• 제목/요약/키워드: q-PCR

검색결과 876건 처리시간 0.023초

한국의 논 토양 미생물 다양성 분석을 위한 Quantitative Real-time PCR의 응용 (Assessment of Korean Paddy Soil Microbial Community Structure by Use of Quantitative Real-time PCR Assays)

  • 최명은;이인중;신재호
    • 한국환경농학회지
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    • 제30권4호
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    • pp.367-376
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    • 2011
  • 논 토양의 미생물 생태 다양성을 조사하기 위한 효과적인 방법으로 qRT-PCR을 적용하고자 본 연구를 수행하였다. 논 토양 미생물의 gDNA를 분리하기 위하여 Mo Bio kit를 사용한 효과적이고 안정적인 gDNA 분리 방법을 확립하였다. 논 토양 미생물 다양성을 qRT-PCR로 검출하기 위하여 bacteria를 세분한 ${\alpha}$-Proteobacteria, ${\beta}$-Proteobacteria, Actinobacteria, Bacteroidetes, Firmicutes 다섯 가지 문과 전체 bacteria, 전체 fungi를 구분할 수 있는 특이 primer set을 선정하여 다양한 조건의 시험을 통하여 최종 조건을 확립하였으며 재현성 실험을 통하여 방법의 유의성을 검증하였다.

Development of Quantitative Real-Time PCR Primers for Detection of Streptococcus sobrinus

  • Park, Soon-Nang;Kook, Joong-Ki
    • International Journal of Oral Biology
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    • 제41권3호
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    • pp.149-154
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    • 2016
  • The purpose of this study was to develop Streptococcus sobrinus-specific qPCR primers based on the nucleotide sequence of the RNA polymerase ${\beta}-subunit$ gene (rpoB). The specificity of the primers was determined by conventional polymerase chain reaction (PCR) with 12 strains of S. sobrinus and 50 strains (50 species) of non-S. sobrinus bacteria. The sensitivity of the primers was determined by quantitative real-time PCR (qPCR) with serial dilutions of the purified genomic DNAs (40 ng to 4 fg) of S. sobrinus ATCC $33478^T$. The specificity data showed that the S. sobrinus-specific qPCR primers (RTSsob-F4/RTSsob-R4) detected only the genomic DNAs of S. sobrinus strains with a detection limit of up to 4 fg of S. sobrinus genomic DNA. Our results suggest that the RTSsob-F4/RTSsob-R4 primers are useful in detecting S. sobrinus with high sensitivity and specificity for epidemiological studies of dental caries..

Detection of HER2 Status in Breast Cancer: Comparison of Current Methods with MLPA and Real-time RT-PCR

  • Pazhoomand, Reza;Keyhan, Elahe;Banan, Mehdi;Najmabad, Hossein;Karimlou, Masoud;Khodadad, Faranak;Iraniparast, Alireza;Feiz, Farnaz;Majidzadeh, Keivan;Bahman, Ideh;Moghadam, Fatemeh Aghakhani;Sobhani, Atoosa Madadkar;Abedin, Seyedeh Sedigheh;Muhammadnejad, Ahad;Behjat, Farkhondeh
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권12호
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    • pp.7621-7628
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    • 2013
  • Human epidermal growth factor receptor (HER) status is an important prognostic factor in breast cancer. There is no globally accepted method for determining its status, and which method is most precise is still a matter of debate. We here analyzed HER2 mRNA expression by quantitative reverse transcription-PCR (qRT-PCR) and HER2 DNA amplification using multiplex ligation-dependent probe amplification (MLPA). In parallel, we performed a routine evaluation of HER2 protein by immunohistochemistry (IHC). To assess the accuracy of the RT-PCR and MLPA techniques, a combination of IHC and fluorescence in situ hybridization (FISH) was used, substituting FISH when the results of IHC were ambiguous (2+) and for those IHC results that disagreed with MLPA and qRT-PCR, this approach being termed IHC-FISH. The IHC results for four samples were not compatible with the MLPA and qRT-PCR results; the MLPA and qRT-PCR results for these samples were confirmed by FISH. The correlations between IHC-FISH and qRT-PCR or MLPA were 0.945 and 0.973, respectively. The ASCO/CAP guideline IHC/FISH correlation with MLPA was (0.827) and with RT-PCR was (0.854). The correlations between the IHC results (0, 1+ as negative, and 3+ as positive) and qRT-PCR and MLPA techniques were 0.743 and 0.831, respectively. Given the shortcomings of IHC analysis and greater correlations between MLPA, qRT-PCR, and FISH methods than IHC analysis alone with each of these three methods, we propose that MLPA and real-time PCR are good alternatives to IHC. However a suitable cut-off point for qRTPCR is a prerequisite for determining the exact status of HER2.

