• Title/Summary/Keyword: AS-PCR

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Rapid identification of bacterial pathogens related with bovine respitatory diseases by using PCR (PCR을 이용한 소 세균성 호흡기질병 원인체 신속동정)

  • Jung, Byeong-yeal
    • Korean Journal of Veterinary Research
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    • v.44 no.3
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    • pp.399-405
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    • 2004
  • Haemophilus somnus, Mycoplasma bovis and Pasteurella multocida were responsible for respiratory diseases in bovine. Methods for identifying these bacteria had poor sensitivity and specificity. In this paper, PCR assays were applied for rapid identification of H. somnus, M. bovis, P. multocida B:2 and P. multocida capsular types. The specific PCR products were amplified from H. somnus, but not from other bacteria. Ten-fold diluted H. somnus were mixed with P. multocida and then the mixed cultures were inoculated on agar plates. After incubation, PCR was performed with harvest from agar plates and could detect as few as 3.4 CFU/ml of H. somnus. The primers MboF and MboR produced an amplification product unique to M. bovis and sensitivity of PCR was as low as 100 pg of DNA. Only serotype B:2 of P. multocida, the causal agent of haemorrhagic septicemia in bovine, was specifically amplified in PCR among the 16 reference serotypes. The multiplex capsular PCR typing for P. multocida was produced the P. multocida specific product as well as the capsular serogroup-specific product. The present PCR assays should be useful for the rapid identification of bacterial pathogens from bovine respiratory diseases.

Development of Raw Material Identification Method of Changnan-jeot and Gaiyang-jeot Using Multiplex PCR and Real-Time PCR (Multiplex PCR과 Real-Time PCR을 이용한 창난젓과 가이양젓 원료 검사법 개발)

  • Choi, Seong Seok;Seo, Yong Bae;Kim, Jong-Oh;Yang, Ji-Young;Shin, Jiyoung;Kim, Gun-Do
    • Journal of Food Hygiene and Safety
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    • v.36 no.4
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    • pp.289-297
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    • 2021
  • In this study, multiplex PCR and real-time PCR were performed on Theragra chalcogramma (walleye pollock), Pangasianodon hypophthalmus (iridescent shark) and their processed foods, such as changnan-jeot and gaiyang-jeot (salted iridescent shark intestine). Species-specific primers for T. chalcogramma and P. hypophthalmus were designed, and genomic DNA was directly extracted from each sample to perform single PCR and multiplex PCR. As a result of PCR, in the case of single PCR, PCR bands of T. chalcogramma (297 bp) and P. hypophthalmus (132 bp) were identified, and in the case of multiplex PCR, it was confirmed that amplification occurred without cross-reaction between T. chalcogramma and P. hypophthalmus. As a result of checking the PCR sensitivity, the concentration of genomic DNA was detected up to 0.1 ng/µL in both single PCR and multiplex PCR. The real-time PCR results showed that the average Ct value of T. chalcogramma was 20.765±0.691, and the average Ct value of P. hypophthalmus sample was 35.719±1.828 in the T. chalcogramma species-specific primers. In the P. hypophthalmus species-specific primers, the average Ct value of the T. chalcogramma sample was 35.996±1.423, and the mean Ct value of the P. hypophthalmus sample was 20.096±0.793. These results demonstrated the significant differences in the efficiency, specificity and cross-reactivity of species-specific primers in real-time PCR. Based on these findings, 7 of changnan-jeot or gaiyang-jeot products were confirmed by multiplex PCR and real-time PCR, and valid results were confirmed in all samples.

Rapid and Sensitive Detection of Infectious Pancreatic Necrosis Virus (IPNV) by Revers Transcription-Polymerase Chain Reaction (RT-PCR) (PT-PCR 법에 의한 Infectious Pancreatic Necrosis Virus의 조기진단)

  • 강호성;공희정;구현나;박정우;손상규;박명애;김한도
    • Journal of Aquaculture
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    • v.10 no.2
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    • pp.171-178
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    • 1997
  • Infectious pancreatic necrosis virus (IPNY) is an economically important fish pathogen since it causes the high-mortality disease in early stage of hatchery-reared fishes. In order to develop a rapid, sensitive and highly specific detection method for IPNV, reverse transcription-polymerase chain reaction (RT-PCR) was carried out using the oligonucleotide primers selected from the sequence of VP2, a major capsid polypertide of IPNV. As little as 40ng of purified IPNV dsRNA was detected by RT-PCR amplification, but no amplification products were obtained when nucleic acid genomes from other fish pathogens such as IHNV were used as RT-PCR templates. in situ RT-PCR methods are useful for the rapid and sensitive identification of IPNV.

