in particular Alexandrium catenella, morphologically similar to Alexandrium tamarense, could not react to AT1 probe. When cells were fixed with all three preservatives, labeling cells of Alexandrium tamarense emitted strong fluorescent signal intensity. In addition, regardless culture days, binding activity with AT1 probe was strong. The tell densities estimated by epifluorescent microscope were than those estimated by light microscope. The enumeration and identifying of Arexandriurn tamarense using DNA probe method will be contributed to a new biotoxin monitoring and prediction system in field.

Classification and Genetic Variation Analysis Among Formae Speciales of Fusarium oxysporum by Using Recombinant DNA Probes (재조합 DNA probe에 의한 Fusarium oxysporum 분화형간의 분류 및 유전적 변이 분석)

  • Kim, Young-Tae;Kim, Hong-Gi
    • The Korean Journal of Mycology
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    • v.25 no.4 s.83
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    • pp.362-368
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    • 1997
  • Five formae speciales of Fusarium oxysporum in Korea were examined using RFLP analysis to find the possibility for classification and analyze genetic variations. DNAs from F. oxysporum f. sp. lycopersici, cucumerinum, fragariae, garlic and sesami were used with three recombinant probes such as pFC46, pFC52 and pFC57. Distinct differences among five formae speciales of this fungus were detected in RFLP band patterns based on southern hybridization of genomic DNA using each recombinant clone, which was a repetitive copy probe. Strains belong to four formae speciales could be very stable in genetic variation except f. sp. sesami which has more variation than the others based on the RFLP analysis. They formed their own cluster which has high similarity within the same formae specialis resulted from the UPGMA analysis for genetic relationship analysis and each cluster represented its own formae specialis. The method using three recombinant DNA probes could be a good tool for classification of formae speciales in F. oxysporum.

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IDENTIFICATION OF PORPHYROMONAS ENDODONTALIS USING POLYMERASE CHAIN REACTION(RCR) (중합효소연쇄반응(Polymerase Chain Reaction)을 이용한 Porphyromonas endodontalis의 동정에 대한 연구)

  • Lee, Sang-Yup;Yoon, Soo-Han
    • Restorative Dentistry and Endodontics
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    • v.23 no.1
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    • pp.328-338
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    • 1998
  • Porphyromonas endodontalis, an anaerobic Gram negative cocobacillus which was known to be associated with the infected root canals and periapical lesions, is very difficult to culture and to detect by the traditional method in that it requires much time to induce the specific black pigmentation, and it is very sensitive to oxygen and the antibiotics added in the culture medium. In this study, the nucleotide sequences of the 'probe h' (0.73kb), one of the specific DNA probes top. endodontalis (ATCC 35406) which had been developed by our department, was determined and then a pair of primers for PCR amplification was fabricated to identify P. endodontalis. The plasmids containing 'probe h' were purified by $Wizard^{TM}$ Midipreps DNA Purification System (Promega Corp.), and the nucleotide sequences of the 'probe h' were determined by the dideoxy chain termination method using TaqTrack Sequencing System (Promega Corp.) and detected by fluorescent labelling method. The sense/antisense PCR primers were designed with computer software (Lasergene, DNASTAR Ind. PCR was done with a programmable GeneAmp PCR System 2400 (Perkin Elmer-Cetus Co.). Each sample containing the whole genomic DNA of P. endodontalis and other black-pigmented Bacteroides was itailly denatured at $94^{\circ}C$ for 5 min and then subjected to 30 cycles, each of them consisting of 60s at $94^{\circ}C$, 60s at $60^{\circ}C$, and 90s. at $72^{\circ}C$. The amplified DNA was resolved electrophoretically in a 1.0 % agarose gel in 1X TAE buffer, stained with EtBr, and photographed on a UV transilluminator. The results were as follows : 1. The nucleotide sequences of 'probe h' (743 base pairs) were obtained by dideoxy chain termination method, and from that results the specific primers to P. endodontalis (ATCC 35406), 'Primer H1/ Primer H2', were designed. 2. It has been found that 'Primer H1/H2' could detect P. endodontalis (ATCC 35406) using PCR. 3. The PCR system with this primers may be a powerful technique to amplify the specific sequences of 'probe h' of P. endodontalis (ATCC 35406) that produce distinct identification of it from other black-pigmented Bacteroides, and this could help us to determine the nature of periapical disease.