Quantitative real-time PCR (qPCR)을 이용하여 2019년 남해도 해역에서 발생한 Cochlodinium polykrikoides (Dinophyceae) 적조의 조기검출 (Early Detection of Cochlodinium polykrikoides (Dinophyceae) Blooms in Namhaedo in 2019 Using Quantitative Real-Time PCR (qPCR))

  • 박태규;김진주;송선영
    • 해양환경안전학회지
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    • 제26권6호
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    • pp.674-680
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    • 2020
  • 적조가 처음 시작되는 해역을 조기에 파악하기 위하여 Quantitative real-time PCR (qPCR)을 경남해역 적조현장에 활용하였다. 2019년 경남해역을 대상으로 Cochlodinium polykrikoides를 qPCR로 정량분석한 결과, 6월 초에 저밀도로(0.0015~0.0058 cells mL-1) 검출되기 시작하여 8월 중순에는 최대 0.163 cells mL-1 밀도로 증가하였고, 주로 남해도 주변에서 높게 검출되었다. 8월 말에는 현미경 검경으로 남해도 주변에서 높게 출현함이 확인되었고(최대 24 cells mL-1), 9월 2일에는 남해도에서 적조주의보가 발령되었고(최대 200 cells mL-1), 9월 1일에는 최대 12,000 cells mL-1까지 남해도 해역에서 발생하였다. 위 결과는 극미량의 C. polykrikoides이 적조발생 전에 남해도에서 검출되었고 이후 같은 해역에서 적조가 발생되었음을 보여준다. 이는 qPCR이 극미량의 C. polykrikoides을 조기검출하는데 유용한 방법임을 보여준다.

Rapidly quantitative detection of Nosema ceranae in honeybees using ultra-rapid real-time quantitative PCR

  • Truong, A-Tai;Sevin, Sedat;Kim, Seonmi;Yoo, Mi-Sun;Cho, Yun Sang;Yoon, Byoungsu
    • Journal of Veterinary Science
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    • 제22권3호
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    • pp.40.1-40.12
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    • 2021
  • Background: The microsporidian parasite Nosema ceranae is a global problem in honeybee populations and is known to cause winter mortality. A sensitive and rapid tool for stable quantitative detection is necessary to establish further research related to the diagnosis, prevention, and treatment of this pathogen. Objectives: The present study aimed to develop a quantitative method that incorporates ultra-rapid real-time quantitative polymerase chain reaction (UR-qPCR) for the rapid enumeration of N. ceranae in infected bees. Methods: A procedure for UR-qPCR detection of N. ceranae was developed, and the advantages of molecular detection were evaluated in comparison with microscopic enumeration. Results: UR-qPCR was more sensitive than microscopic enumeration for detecting two copies of N. ceranae DNA and 24 spores per bee. Meanwhile, the limit of detection by microscopy was 2.40 × 104 spores/bee, and the stable detection level was ≥ 2.40 × 105 spores/bee. The results of N. ceranae calculations from the infected honeybees and purified spores by UR-qPCR showed that the DNA copy number was approximately 8-fold higher than the spore count. Additionally, honeybees infected with N. ceranae with 2.74 × 104 copies of N. ceranae DNA were incapable of detection by microscopy. The results of quantitative analysis using UR-qPCR were accomplished within 20 min. Conclusions: UR-qPCR is expected to be the most rapid molecular method for Nosema detection and has been developed for diagnosing nosemosis at low levels of infection.