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High-accuracy quantitative principle of a new compact digital PCR equipment: Lab On An Array

  • Lee, Haeun;Lee, Cherl-Joon;Kim, Dong Hee;Cho, Chun-Sung;Shin, Wonseok;Han, Kyudong
    • Genomics & Informatics
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    • v.19 no.3
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    • pp.34.1-34.6
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    • 2021
  • Digital PCR (dPCR) is the third-generation PCR that enables real-time absolute quantification without reference materials. Recently, global diagnosis companies have developed new dPCR equipment. In line with the development, the Lab On An Array (LOAA) dPCR analyzer (Optolane) was launched last year. The LOAA dPCR is a semiconductor chip-based separation PCR type equipment. The LOAA dPCR includes Micro Electro Mechanical System that can be injected by partitioning the target gene into 56 to 20,000 wells. The amount of target gene per wells is digitized to 0 or 1 as the number of well gradually increases to 20,000 wells because its principle follows Poisson distribution, which allows the LOAA dPCR to perform precise absolute quantification. LOAA determined region of interest first prior to dPCR operation. To exclude invalid wells for the quantification, the LOAA dPCR has applied various filtering methods using brightness, slope, baseline, and noise filters. As the coronavirus disease 2019 has now spread around the world, needs for diagnostic equipment of point of care testing (POCT) are increasing. The LOAA dPCR is expected to be suitable for POCT diagnosis due to its compact size and high accuracy. Here, we describe the quantitative principle of the LOAA dPCR and suggest that it can be applied to various fields.

Detection of Adulteration and Species Identification of Milk and Dairy Products using PCR: A Review (PCR을 이용한 품종동정 및 시유와 낙농제품의 진위판별 방법에 관한 연구: 총설)

  • Choi, Suk-Ho;Lee, Seung-Bae
    • Journal of Dairy Science and Biotechnology
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    • v.33 no.4
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    • pp.253-262
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    • 2015
  • The authentication and implications of misleading labeling in milk and dairy products is important to protect against cheating consumers from adulteration and to alert sensitive consumers to any undeclared potential allergens. This need to support milk and dairy products labeling has led to the development of specific analytical techniques for the analysis of milk and dairy products ingredients. Recently, several methods based on polymerase chain reaction (PCR), including restriction fragment length polymorphism (PCR-RFLP), multiplex PCR, species-specific PCR, and real-time PCR, have been proposed as useful means for identifying species of origin in milk and dairy products, as well as quantifying and detecting any adulteration. These methods have particular advantages owing to their high specificity and sensitivity, as well as rapid processing time. In this review, we provide an updated and extensive overview of the PCR-based methods used for milk and dairy products authentication with a particular focus on the application of PCR methods to detect adulteration.

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Identification of Cryptosporidium in Environmental Sample using Nested PCR-RFLP and DNA Sequencing (Nested PCR-RFLP 및 DNA Sequencing을 이용한 환경시료에서의 크립토스포리디움 동정)

  • Park, Sangjung;Jeong, Hyanghee
    • Journal of Korean Society on Water Environment
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    • v.24 no.6
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    • pp.817-822
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    • 2008
  • In order to identify various Cryptosporidium species in environment, nested PCR-RFLP and DNA sequencing method were used. The sensitivity of nested PCR-RFLP based on 18s rRNA gene was shown to 1 oocyst. Therefore, we applied nested PCR-RFLP method to environmental samples. As a result, only 4 samples out of 8 samples confirmed as Cryptosporidium parvum by standard method of Cryptosporidium were identified as Cryptosporidium parvum by nested PCR-RFLP and DNA sequencing method. The rest of 4 samples among 8 samples were identified as Cryptosporidium muris, Cryptosporidium bailey. Therefore, in addition to standard method of Cryptosporidium, supplementary verification through nested PCR-RFLP and DNA sequencing should be needed to give more accurate information about risk of Cryptosporidium.

Rapid Detection and Identification of Cucumber Mosaic Virus by Reverse Transcription and Polymerase Chain Reaction (RT-PCR) and Restriction Analysis (역전사 중합효소련쇄반응(RT-PCR)과 제한효소 분석을 이용한 오이 모자이크 바이러스의 신속한 검정과 동정)

  • Park, Won Mok
    • Journal of Plant Biology
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    • v.38 no.3
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    • pp.267-274
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    • 1995
  • Based upon the nucleotide sequence of As strain of cucumber mosaic virus (CMV-As0 RNA4, coat protein (CP) gene was selected for the design of oligonucleotide primers of polymerase chain reaction (PCR) for detection and identification of the virus. Reverse transcription and polymerase chain reaction (RT-PCR) was performed with a set of 18-mer CMV CP-specific primers to amplify a 671 bp fragment from crude nucleic acid extracts of virus-infected leaf tissues as well as purified viral RNAs. The minimum concentrations of template viral RNA and crude nucleic acids from infected tobacco tissue required to detect the virus were 1.0 fg and 1:65,536 (w/v), respectively. No PCR product was obtained when potato virus Y-VN RNA or extracts of healthy plants were used as templates in RT-PCR using the same primers. The RT-PCR detected CMV-Y strain as well as CMV-As strain. Restriction analysis of the two individual PCR amplified DNA fragments from CMV-As and CMV-Y strains showed distinct polymorphic patterns. PCR product from CMV-As has a single recognition site for EcoRI and EcoRV, respectively, and the product from CMV-Y has no site for EcoRI or EcoRV but only one site for HindIII. The RT-PCR was able to detect the virus in the tissues of infected pepper, tomato and Chinese cabbage plants.

