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Screening and application of enterococcus faecium G12

A technology of Enterococcus faecium and G12, applied in the field of microbial additives for aquatic products, can solve the problems of increased overall drug resistance and unfavorable treatment of animal diseases, and achieve the effect of sustainable development, significant probiotics, and high resistance to stress.

Inactive Publication Date: 2019-11-05
TIANJIN AGRICULTURE COLLEGE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

On the other hand, the resistance of bacteria to antibiotics has a horizontal transmission effect, and it is likely to transmit the level of drug resistance to other pathogenic bacteria, so that the overall drug resistance of the animal body will increase, which is very unfavorable for the treatment of animal diseases

Method used

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  • Screening and application of enterococcus faecium G12
  • Screening and application of enterococcus faecium G12
  • Screening and application of enterococcus faecium G12

Examples

Experimental program
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Effect test

Embodiment 1

[0027] Example 1: Screening, isolation and identification of strains

[0028] Screening and isolation: A strain of Enterococcus faecium was screened from the hepatopancreas of shellfish, especially the hepatopancreas of Philippine clams. The specific operation of the screening is as follows: Dissect the body surface of Philippine clams after disinfection with 75% medical alcohol, take the hepatopancreas, then add 1mL pre-cooled sterile saline, fully homogenate, centrifuge, and take the supernatant 10 times series dilution. Take stock solution, 10 -1 、10 -2 Each 100uL sample of the three dilutions was spread on the MRS plate, and three parallels were set for each dilution gradient, and incubated at a constant temperature of 37°C for 24h. Pick single colonies and purify bacteria by multiple streaking. The purified strains were made into bacterial suspension with 40% glycerol and MRS liquid medium 1:1, and stored at -80°C for future use. The growth state of the strain on MRS...

Embodiment 2

[0035] Embodiment 2: antibacterial test

[0036] Aeromonas vernerii, Pseudomonas aeruginosa and Vibrio vulnificus (the above strains were all provided by the Aquatic Animal Disease and Immunology Laboratory of Fisheries College of Tianjin Agricultural University) were used as indicator bacteria. Method With reference to the literature (Evidence for the competitive exclusion of Aeromonas salmonicida from fish with a tressinducible furunculosis by a fluorescent pseudomonad.Smith P and Dabey S, "Journal of Fish Diseases", No. 16, 1993), the activated indicator bacteria and the tested The strains were cultured in LB liquid medium for 24 h and diluted to 1×10 with saline 7 cfu / mL, take 0.2mL of the indicator strain and smear it on fresh LB solid medium, then take 2μL of the strain to be tested and inoculate it on the above plate, and observe whether there is an obvious inhibition zone around the inoculation area within 24 hours.

[0037] Re-screening was carried out by the Oxford ...

Embodiment 3

[0040] Example 3: Security Test

[0041] Hemolysis test: Streak culture of the strain to be tested on LB solid medium for 24 hours, scrape a single colony with an inoculation loop and inoculate it on a blood plate, incubate at 37°C for 24 hours, observe whether a transparent circle is formed around the colony, and judge the production of hemolysin . The experimental results showed that no hemolysis was observed on the blood plate, indicating that the strain did not produce hemolysin and had no potential pathogenicity.

[0042] Animal test: refer to the literature, select the immersion test on juvenile Penaeus monodon, select 1×10 7 , 1×10 5 Soak in cfu / mL bacterial liquid concentration, select Vibrio vulnificus bacterial liquid for positive control, and select normal saline for negative control group. After four hours of immersion in the bacterial suspension, the juvenile shrimp were transferred to aerated water. Each treatment group was performed in triplicate, observed f...

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Abstract

The invention provides enterococcus faecium G12. The enterococcus faecium G12 is isolated from hepato-pancreas of shellfish, is safe and has probiotic characteristics. A strain enterococcus faecium isnamed the enterococcus faecium G12, and is deposited in the China General Microbiological Culture Collection Center, the deposit number is CGMCC NO.15230, and the date of deposit is January 17, 2018.The enterococcus faecium G12 has high heat resistance, high resistance to stress and remarkable probiotic properties, has an obvious inhibitory effect on a common aquatic pathogenic bacterium aeromonas veronii, is sensitive to most broad-spectrum antibiotics, can tolerate a small intestine high-bile-salt environment and is colonized in the intestine, and is suitable for being used as a feed additive to be widely applied to aquaculture, thereby being capable of greatly reducing the pollution to the environmental and the adverse effects on human health caused by the addition of traditional antibiotics in the aquaculture, and achieving sustainable development of the aquaculture.

Description

technical field [0001] The invention relates to the technical field of microbial additives for aquatic products, in particular to the isolation, identification and safety of Enterococcus faecium (Enterococcus faecium), which has obvious inhibitory effect on the common aquatic pathogen Aeromonas vietori and is sensitive to most spectrum antibiotics. Performance test and identification and application of stress resistance performance. Background technique [0002] Enterococcus faecium (Enterococcus faecium) is a kind of anaerobic, non-spore-forming Gram-positive bacteria. The bacteria are round or oval, arranged in chains, and do not produce spores. Off-white, opaque, smooth-surfaced, circular colonies with a diameter of 0.5-1 mm can be formed on the blood plate. According to the "Catalogue of Feed Additives" issued by the Ministry of Agriculture of China, the types of feed microbial additives are clearly stipulated. Enterococcus faecium is among them, and it has become a com...

Claims

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Application Information

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IPC IPC(8): C12N1/20A01K61/13A23K10/18C12R1/01
CPCA23K10/18A01K61/13C12N1/205C12R2001/46Y02A40/81
Inventor 毛晴孙敬锋谢云丹张燕玉王轶凡
Owner TIANJIN AGRICULTURE COLLEGE
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