Time resolution fluorescent quantitative test strip for detecting ralstonia solancearum in tobacco leaves and preparation method and application thereof
A technology of time-resolved fluorescence and R. solanacearum, which is applied in the field of detection of R. solanacearum in tobacco leaves, can solve the problems of being difficult to achieve fast, accurate, economical, human-factor interference, and high operator requirements, and achieve the goal of not being limited by detection equipment, Wide range of applications and the effect of improving sensitivity
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Embodiment 1
[0040] Example 1 Preparation of antibody against Ralstonia solanacearum
[0041] 1. Isolation and identification of R. solanacearum
[0042] Use beef extract peptone agar to carry out enrichment culture of R. solanacearum, the results are as follows: Figure 4 shown. Figure 4 A is the growth state of bacterial wilt on the flat plate, showing that the bacterial colony is relatively single, without miscellaneous bacteria, and the bacterial wilt of cultivation has been carried out PCR identification, the result is as follows Figure 4 As shown in B, there is a clear single DNA band between 200 bp and 300 bp, indicating that the colony is bacterial wilt pathogen, that is, the sequence variant 13 of the Asian branch of bacterial wilt (evolution type I) as described in claim 5 , 15, 17 and 34.
[0043] 2. Analysis of bacterial wilt secreted protein iTRAQ
[0044] In the R. solanacearum liquid culture medium, the smoke foam of Honghua Dajinyuan, Yunnan 87 and K326 was used to st...
Embodiment 2
[0064] Example 2 Preparation of time-resolved fluorescent nanoparticles (i.e. fluorescent microspheres)
[0065] Dissolve 10 mmol of styrene, 0.83 mmol of acrylic acid, and 0.63 mmol of sodium lauryl sulfate in 10 mL of water, put them into a round-bottomed flask, pass through nitrogen for 20 minutes to remove oxygen, and add 0.1 mmol of potassium persulfate to initiate polymerization. Stir under seal at 65°C for 5 hours in an oil bath. After the reaction product was filtered with filter paper, it was dialyzed with pure water for 7 days, and extracted several times with n-hexane for later use. Dissolve 300 μL polystyrene nanoparticles n-hexane in 1650 μL sodium carbonate buffer solution (pH 9.5, 10 mM, containing 1.8 mM EuCl 3 , 5.5 mM 2-NTA, and 5.5 mM TOPO), coated overnight, dialyzed with boric acid buffer solution overnight, using DLS and SEM to characterize the particle size and uniformity of polystyrene nanoparticles, and using a steady-state molecular fluorometer to ch...
Embodiment 3
[0066] Example 3 Preparation of Time-Resolved Fluorescent Quantitative Test Strips for Ralstonia solanacearum in Tobacco Leaves
[0067] 1. Preparation of fluorescent microsphere markers:
[0068] Preparation of fluorescent microsphere-labeled detection antibody: take 1 mg of fluorescent microspheres and centrifuge at 15,000 rpm for 10 min, collect the precipitate, and resuspend the precipitate with 1 mL of coupling buffer. Then add EDC and NHS at a molar ratio of 1:2~1:20, incubate at room temperature for 20~30 min after vortexing, centrifuge at 15000 rpm for 10 min, and collect the precipitate. Add coupling buffer to resuspend the microspheres, add 40-150 μg of detection antibody to the solution, mix well, stir at room temperature for 2-4 h, centrifuge at 10,000 rpm for 10 min to remove supernatant, add 1 mL of blocking buffer, After mixing, react at room temperature for 1-2 h, centrifuge and wash 3 times with blocking buffer, resuspend the pellet with 0.02 M PBS (containin...
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