Comparison of Digital PCR and Quantitative PCR with Various SARS-CoV-2 Primer-Probe Sets

  • Park, Changwoo;Lee, Jina;Hassan, Zohaib ul;Ku, Keun Bon;Kim, Seong-Jun;Kim, Hong Gi;Park, Edmond Changkyun;Park, Gun-Soo;Park, Daeui;Baek, Seung-Hwa;Park, Dongju;Lee, Jihye;Jeon, Sangeun;Kim, Seungtaek;Lee, Chang-Seop;Yoo, Hee Min;Kim, Seil
    • Journal of Microbiology and Biotechnology
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    • 제31권3호
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    • pp.358-367
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    • 2021
  • The World Health Organization (WHO) has declared the coronavirus disease 2019 (COVID-19) as an international health emergency. Current diagnostic tests are based on the reverse transcription-quantitative polymerase chain reaction (RT-qPCR) method, which is the gold standard test that involves the amplification of viral RNA. However, the RT-qPCR assay has limitations in terms of sensitivity and quantification. In this study, we tested both qPCR and droplet digital PCR (ddPCR) to detect low amounts of viral RNA. The cycle threshold (CT) of the viral RNA by RT-PCR significantly varied according to the sequences of the primer and probe sets with in vitro transcript (IVT) RNA or viral RNA as templates, whereas the copy number of the viral RNA by ddPCR was effectively quantified with IVT RNA, cultured viral RNA, and RNA from clinical samples. Furthermore, the clinical samples were assayed via both methods, and the sensitivity of the ddPCR was determined to be equal to or more than that of the RT-qPCR. However, the ddPCR assay is more suitable for determining the copy number of reference materials. These findings suggest that the qPCR assay with the ddPCR defined reference materials could be used as a highly sensitive and compatible diagnostic method for viral RNA detection.

Evaluation of Various Real-Time Reverse Transcription Quantitative PCR Assays for Norovirus Detection

  • Yoo, Ju Eun;Lee, Cheonghoon;Park, SungJun;Ko, GwangPyo
    • Journal of Microbiology and Biotechnology
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    • 제27권4호
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    • pp.816-824
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    • 2017
  • Human noroviruses are widespread and contagious viruses causing nonbacterial gastroenteritis. Real-time reverse transcription quantitative PCR (real-time RT-qPCR) is currently the gold standard for the sensitive and accurate detection of these pathogens and serves as a critical tool in outbreak prevention and control. Different surveillance teams, however, may use different assays, and variability in specimen conditions may lead to disagreement in results. Furthermore, the norovirus genome is highly variable and continuously evolving. These issues necessitate the re-examination of the real-time RT-qPCR's robustness in the context of accurate detection as well as the investigation of practical strategies to enhance assay performance. Four widely referenced real-time RT-qPCR assays (Assays A-D) were simultaneously performed to evaluate characteristics such as PCR efficiency, detection limit, and sensitivity and specificity with RT-PCR, and to assess the most accurate method for detecting norovirus genogroups I and II. Overall, Assay D was evaluated to be the most precise and accurate assay in this study. A ZEN internal quencher, which decreases nonspecific fluorescence during the PCR, was added to Assay D's probe, which further improved the assay performance. This study compared several detection assays for noroviruses, and an improvement strategy based on such comparisons provided useful characterizations of a highly optimized real-time RT-qPCR assay for norovirus detection.

서양뒤영벌 야외개체군에서 Real-Time PCR을 이용한 Nosema ceranae의 검출 (Detection of a Microsporidium, Nosema ceranae, from Field Population of the Bumblebee, Bombus terrestris, via Quantitative Real-Time PCR)