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Rapid and Easy Detection of Porcine Epidemic Diarrhea Virus (PEDV) by in situ Hybridization (In Situ Hybridization에 의한 돼지 유행성설사증 (Porcine Epidemic Diarrhea)의 진단)

  • Park, Nam-yong;Cho, Ho-seong;Kim, Tae-ju;Park, Young-seok
    • Korean Journal of Veterinary Research
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    • v.43 no.3
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    • pp.477-483
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    • 2003
  • Molecular diagnostic techniques have been used to identify porcine epidemic diarrhea virus (PEDV), a causative agent of acute enteritis in swine, but they were difficult to be petformed and time-consuming. To detect PEDV in a rapid and easy way, we developed biotinylated cDNA probe for N gene encoding the nucleoproteins of PEDV. Formalin-fixed and paraffin-embedded tissues from 24 naturally infected pigs were used for the experiment. The ISH produced a positive reaction in all cases. When intestinal tissues were hybridized with PEDV probe, strong signals were seen in the villus enterocytes of the jejunum and ileum. Hybridization signals were also found in the duodenum from one pig and in colon from dnother. In conclusion, ISH with a biotinylated cDNA probe was provided to be a useful diagnostic method for detecting PEDV effectively in routinely processed tissue sections.

Cloning of 17S-Ribosomal RNA Gene from the Hygromycin Resistant Tetrahymena thermophila (Hygromycin내성 Tetrahymena thermophila의 17S-Ribosomal RNA유전자의 Cloning)

  • 홍용기
    • Microbiology and Biotechnology Letters
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    • v.14 no.2
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    • pp.133-137
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    • 1986
  • 17S-ribosomal RNA gene from the hygromycin resistant protozoan Tetrahymena thermophila hmr 3 was cloned on E. coli vector pBR 322 as part of study to work the 17S-rRNA structure and the mechanism of hygromycin resistance. The 17S-rDNA was inserted into the Hind 111 site of pBR 322. The clones having recombinant plasmid were selected by the method of colony hybridization with a 17S-rDNA probe of wild type B1868. The orientation of 17S-rDNA insert was located near the tetracycline resistant gene of pBR 322 in a clone 5-19 with the recombinant plasmid.

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Genomic Detection using Electrochemical Method (전기화학적 방법에 의한 유전자의 검출)

  • Choi, Yong-Sung;Lee, Kyung-Sup;Park, Dae-Hee
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.18 no.6
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    • pp.560-570
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    • 2005
  • In this paper, a microelectrode away DNA chip was fabricated on glass slide using photolithography technology. Several probe DNAs consisting of mercaptohexyl moiety at their 5' end were immobilized on the gold electrodes by DNA arrayer utilizing the affinity between gold and sulfu. Then target DNAs were hybridized and reacted with Hoechst 33258, which is a DNA minor groove binder and electrochemically active dye. Cyclic voltammetry in 5mA ferricyanide/ferrocyanide solution at 100 mV/s confirmed the immobilization of probe DNA on the gold electrodes. Linear sweep voltammetry or cyclic voltammetry showed a difference between target DNA and control DNA in the anodic peak current values. It was derived from Hoechst 33258 concentrated at the electrode surface through association with formed hybrid. It suggested that this DNA chip could recognize the sequence specific genes. It suggested that multichannel electrochemical DNA microarray is useful to develop a portable device for clinical gene diagnostic system.

DNA Ligand - Redox Active Molecule Conjugates as an Electrochemical DNA Probe

  • Ihara, Toshihiro;Maruo, Voshiyuki;Uto, Yoshihiro;Takenaka, Shigeori;Takagi, Makoto
    • Analytical Science and Technology
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    • v.8 no.4
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    • pp.887-894
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    • 1995
  • Toward the development of universal, sensitive, and convenient method of DNA (or RNA) detection, two kinds of electrochemically active DNA ligands. acridine - viologen and oligonucleotide - ferrocene conjugate, were prepared. Thermodynamic and electrochemical study revealed that these probes bound strongly to DNA, and showed a typical cyclic voltammograms, indicating a potential for use as a reversible electrochemical labelling agent for DNA. Especially, using the electrochemically active oligonucleotide, we have been able to demonstrate the detection of DNA at femtomole levels by HPLC equipped with ordinary electrochemical detector (ECD). These results lead to the conclusion that the redox-active probes are very useful for the microanalysis of nucleic acid due to the stabilily of the complexes, high detection sensitivity, and wide applicability to the target structures (single- and double strands) and sequences.

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