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PLOS ONE  2012 

Development of TaqMan Probe-Based Insulated Isothermal PCR (iiPCR) for Sensitive and Specific On-Site Pathogen Detection

DOI: 10.1371/journal.pone.0045278

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Abstract:

Insulated isothermal PCR (iiPCR), established on the basis of Ralyeigh-Bénard convection, is a rapid and low-cost platform for nucleic acid amplification. However, the method used for signal detection, namely gel electrophoresis, has limited the application of iiPCR. In this study, TaqMan probe-based iiPCR system was developed to obviate the need of post-amplification processing. This system includes an optical detection module, which was designed and integrated into the iiPCR device to detect fluorescent signals generated by the probe. TaqMan probe-iiPCR assays targeting white spot syndrome virus (WSSV) and infectious myonecrosis virus were developed for preliminary evaluation of this system. Significant elevation of fluorescent signals was detected consistently among positive iiPCR reactions in both assays, correlating with amplicon detection by gel electrophoresis analysis. After condition optimization, a threshold value of S/N (fluorescent intensityafter/fluorescent intensitybefore) for positive reactions was defined for WSSV TaqMan probe-iiPCR on the basis of 20 blank reactions. WSSV TaqMan probe-iiPCR generated positive S/Ns from as low as 101 copies of standard DNA and lightly infected Litopenaeus vannamei. Compared with an OIE-certified nested PCR, WSSV TaqMan probe-iiPCR showed a sensitivity of 100% and a specificity of 96.67% in 120 WSSV-free or lightly infected shrimp samples. Generating positive signals specifically and sensitively, TaqMan probe-iiPCR system has a potential as a low-cost and rapid on-site diagnostics method.

References

[1]  Dwivedi HP, Jaykus LA (2011) Detection of pathogens in foods: the current state-of-the-art and future directions. Crit Rev Microbiol 37: 40–63.
[2]  Alvarez AM (2004) Integrated approaches for detection of plant pathogenic bacteria and diagnosis of bacterial diseases. Annu Rev Phytopathol 42: 339–366.
[3]  Briese T, Palacios G, Kokoris M, Jabado O, Liu Z, et al. (2005) Diagnostic system for rapid and sensitive differential detection of pathogens. Emerg Infect Dis 11: 310–313.
[4]  Mahony JB (2010) Nucleic acid amplification-based diagnosis of respiratory virus infections. Expert Rev Anti Infect Ther 8: 1273–1292.
[5]  Belgrader P, Benett W, Hadley D, Richards J, Stratton P, et al. (1999) PCR detection of bacteria in seven minutes. Science 284: 449–450.
[6]  Stone HA, Stroock AD, Ajdari A (2004) Engineering flows in small devices: microfluidics toward a Lab-on-a-chip. Annu Rev Fluid Mech 36: 381–411.
[7]  Zhang C, Xing D (2007) Miniaturized PCR chips for nucleic acid amplification and analysis: latest advances and future trends. Nucleic Acids Res 35: 4223–4237.
[8]  Neuzil P, Zhang C, Pipper J, Oh S, Zhuo L (2006) Ultra fast miniaturized real-time PCR: 40 cycles in less than six minutes. Nucleic Acids Res 34: e77.
[9]  Krishnan M, Ugaz VM, Burns MA (2002) PCR in a Rayleigh-Benard convection cell. Science 298: 793.
[10]  Chou WP, Chen PH, Miao M Jr, Kuo LS, Yeh SH, et al. (2011) Rapid DNA amplification in a capillary tube by natural convection with a single isothermal heater. Biotechniques 50: 52–57.
[11]  Chang HFG, Tsai YL, Tsai CF, Lin CK, Lee PY, et al. (2012) A thermally baffled device for highly stabilized convective PCR. Biotech J 7: 662–666.
[12]  Tsai YL, Lin YC, Chou PH, Teng PH, Lee PY (2012) Detection of white spot syndrome virus by polymerase chain reaction performed under insulated isothermal conditions. J Virol Methods 181: 134–137.
[13]  Heid CA, Stevens J, Livak KJ, Williams PM (1996) Real time quantitative PCR. Genome Res 6: 986–994.
[14]  Gibson UE, Heid CA, Williams PM (1996) A novel method for real time quantitative RT-PCR. Genome Res 6: 995–1001.
[15]  Mackay IM, Arden KE, Nitsche A (2002) Real-time PCR in virology. Nucleic Acids Res 30: 1292–1305.
[16]  Arya M, Shergill IS, Williamson M, Gommersall L, Arya N, et al. (2005) Basic principles of real-time quantitative PCR. Expert Rev Mol Diagn 5: 209–219.
[17]  Wang X, Seed B (2006) High-throughput primer and probe design; Dorak MT, editor. New York: Taylor & Francls Group. 333 p.
[18]  Hameed AS, Balasubramanian G, Musthaq SS, Yoganandhan K (2003) Experimental infection of twenty species of Indian marine crabs with white spot syndrome virus (WSSV). Dis Aquat Organ 57: 157–161.
[19]  Lo CF, Ho CH, Peng SE, Chen CH, Hsu HC, et al. (1996) White spot syndrome baculovirus (WSBV) detected in cultured and captured shrimp, crabs and other arthroponds. Dis Aquat Organ 27: 215–225.
[20]  Syed Musthaq S, Sudhakaran R, Balasubramanian G, Sahul Hameed AS (2006) Experimental transmission and tissue tropism of white spot syndrome virus (WSSV) in two species of lobsters, Panulirus homarus and Panulirus ornatus. J Invertebr Pathol 93: 75–80.
[21]  Chang HF, Tsai YL, Tsai CF, Lin CK, Lee PY, et al. (2012) A thermally baffled device for highly stabilized convective PCR. Biotechnol J 7: 662–666.
[22]  Krishnan M, Agrawal N, Burns MA, Ugaz VM (2004) Reactions and fluidics in miniaturized natural convection systems. Anal Chem 76: 6254–6265.
[23]  Livak KJ, Flood SJ, Marmaro J, Giusti W, Deetz K (1995) Oligonucleotides with fluorescent dyes at opposite ends provide a quenched probe system useful for detecting PCR product and nucleic acid hybridization. PCR Methods Appl 4: 357–362.
[24]  Holland PM, Abramson RD, Watson R, Gelfand DH (1991) Detection of specific polymerase chain reaction product by utilizing the 5'––3' exonuclease activity of Thermus aquaticus DNA polymerase. Proc Natl Acad Sci U S A 88: 7276–7280.
[25]  Kutyavin IV, Afonina IA, Mills A, Gorn VV, Lukhtanov EA, et al. (2000) 3'-minor groove binder-DNA probes increase sequence specificity at PCR extension temperatures. Nucleic Acids Res 28: 655–661.
[26]  Vester B, Wengel J (2004) LNA (locked nucleic acid): high-affinity targeting of complementary RNA and DNA. Biochemistry 43: 13233–13241.

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