Method for quantifying and determining vibrio parahaemolyticus in aquatic product by utilizing internal-standard-method proteome
A technology of proteomics and Vibrio hemolyticus, applied in the direction of measuring devices, instruments, scientific instruments, etc., can solve quantitative problems
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Embodiment 1
[0039] The method for quantitative determination of Vibrio parahaemolyticus in aquatic products with the internal standard method proteome quantitative determination provided in this embodiment comprises the following steps:
[0040] (1) Identification of strains and culture medium
[0041] The isolated Vibrio parahaemolyticus should be identified by the GN card system of VITEK 2 Compact or other microbial identification instruments, and the reliability should reach more than 95%;
[0042] (2) Isotope labeling and cold shock process
[0043] After the pure culture of the strain was diluted with normal saline, it was streaked and inoculated on a tryptone yeast extract soybean agar plate (TSA-YE, Difco), and incubated at 37°C for 24 hours; then two colonies were taken and inoculated separately 14 N and 15 N medium, inoculated 14 The culture medium of N was cultured at 4°C for 2 weeks as an experimental test strain (the reason for this is that this condition is closer to the t...
Embodiment 2
[0064] Embodiment 2 result is as follows:
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[0073] From the above experimental results, the following conclusions can be drawn:
[0074] 1. The increase of peroxide kinase indicates that the bacteria's ability to resist peroxides, such as hydrogen peroxide, is improved. Hydrogen peroxide is one of the most commonly used disinfectants in aquatic product processing. If the conventional 2%-5% volume concentration of hydrogen peroxide is used to When it is used in the bacterial control method in the production and processing of aquatic products, the effect will definitely be greatly affected. It will be mistaken for the illusion that Vibrio parahaemolyticus died after soaking in conventional hydrogen peroxide.
[0075] 2. The aromatic amino acid synthesis pathway is one of the important ways for microorganisms to interact with the external environment. It is also closely related to the...
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