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Polymerase chain reaction for the detection of Toxoplasma gondii in the blood of cats (중합효소연쇄반응(PCR)을 이용한 고양이 혈액내에서의 Toxoplasma gondii 검출에 관한 연구)

  • Suh, Myung-deuk;Joo, Bo-hyun
    • Korean Journal of Veterinary Research
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    • v.39 no.6
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    • pp.1151-1160
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    • 1999
  • This study was conducted to detect the toxoplasma-specific DNA in peripheral blood collected from cats experimentally infected with Toxoplasma gondii (RH strain) and from domiciled cats by B1 gene-base polymerise chain reaction(PCR). The sensitivity of oligonucleotide primer, T-1 & T-2, designed from toxoplasma B1 gene amplification method was compared with parasite detection by mouse inoculation(MI). And also, latex agglutination test(LAT) and indirect fluorescent antibody test(IFAT) were conducted to detect the fluctuation of serum antibodies compared with the detection of toxoplasma by PCR and MI. Toxoplasma B1 gene PCR was shown consistently high sensitivity and the results obtained by PCR agreed completely with those from MI. All blood samples collected before infection with T gondii gave negative results by PCR and MI. Also, toxoplasma Bl gene PCR was not cross reaction with Neospora caninum DNA and normal cat leucocyte as controls. The toxoplasma-specific DNA was detected by PCR in blood of 5 cats experimentally infected with T gondii 6 days after infection and the detection of this specific-DNA was long lasted in blood for 64 days after infection. The detection of toxoplasma-specific DNA by PCR could be identified as few as 10 tachyzoites and the isolation of T gondii by MI could be isolated as few as 1 tachyzoite from tenfold serial dilution of T gondii with normal cat blood, respectively. In healthy domiciled cats, the toxoplasma-specific DNA and the parasite were detected and isolated in blood from 3 of 56(5.3%) cats by both PCR and MI, respectively. In the results of antibody test from the total 56 heads of healthy domiciled cats, the positive rates are 15(26.7%) by LAT and 19(33.9%) by IFAT. These results suggest that PCR detection of toxoplasma can be applied as a sensitive and specific diagnostic and research tool.

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Enhancing Conventional PCR for Detection of Erwinia amylovora (화상병원세균 검출을 위한 Conventional PCR 향상)

  • Hyun Ju Choi;Yeon Ju Kim;Jeong Ho Choi;Dong Hyuk Choi;Duck Hwan Park
    • Research in Plant Disease
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    • v.30 no.3
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    • pp.294-299
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    • 2024
  • Polymerase chain reaction (PCR) methods, including conventional PCR (cPCR) and quantitative real-time PCR (qRT-PCR), with both plasmid- and chromosome-targeting primers, are currently the most reliable methods for detecting Erwinia amylovora due to their high sensitivity and specificity. Despite qRT-PCR's quantitative advantage, cPCR remains an attractive method to detect this bacterium in initial screenings of suspected host plants, as it is cost-effective and does not require skilled personnel in well-equipped laboratories. This study aimed to significantly improve cPCR robustness via application of bovine serum albumin (BSA) as a PCR facilitator, with a modified EaF/R primer pair, as previously reported. Experiments have shown that simple supplementation with BSA (10 mg/ml) enhances cPCR reactions using templates such as genomic DNA, bacterial cells, and infected symptomless host organs, including immature apple fruits and seedlings, with EaF/R primers. The cPCR method described in this study is simple, specific, and reliable, and can be applied in routine assays to diagnose fire blight.

Detection of Norovirus in Contaminated Ham by Reverse Transcriptase-PCR and Nested PCR

  • Kim, Seok-Ryel;Kim, Du-Woon;Kwon, Ki-Sung;Hwang, In-Gyun;Oh, Myung-Joo
    • Food Science and Biotechnology
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    • v.17 no.3
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    • pp.651-654
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    • 2008
  • In order to enhance the efficacy of norovirus detection by reverse transcriptase-polymerase chain reaction (RT-PCR) and nested PCR, this study developed a norovirus mRNA concentration method using poly oligo dT-conjugated magnetic beads. An efficient norovirus detection protocol was performed on commercial ham using 2 viral elution buffers (glycine buffer and Tris beef extract buffer) and 2 concentration solutions [polyethylene glycol (PEG) and zirconium hydroxide]. The different approaches were verified by RT-PCR and nested PCR. This method was performed on ham in less than 8 hr by artificial inoculation of serial dilutions of the virus ranging from 1,000 to 1 RT-PCR unit/mL. The viral extraction and concentration method had 10-fold higher sensitivity using the combination of Tris beef extract buffer and PEG as compared to glycine buffer and zirconium hydroxide. This method proved that RT-PCR and nested PCR have the sensitive ability to detect norovirus in commercial ham, in that norovirus was successfully detected in artificially contaminated samples at a detection level as low as 1-10 RT-PCR unit/mL. Overall, such a detection limit suggests this protocol is both quick and efficient in terms of its potential use for detecting norovirus in meat products.