• Title/Summary/Keyword: PCR technique

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A Review of Detection Methods for the Plant Viruses

  • Jeong, Joo-Jin;Ju, Ho-Jong;Noh, Jaejong
    • Research in Plant Disease
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    • v.20 no.3
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    • pp.173-181
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    • 2014
  • The early and accurate detection of plant viruses is an essential component to control those. Because the globalization of trade by free trade agreement (FTA) and the rapid climate change promote the country-to-country transfer of viruses and their hosts and vectors, diagnosis of viral diseases is getting more important. Because symptoms of viral diseases are not distinct with great variety and are confused with those of abiotic stresses, symptomatic diagnosis may not be appropriate. From the last three decades, enzyme-linked immunosorbent assays (ELISAs), developed based on serological principle, have been widely used. However, ELISAs to detect plant viruses decrease due to some limitations such as availability of antibody for target virus, cost to produce antibody, requirement of large volume of sample, and time to complete ELISAs. Many advanced techniques allow overcoming demerits of ELISAs. Since the polymerase chain reaction (PCR) developed as a technique to amplify target DNA, PCR evolved to many variants with greater sensitivity than ELISAs. Many systems of plant virus detection are reviewed here, which includes immunological-based detection system, PCR techniques, and hybridization-based methods such as microarray. Some of techniques have been used in practical, while some are still under developing to get the level of confidence for actual use.

Detection of Lawsonia intracellularis in swine feces by polymerase chain reaction (돼지분변에서 PCR에 의한 Lawsonia intracellularis 검색)

  • 장성준;김정화;김영태;김기향;김중규;김영욱;최일영
    • Korean Journal of Veterinary Service
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    • v.24 no.1
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    • pp.43-50
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    • 2001
  • Swine proliferative enteritis(SPE) caused by inかsoma intracellularis is a common enteric disaese of grower and finisher pig. Swine affected with SPE show variable clinical signs including diarrhea, weight loss, aberrant growth and death. The characteristic lesion of ileitis at necropsy is marked thickening of the last section of the small intestine. The inner lining of the thickened intestine proliferates almost like a cancer and curved rod bacteria(L intracellularis) are always seen inside the intestinal wall. Infected swine shed the organism in the feces. Isolation and growth of pure L intracellularis in vitro requires a suitable cell culture. This procedure is difficult and not a practical means of diagnosis, thus the polymerase chain reaction(PCR) test of feces can be used to determine whether a pig is shedding the infective organism. A sensitive assay based on amplification of a 319bp DffA fragment of the L intracellularis of Swine proliferative enteritis was attempted for the detection of the organism in the 62 feces of swine. L intracellularis was identified on three herds and detected in 6 fecal samples, representing a infection rate of 9.7%. The PCR was very sensitive and specific on the individual level. The PCR technique could be very useful for the diagnosis of this disease.

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Genetic Distances of Rainbow Trout and Masu Salmon as Determined by PCR-Based Analysis

  • Yoon, Jong-Man
    • Development and Reproduction
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    • v.24 no.3
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    • pp.241-248
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    • 2020
  • This study used a PCR-based genetic analysis platform to create a hierarchical polar dendrogram of Euclidean genetic distances for two salmonid species, Oncorhynchus mykiss (rainbow trout, RT) and Oncorhynchus masou (masu salmon, MS). The species were distantly related to other fish species based on PCR results from using the designed oligonucleotide primer series. Five oligonucleotide primers were used to generate 330 and 234 scorable fragments in the RT and MS populations, respectively. The DNA fragments ranged in size from approximately 50 bp to more than 2,000 bp. The bandsharing (BS) results showed that the RT population had a higher average BS value (0.852) than that for the MS population (0.704). The genetic distance between individuals supported the presence of adjacent affiliation in cluster I (RT 01-RT 11). The observation of a significant genetic distance between the two Oncorhynchus species verifies that this PCR-based technique can be a useful approach for individual- and population-based biological DNA investigations. The results of this type of investigation can be useful for species safekeeping and the maintenance of salmonid populations in the mountain streams of Korea.

