Method for quickly detecting southern rice black-streaked dwarf virus based on RPA
A black-streaked dwarf virus, southern rice technology, applied in biochemical equipment and methods, DNA/RNA fragments, recombinant DNA technology, etc., can solve problems such as few plant viruses, and achieve high sensitivity, simple operation methods, and high specificity. sexual effect
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Embodiment 1
[0062] Embodiment 1, the RPA detection nucleotide primer combination screening of southern rice black-streaked dwarf virus
[0063] 1. Primer design
[0064] 1. A large number of sequence analyzes and comparisons were carried out to obtain 9 primers (as shown in Table 1) for detecting the southern rice black-streaked dwarf virus.
[0065] Table 1 is used to detect the RPA primer sequence of SRBSDV
[0066] Primer name Primer sequence (5'-3') SRBSDV-F1 AGATGAAGATCAAGATGAGTACGAACTAGC SRBSDV-F2 GATCAAGATGAGTACGAACTAGCTGGACTG SRBSDV-F3 AGATCAAGATGAGTACGAACTAGCTGGACTGT SRBSDV-F4 GAAGATCAAGATGAGTACGAACTAGCTGGACTG SRBSDV-F5 ATCAAGATGAGTACGAACTAGCTGGACTGTC SRBSDV-F6 AAATGTTGTCGTGAAGTTCCTGCTCAAATG SRBSDV-R1 GTCTTACGCAACGATGAACCTTTTCTCTATT SRBSDV-R2 CGGTCTTACGCAACGATGAACCTTTTCTCTA SRBSDV-R3 GTCTCGAATATTGGTCGTAACCGCCATAGT
[0067] 2. The 9 primers designed in step 1 are combined into 6 pairs of primer combina...
Embodiment 2
[0088] Embodiment 2, specificity
[0089] 1. Extract corn leaves infected with rice black-streaked dwarf virus (RBSDV), corn leaves infected with maize chlorotic mottle virus (MCMV), corn leaves infected with sugarcane mosaic virus (SCMV), infected with cucumber mosaic virus (CMV) The total RNA of maize leaves, maize leaves infected with brome mosaic virus (BMV) and maize yellow dwarf virus (MYDV) were reverse transcribed into cDNA.
[0090] 2. Extraction of total DNA from healthy maize leaves.
[0091] 3. Take the total RNA extracted from maize leaves infected with Southern rice black-streaked dwarf virus (SRBSDV), and reverse transcribe it into cDNA.
[0092] 4. Get the cDNA or total DNA obtained in steps 1, 2 and 3, use the cDNA or total DNA as a template, and use primers SRBSDV-F and primers SRBSDV-R to form an RPA reaction (see Example 1 for the reaction method) Steps 2 and 3 of the second part in . Set to use ddH 2 0 as a negative control group for the template.
[...
Embodiment 3
[0094] Embodiment 3, sensitivity
[0095] 1. Take the total RNA extracted from maize leaves infected with southern rice black-streaked dwarf virus (SRBSDV), and reverse-transcribe it into cDNA (cDNA concentration is 692.5ng / μL).
[0096] 2. Dilute the cDNA obtained in step 1 step by step with a 10-fold gradient, respectively 10 0 、10 -1 、10 -2 、10 -3 、10 -4 、10 -5 、10 -6 A total of 7 dilutions, the corresponding concentrations are 692.5ng / μL, 69.25ng / μL, 6.925ng / μL, 6.925×10 - 1 ng / μL, 6.925×10 -2 ng / μL, 6.925×10 -3 ng / μL, 6.925×10 -4 ng / μL.
[0097] 3. Using the cDNA with different gradient dilutions in step 2 as a template, use a primer pair consisting of primer SRBSDV-F and primer SRBSDV-R to carry out RPA reaction (see steps 2 and 3 in the second part of Example 1 for the reaction method).
[0098] Set to use ddH 2 0 as a negative control group for the template.
[0099] The result is as figure 2 shown.
[0100] The results show that the method has a sensi...
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