Siniperca chuatsi ranairidovirus and rhabdovirus duplex PCR detection kit and detection method
A rhabdovirus and frog virus technology, applied in the field of PCR, can solve time-consuming and labor-intensive problems, and achieve accurate detection and high sensitivity
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Embodiment 1
[0059] This example is to construct the standard recombinant plasmids P-SCRIV and P-SCRV as the positive control solution of the kit of the present invention.
[0060] experiment method:
[0061] 1. Use the DNA of clinical samples infected with SCRIV as a template and use SCRIV-MCP-F / SCRIV-MCP-R as primers for PCR amplification. The total PCR reaction system is 25 μL: 12.5 μL of 2×EasyTaq PCR SuperMix, 1 μL of primers SCRIV-MCP-F / SCRIV-MCP-R, 1 μL of template, and sterile ddH 2 O supplemented to 25 μL. At the same time ddH2O was used instead of the template as a negative control. The parameters of the PCR amplification reaction were: pre-denaturation at 94°C for 5 min; 30 cycles at 94°C for 30 s, 58°C for 30 s, and 72°C for 1 min and 30 s; final extension at 72°C for 10 min. The reaction products were detected by 1% agarose gel electrophoresis. After the PCR amplification product is purified, take 4 μL and connect it with 1 μL pEASY-T1 vector, and transfer it into Escheric...
Embodiment 2
[0068] Present embodiment is a kind of mandarin fish frog virus (SCRIV) described in the present invention and mandarin fish frog virus (SCRV) double PCR detection kit and establishes the double PCR detection method of SCRIV and SCRV
[0069] 1. A double PCR detection kit for mandarin fish frog virus (SCRIV) and mandarin fish rhizome virus (SCRV), comprising adding 1 μL, 2× EasyTaq PCR SuperMix 12.5 μL, positive control solution 2 μL, and negative control solution to complement each primer respectively. 25 μL; wherein, the primers include primers SCRIV-400-F / SCRIV-400-R designed for the conserved region of the MCP gene of mandarin fish frog virus, and primers designed for the conserved region of the N gene of mandarin fish rhabdovirus SCRV-280-F / SCRV-280-R, its primer sequence is shown in Table 1; The positive control solution is the mixture P-SCRIV 1 μL+P-SCRV 1 μL of the standard recombinant plasmid constructed in Example 1, the negative control ddH 2 O.
[0070] 2. Establ...
Embodiment 3
[0083] This embodiment is the optimization of the amplification conditions of SCRIV and SCRV double PCR detection method
[0084] experiment method:
[0085] In this embodiment, the SCRIV and SCRV double PCR detection methods are the same as in Embodiment 2, except that the annealing temperature and the amount of primers are different. The annealing temperature is sequentially changed from 57°C, 58°C, 59...66°C, and detected by 2% agarose gel electrophoresis. After determining the optimal annealing temperature, optimize the amount of primers, (SCRIV-400-F / SCRIV-400-R) or (SCRV-280-F / SCRV-280-R) primer amount was set to 0.5 / 0.5 ( The upstream and downstream primers of each pair of primers are the same amount), 0.5 / 1, 0.5 / 1.5, 1 / 0.5, 1 / 1, 1 / 1.5, 1.5 / 0.5, 1.5 / 1 and 1.5 / 1.5. ddH 2 O was used as a negative control instead of the template, and the PCR amplification product obtained was detected by electrophoresis on 2% agarose gel.
[0086] test results:
[0087] Optimal anneal...
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