Development and Evaluation of a SYBR Green-Based, Real-time Polymerase Chain Reaction for Rapid and Specific Detection of Human Coxsackievirus B5

  • Cho, Kyu Bong
    • Biomedical Science Letters
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    • v.26 no.4
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    • pp.302-309
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    • 2020
  • Human Coxsackievirus B5 (HuCoxV-B5) infection has been associated with various diseases such as myocarditis, aseptic meningitis, hand-foot-and mouth-disease, and insulin-dependent diabetes. HuCoxV-B5 is a virus transmitted through the fecal-oral route and is detected in clinics, aquatic environments, food, shellfish, etc. and is one of the more important viruses in public health because of its incidence rate reported worldwide. In this study, a combination of SYBR Green-based real-time PCR primers for molecular diagnosis including monitoring of HuCoxV-B5 was selected and the optimal reaction conditions were established. Compared with the previously reported TaqMan probe-based real-time PCR method, assessments including a sample applicability test were performed. Results showed that the real-time PCR method developed in this study was suitable for a molecular diagnostic technique for detecting HuCoxV-B5. This study is expected to contribute to efforts in responding to safety accidents in public health because the proposed method facilitates rapid diagnosis of clinical patients. It can also be used as a specific monitoring tool of HuCoxV-B5 in non-clinical areas such as aquatic environments among others.

Comparison of Polymerase Chain Reaction, Real-time Polymerase Chain Reaction, and Loop-Mediated Isothermal Amplification for the Detection of Cronobacter sakazakii in Milk Powder (분유에 오염된 Cronobacter sakazakii 검출을 위한 중합효소연쇄반응, 실시간중합효소연쇄반응, 등온검출법의 비교)

  • Kim, Young-Joo;Seo, Sheungwoo;Wang, Xiaoyu;Seo, Dong Joo;Lee, Min Hwa;Son, Na Ry;Lee, Bog-Hieu;Choi, Changsun
    • Food Science of Animal Resources
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    • v.33 no.5
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    • pp.610-616
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    • 2013
  • Loop-mediated isothermal amplification (LAMP) is an emerging detection technology for the amplification of DNA under isothermal conditions. The aim of this study was to develop a rapid and reliable LAMP technique for the detection of Cronobacter sakazakii in milk powder. In order to enhance the sensitivity and specificity, LAMP primers targeting outer membrane protein A (ompA) gene of C. sakazakii were designed using Explorer V4 software. Thirty seven C. sakazakii strains and 13 pathogenic microorganisms were used for comparative detection of C. sakazakii using polymerase chain reaction (PCR), real-time PCR, and LAMP. LAMP developed in this study could specifically detect C. sakazakii strains without cross-reactivity with other foodborne pathogens. LAMP products amplified from ompA gene of C. sakazakii were digested with with HhaI and NruI enzyme. The specificity of LAMP was confirmed by restriction fragment length polymorphism (RFLP) analysis. LAMP could detect C. sakazakii within 1 h without bacterial culture and its detection limit was as low as 1 CFU/mL C. sakazakii in milk. In the comparison of the sensitivity, LAMP showed 10,000- and 100-times higher detection limit than PCR or real-time PCR, respectively. Therefore, this study can conclude that LAMP is a rapid and reliable detection technique for C. sakazakii contaminated in powdered milk.

Diagnosis of Bovine Johne's Disease Using Multiplex Polymerase Chain Reactions (다중 중합효소 연쇄반응을 이용한 소의 Johne병 진단 기법 확립)