  • 이대원
    • 미생물학회지
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    • 제49권3호
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    • pp.270-274
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    • 2013
  • 서양뒤영벌(Bombus terrestris)은 꿀벌의 봉군붕괴증후군(colony collapse disorder)에 대한 대체 화분매개곤충으로서 농업분야에서 중요한 역할을 하고 있다. 최근 서양뒤영벌에서 바이러스, 세균, 응애 등의 여러 병원체와 기생체가 발견되었고, 이들은 서양뒤영벌의 수명과 생식력 등에 영향을 주는 것이 알려져 있다. 서양뒤영벌 야외개체군에서 Nosema spp.를 탐지하기 위해, 서양뒤영벌 성충으로부터 genomic DNA를 추출하여 Nosema spp. 유전자들에 대해 polymerase chain reaction (PCR)을 수행하였다. 이들 유전자 중에서 small subunit ribosomal RNA (SSU rRNA) 유전자만이 증폭되었고, 염기서열분석을 통해 N. ceranae로 확인된 것은 조사된 야외개체군에서 N. ceranae가 서양뒤영벌의 주된 감염체임을 보여준다. Quantitative real-time PCR (qRT-PCR)을 이용하여 SSU rRNA 유전자를 탐지하기 위해, 먼저 PCR을 통해 SSU rRNA 유전자의 2개 영역에 대한 유전자 특이적 증폭을 확인하였다. qRT-PCR을 이용하여 각 개체에서 얻은 genomic DNA의 순차적인 농도희석를 통해 $0.85ng/{\mu}l$ 이하의 genomic DNA 농도에서도 SSU rRNA 유전자가 성공적으로 증폭되는 것이 확인되었다. 이러한 실험 결과, qRT-PCR를 이용한 N. ceranae 특이 유전자 증폭은 서양뒤영벌의 병원체 감염 진단 뿐만 아니라 생태계 위해성 평가에도 활용될 수 있을 것으로 사료된다.

Reverse Transcription Droplet Digital PCR을 활용한 Tomato Spotted Wilt Virus 검출 및 정량 (Application of Reverse Transcription Droplet Digital PCR for Detection and Quantification of Tomato Spotted Wilt Virus)

  • 이효정;박기범;한연수;정래동
    • 식물병연구
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    • 제27권3호
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    • pp.120-127
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    • 2021
  • 식물 바이러스는 작물 수확량에 상당한 손실을 일으키고 작물 생산을 지속적으로 위협하여 세계 식량 안보에 심각한 위협이 된다. 그 중 tomato spotted wilt virus (TSWV)는 주로 원예작물을 감염시키는 가장 위협적인 식물 바이러스로 넓은 기주 범위를 가진다. Reverse-transcription quantitative real-time PCR (RT-qPCR)은 TSWV의 민감한 검출을 위해 널리 사용되고 있지만 표준화의 어려움으로 인해 유용성이 감소한다. 따라서 본 연구에서는 TSWV 검출을 위해 민감하고 정확한 reverse transcription droplet digital polymerase chain reaction (RT-ddPCR)을 확립하였다. TSWV 검출에 대한 RT-qPCR 및 RT-ddPCR의 민감도를 비교하였고, TSWV에 대한 RT-ddPCR의 특이성 분석은 고추에서 주로 발생하는 바이러스 및 음성 대조군에서 특이성을 확인한 결과 증폭되지 않았다. RT-ddPCR 및 RTqPCR에 의해 측정된 TSWV의 선형회귀곡선은 모두 높은 선형성을 나타냈지만, RT-ddPCR 분석이 10배 이상 더 민감하고 더 낮은 TSWV의 copy 수를 검출할 수 있었다. 종합적으로, 우리의 연구 결과는 RT-ddPCR이 TSWV 검출에 대해 높은 민감도와 특이성을 제공하고 낮은 농도의 현장 시료에서 TSWV 검출하는 데 적합하다는 것을 보여준다.

Development of Quantitative Real-Time PCR Primers for the Detection of Aggregatibacter actinomycetemcomitans

  • Park, Soon-Nang;Park, Jae-Yoon;Kook, Joong-Ki
    • International Journal of Oral Biology
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    • 제36권1호
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    • pp.1-6
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    • 2011
  • The purpose of this study was to develop species-specific real-time quantitative PCR (RT-qPCR) primers for use in the detection of Aggregatibacter actinomycetemcomitans. These primers were designed based on the nucleotide sequences of the RNA polymerase ${\beta}$-subunit gene (rpoB). We assessed the specificity of the primers against nine strains of A. actinomycetemcomitans, eight strains (three species) of the Haemophilus genus, and 40 strains of 40 other oral bacterial species. Primer sensitivity was determined by testing serial dilutions of the purified genomic DNAs of A. actinomycetemcomitans ATCC $33384^T$. Our data reveal that we had obtained species-specific amplicons for all of the tested A. actinomycetemcomitans strains, and that none of these amplicons occurred in any of the other species. Our PCR protocol proved able to detect as little as 2 fg of A. actinomycetemcomitans chromosomal DNA. Our findings suggest that these qRT-PCR primers are suitable for application in epidemiological studies.