A Japanese encephalitis virus real-time fluorescent isothermal amplification detection kit and its primers and probes
A technology of Japanese encephalitis virus and detection kit, which is applied in biochemical equipment and methods, microbe determination/inspection, DNA/RNA fragments, etc. It can solve the problems of time-consuming, low sensitivity, cumbersome operation of virus isolation and culture methods, etc. problem, to achieve the effect of improving detection sensitivity and ensuring specificity
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Embodiment 1
[0035] Embodiment 1, the preparation of positive control substance
[0036] The virus particles were purified and harvested from the Japanese Japanese encephalitis virus cell culture medium by ultracentrifugation, and the viral RNA was extracted. The NS1 gene amplification primers N-Primer-1 and N-Primer-2 were designed, and the Japanese encephalitis Japanese encephalitis NS1 gene fragment of about 520bp was amplified by RT-PCR technology. The obtained RT-PCR product was inserted into the pGEM-4z cloning plasmid to construct the recombinant plasmid pGEM-4z-NS1, and its sequence was determined. The sequencing results were compared with 10 randomly selected Japanese encephalitis virus NS1 gene sequences of 5 different genotypes in GenBank to ensure that their homology reached more than 95%. After enrichment of positive clones, plasmid DNA was extracted, and after linearization, the inserted NS1 gene was transcribed in vitro using the T7 promoter on the plasmid to obtain single-...
Embodiment 2
[0040] Example 2, the establishment and optimization of Japanese Japanese encephalitis virus real-time fluorescence NASBA detection system
[0041] The reaction conditions were optimized for the important conditional factors affecting the real-time fluorescence NASBA detection system.
[0042] 1. Various factors and optimization methods
[0043] ① AMV buffer volume: Configure 2×NASBA reaction solution according to the reaction system in Table 1, fix other parameters, adjust the volume of AMV buffer to 2.4 μL, 2.8 μL, 3.2 μL, 3.6 μL, 4.0 μL, 4.4 μL, and use Japanese encephalitis virus In vitro transcribed RNA of NS1 gene was used as a template for real-time fluorescent NASBA amplification. After the real-time end, compare the effects of different AMV buffers on the amplification efficiency and fluorescence curve. The results are as follows: figure 1 . The volume of AMV buffer and the concentration of each component are compared in Table 3.
[0044] Table 3 AMV buffer volume...
Embodiment 3
[0051] Embodiment 3, Japanese encephalitis virus real-time fluorescent NASBA kit components and detection method
[0052] 1. Composition of the kit (stored at -20°C)
[0053] ① 2× real-time NASBA reaction solution: containing Tris-HCl 100mM, KCl 100mM, MgCl 2 20 mM, DTT 20 mM, DMSO 20%, NTP 4 mM, dNTP 1 mM, upstream primer, downstream primer (Primer-1, Primer-2) 0.125 μM each, and molecular beacon probe (Tag1) 0.25 μM.
[0054] ②4×Enzyme Mixture: Contains AMV Reverse Transcriptase 1.6U / μL, T7 RNA Polymerase 8U / μL, Rnase H 0.04U / μL, Ribonuclease Inhibitor 2U / μL, BSA 2.0μg.
[0055] ③ Positive control: it is the RNA fragment of NS1 gene transcribed in vitro by Japanese encephalitis virus.
[0056] ④ Negative control: It is sterile physiological saline, which is extracted in parallel with the specimen at the same time as the nucleic acid extraction and used as a negative control.
[0057] ⑤ DEPC water: Nuclease-free ultrapure water treated with DEPC, used as a blank control. ...
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