  • Kim, Jong-Bae;Song, Hye-Won;Kim, Geun-Hee;Kim, Hong;Shin, Kwan-Soon;Kim, Doo
    • Biomedical Science Letters
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    • v.6 no.1
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    • pp.65-72
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    • 2000
  • In order to improve the early diagnosis of Johne's disease in ruminants, duplex polymerase chain reaction system for the detection of the etiologic agent of M. paratuberculosis and for the differentiation of other mycobacterial animal pathogens, such as M. bovis and M. avium, was applied. Genomic DNAs were purified from peripheral blood monocytes or milk macrophages and were used as templates in the duplex PCR. Detection of Mycobacterium spp. in the specimen was carried out by PCR using primer set specific to the mycobacterial 16S rDNA. And then, mycobacterial DNA-positive specimens were further differentiated with duplex PCR system which was composed of primer sets specific to 16S rDNA of M. avium complex and Is900 gene of M. paratuberculosis. The results were re-confirmed by Southern blot hybridization with oligonucleotide specific to the internal sequence of IS900 PCR amplicons. The applicability of this duplex PCR system was evaluated with DNAs extracted from clinical specimens of peripheral blood monocytes and milk macrophages. In summary, the duplex PCR amplification system described in this experiment is promising molecular technique for the early diagnosis of Johne's disease in ruminants.

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Rapid and Specific Identification of Genus Cynoglossus by Multiplex PCR Assays Using Species-specific Derived from the COI Region (다중 PCR 분석법을 이용한 참서대과 어종의 신속하고 정확한 종판별 분석법 개발)

  • Noh, Eun Soo;Kang, Hyun Sook;An, Cheul Min;Park, Jung Youn;Kim, Eun Mi;Kang, Jung Ha
    • Journal of Life Science
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    • v.26 no.9
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    • pp.1007-1014
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    • 2016
  • A highly efficient, rapid, and reliable multiplex polymerase chain reaction based method for distinguishing ten species of genus Cynoglossus (C. senegalensis, C. abbreviates, C. macrolepidotus, C. arel, C. semilaevis, C. interruptus, C. joyneri, C. lingua, C. robustus, and C. monodi) is described. The species-specific primer sets were designed base on the cytochrome oxidase subunit I gene (1,500 bp). The optimal PCR conditions and primers were selected for ten of Cynoglossus species to determine target base sequences using single PCR. Multiplex PCR using the ten pairs of primers either specifically amplified a DNA fragment of a unique size or failed, depending on each species DNA. The length of amplification fragment of 208 bp for C. senegalensis, 322 bp for C. abbreviates, 493 bp for C. macrolepidotus, 754 bp for C. arel, 874 bp for C. semilaevis, 952 bp for C. interruptus, 1,084 bp for C. joyneri, 1,198 bp for C. lingua, 1,307 bp for C. robustus, and 1,483 bp for C. monodi with the species-specific primers, visualized by agarose gel electrophoresis, allowed perfectly distinction of the Cynoglossus species. The multiplex PCR assay can be easily performed on multiple samples and attain final results in less than 6 hours. This technique should be a useful addition to the molecular typing tools for the tentative identification of Cynoglossus species.

Studies on Molecular Biological and Immunological Diagnosis of Johne's Disease (분자생물학과 면역학적 방법에 의한 소 요네병 진단의 연구)

  • Kim, Tae-jong;Kim, Yun-sik;Kim, Jae-chun;Yoon, Wha-joong;Lee, Won-chang;Shin, SJ;Chang, YF
    • Korean Journal of Veterinary Research
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    • v.37 no.2
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    • pp.349-358
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    • 1997
  • Mycobacterium paratuberculosis is the etiologic agent of Johne's disease, a chronic inflammatory bowel syndrome in ruminants. The attempts to control or eradicate the disease were severely hampered by the inadequacies of present diagnostic methods. The first purpose of this study was to detect Johne's disease out of 577 cows in the province of Kyunggi, Chungchong, Gangweon and the second purpose was to compare the results of non-absorbed ELISA, absorbed ELISA, PCR, and conventional culture methods. The third purpose was to increase diagnostic specificity, accuracy and rapidity. When non-absorbed ELISA test was conducted with Mycobacterium paratuberculosis antigen, the prevalence of positive was 10.9%. To increase diagnostic specificity, absorbed ELISA test with Mycobacterium phlei was used. In this test, the positive prevalence was 1.7%. For the specific detection of Mycobacterium paratuberculosis, PCR was applied to bacterial culture obtained from fecal samples of cattle. The DNA sequences derived from IS900 were used to prepare DNA primers for detection and identification of Mycobacterium paratuberculosis by PCR. PCR for M paratuberculosis isolated from fecal cultures amplified specific target DNA. PCR was much more rapid than that obtained by conventional culture technique in diagnosis of Johne's disease.

