Bio-control inoculant for inhibiting streptococcus agalactiae as well as preparation method and application of bio-control inoculant

A biocontrol agent, Streptococcus lactis technology, applied in microorganism-based methods, biochemical equipment and methods, medical preparations containing active ingredients, etc. The effect of inhibiting growth and excellent bactericidal effect

Pending Publication Date: 2022-04-15
HAINAN UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, current research shows that resistance to clindamycin, erythromycin, and fluoroquinolones in GBS is on the rise, and resistance to vancomycin has also been reported, which makes patients allergic to penicillins or cephalosporins There is a big problem with the treatment

Method used

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  • Bio-control inoculant for inhibiting streptococcus agalactiae as well as preparation method and application of bio-control inoculant
  • Bio-control inoculant for inhibiting streptococcus agalactiae as well as preparation method and application of bio-control inoculant

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0035] Example 1 - Antibacterial effect of boronine binder fermentation

[0036] The inhibitory effect of Boride Bacillus Bacillus Bacillus Bacillus Bacillus was used to determine the inhibitory effect of Boriocide glycide growth.

[0037] Experimental group 1:

[0038] Experimental group 1-1:

[0039] Seed culture fluid includes the following components: 5 g / l yeast extract, 10 g / L - panazolic protein and 10 g / L sodium chloride, pH 7.0;

[0040] The proliferation culture medium includes the following components: 5.2 g / l yeast extract, 10.5 g / L of the pancreatine, 10.5 g / l sodium chloride and 2.8 g / L Polyglutamic acid, pH 7.0;

[0041] Fermentation culture fluid includes the following components: 5.2 g / l yeast extract, 10.5 g / L of the pancreatine, 10.5 g / l sodium chloride, 1.2 g / l polyglutamic acid and 0.3 g / l rock white dish, pH Value 6.8; assigns a seed culture solution, a proliferation culture solution, and a fermentation culture med

Example Embodiment

[0073] Example 2 - Prevention and treatment of roclasty bacteria

[0074] A bioplasmic agent for suppressing a variable bacteria was composed of boronine bonosporium bonosporium bonosporium bonosporium bonosporine, 10 parts water, and 14 mooyi protein powder prepared from 30 experimental group 1-1;

[0075] The preparation method of the bioplastic bacteria is: mixed with b bedium bonosporium bonosporium bonosporium bonosporium, mixed with kaolin, stir, spray dry, pulverized, and obtained biopsies;

[0076] Choose a healthy tilapia 40 tail, weigh 80-90g, divided into 2 groups, each set of 20 tails, feed the strike feed 2 times a day, change the water every 5D, regulate the water, and The agent is mixed with tilapia feed 1: 200 mixed into the test group, and the fluorine tissue is mixed with tilapia 1: 2000 mixed as a pharmaceutical group; after feeding 10 days, 0.2 ml of the dose of 0.2ml in the strip of the strike Uppermptogenic bacteria suspension, continued to feed 7d, observe the

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Abstract

The invention provides a biocontrol inoculant for inhibiting streptococcus agalactiae, which comprises the following components in parts by weight: 20-40 parts of boron-resistant lysine bacillus fermentation liquor and 8-12 parts of an auxiliary material which is at least one of water, a culture medium and glycerol, the boron-resistant lysine bacillus fermentation liquor is obtained by carrying out secondary fermentation culture on boron-resistant lysine bacillus. The biocontrol inoculant for inhibiting streptococcus agalactiae can effectively inhibit the growth of streptococcus agalactiae, the inhibition rate of fermentation liquor within 36 hours can reach 49.5% or above, and the biocontrol inoculant can be used for preventing or treating infectious diseases caused by streptococcus agalactiae, and especially can effectively prevent or treat streptococcicosis of tilapia infected by streptococcus agalactiae. The boron-resistant lysine bacillus not only can reduce infection of streptococcus agalactiae to a great extent, but also has no influence on the ecological environment, is expected to be used as a high-quality chassis microorganism for synthetic biological research, and brings a new direction for prevention and treatment of streptococcus agalactiae.

Description

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Claims

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Application Information

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Owner HAINAN UNIVERSITY
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