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Preimplantation Genetic Diagnosis Using Primer Extension Preamplification in Duchenne/Becker Muscular Dystrophy(DMD/BMD) Families (근이양증 가계에서의 PEP-PCR을 이용한 착상전 유전자진단)

  • Choi, Soo-Kyung;Lee, En-Ho;Lee, Ho-Joon;Jun, Jin-Hyun;Kang, Inn-Soo;Paik, Eun-Chan;Ryu, Hyun-Mee;Jun, Jong-Young
    • Clinical and Experimental Reproductive Medicine
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    • v.23 no.1
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    • pp.109-114
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    • 1996
  • General PCR technique alone has a limitation for preimplantation genetic diagnosis(PGD) using single blastomere. Recntly developed primer extension preamplification(PEP) technology amplifies the whole genome and thus, simultaneous multiple locus analysis became possible. In this study, we report the efficacy of PEP-PCR for PGD in three muscular dystrophy carriers undergoing IVF-ET. A total of 37 blastomeres were obtained from 40 embryos at six to eight cell stage in three IVF cycles in two DMD and one BMD carriers. Whole genome from single blastomeres were amplified using I5-base oligonucleotide random primers. PCR amplified products of exon 45 in the dystrophin gene and alphoid X/Y loci for gender determination were analysed by 2% metaphor gel electrophoresis. A total of 37 PEP-PCR replicates from 37 single blastomeres from 40 embryos and 37 blanks were performed. We obtained the reliable results for exon 45 and alphoid X/Y. Transfer of female embryos and unaffected male embryo was attempted in three couples. Unfortunately, pregnancy was not achieved in these cases. PEP-PCR is a reliable and efficient PGD method in multiple locus analysis using single blastomere.

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Rapid Typing of Clinical Strains of Mycobacterium tuberculosis by IS6110-based Outward PCR

  • Kim, Yeun;Lee, Uen-Ho;Park, Young-Kil;Bai, Gill-Han;Cho, Sang-Nae;Lee, Hye-Young
    • Biomedical Science Letters
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    • v.10 no.2
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    • pp.163-169
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    • 2004
  • Worldwide, tuberculosis remains one of the leading infectious diseases, accounting for nearly 3 million deaths and more than 8 million new cases annually. DNA typing of Mycobacterium tuberculosis is important for the control of tuberculosis, since it can be used to track transmission route of tuberculosis, source of internal laboratory contaminations, and to answer questions on the nature of tuberculosis infections such as reactivation or exogenous reinfection of disease. At present, IS6110-based RFLP is the choice of method for typing large numbers of clinical isolates of M. tuberculosis, since it has the highest resolution power. However, RFLP requires long time, high cost and qualified experts, so only reference level laboratories can use the RFLP technique. In order to have an optional molecular typing method suitable for the clinical settings, this study evaluated the use of one of PCR-based typing methods, IS6110-based outward PCR for typing clinical isolates of M. tuberculosis. In brief, the results from this study showed that IS6110-based RFLP is useful to discriminate diverse clinical isolates of M. tuberculosis as well as to identify clinical isolates that belong to the same family or cluster groups that have been previously classified by RFLP analysis. In addition, the banding profiles resulted from IS6110-based outward PCR seemed to represent genomic characteristics of M. tuberculosis, since strains belong to the K-family generated unique band that is not present in any other strains but present only in the genome of K-family strains. The IS6110-based outward PCR was also shown to be useful with DNAs isolated directly from liquid cultures indicating this method can be suitable for typing M. tuberculosis in clinical settings.

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