Cyclo-(alanine-tryptophan) serving as disease-resistant immunopotentiating agent for channa argus

A technology of alanine and tryptophan, applied in climate change adaptation, animal feed, additional food elements, etc., can solve problems such as reducing production performance, and achieve the effects of improving utilization rate, good meat quality and high economic benefits

Inactive Publication Date: 2016-02-24
JILIN AGRICULTURAL UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in high-density intensive aquaculture, facing various environmental stresses, disinfectants and drugs entering high-density aquaculture water can affect the integrity of gastrointestinal microbial flora, reduce production performance, and inhibit immune responses

Method used

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  • Cyclo-(alanine-tryptophan) serving as disease-resistant immunopotentiating agent for channa argus
  • Cyclo-(alanine-tryptophan) serving as disease-resistant immunopotentiating agent for channa argus
  • Cyclo-(alanine-tryptophan) serving as disease-resistant immunopotentiating agent for channa argus

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] The extraction of embodiment 1 ring-(alanine-tryptophan)

[0027] (1) Fermentation and fermentation product extraction:

[0028] marine bacteria Pseudomonas putida After 2 to 3 days of activation, pick an appropriate amount of single colony from the plate and inoculate it into a test tube containing 10 mL of MB liquid medium, and culture at 30°C and 150 r / min for 1.5 days with shaking. Then the bacterial solution was inoculated into a Erlenmeyer flask containing 100mL medium at an inoculum amount of 5% (V / V), and cultured at 30°C and 150r / min shaking for 1.5d. The bacterial solution was inoculated into a 1000mL Erlenmeyer flask with 5% (V / V) inoculum, and cultured at 30°C and 150r / min for 5 days with shaking. After the expanded culture, the bacterial fermentation liquid was extracted with an equal volume of ethyl acetate containing 5% acetone, the bacterial liquid and the extract were mixed in a certain ratio, and each bottle of bacterial liquid was extracted three t...

Embodiment 2

[0037] Embodiment 2 Materials and methods

[0038] Healthy snakeheads, about 80g, were randomly distributed in the 200L flowing water tank after being transported to the laboratory. Acclimate for 14 days before the formal test to adapt to the laboratory conditions (dissolved oxygen: 5.50±0.68mg / L; pH7.2±0.5; nitrite: 0.022±0.01mg / L; ammonia nitrogen: 0.14±0.05mg / L; 23±2℃ ), the test fish were randomly divided into control group, group I, group II and group III, with 3 repetitions in each group. The control group was fed with basic diet, and the test group was fed with 0.5, 1.0 and 2.0% cyclo-(alanine-tryptophan). Feed twice a day (9:00 and 15:00) at a rate of 3% of body weight.

[0039] Feed formula of the control group by weight: imported fish meal 15.23, domestic fish meal 15.62, cotton meal 7.5, rapeseed meal 6.3, silkworm chrysalis 4.0, cuttlefish meal 3.0, hemoglobulin meal 3.2, soybean meal 18.62, vitamin premix 1.0, peanut meal 9.68, Flour 25.42, fish oil 2.8, corn 6...

Embodiment 3

[0047] Example 3 Blood samples for immunoassay

[0048] Blood samples were collected at 7, 14 and 21 d. Therefore, a total of 15 fish were taken from each tank in each treatment group for immunoassay. After the test fish were euthanized by injecting an overdose of MS-222, blood was collected from the tail vein with a 2.5mL syringe. Each fish was sampled only once to avoid the influence of multiple blood sampling and hand squeezing on the detection. Leukocyte separation refers to the method of Ardóet et al. (2009).

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Abstract

The invention discloses cyclo-(alanine-tryptophan) serving as a disease-resistant immunopotentiating agent for channa argus. A marine bacterium metabolite, namely the cyclo-( alanine-tryptophan), is added to a channa argus compound feed provided by the invention, and has the effects of improving the disease resistance of the channa argus and promoting the growth of the channa argus. After the channa argus is fed with the compound feed, through immunological detection, the serum lysozyme activity, the serum phagocytosis capacity and the serum disinfection capacity of the channa argus in an experimental group are all greatly improved and far exceed those of the channa argus in a control group; the relative expression of IL-1 beta genes of the channa argus in the experimental group is raised; the disease resistance of the channa argus is detected through injecting bacteria with a medial lethal concentration into the abdominal cavity of the channa argus, 15 days later, the lowest cumulative mortality rate of the channa argus in the experimental group is 32%, and the lowest cumulative mortality rate of the channa argus in the control group is 68%. According to the comprehensive raising method provided by the invention, the channa argus is bred in a matched manner, water bodies are fully utilized, the immunopotentiating agent is added, the immunity is improved, and the growth is promoted, so that economic benefits are increased.

Description

technical field [0001] The invention belongs to the field of aquaculture, and in particular relates to a disease-resistant immune enhancer for snakeheads and a comprehensive breeding method thereof. Background technique [0002] Snakehead ( Channaargus ) belongs to Perciformes, Channaidae, Channa genus. Yinwu snakehead is a variety that is suitable for the unique climate and water characteristics of Northeast China and has strong stress resistance. Because of its high nutritional value, delicious taste, and various eating methods, it is a very popular variety in domestic and foreign markets. In recent years, breakthroughs have been made in the domestication and artificial breeding of snakeheads, and the nutritional composition of compound feeds has been systematically studied. However, in high-density intensive aquaculture, facing various environmental stresses, disinfectants and drugs entering high-density aquaculture water can affect the integrity of gastrointestinal mic...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A23K50/80A23K10/22A23K10/24A23K10/30A23K10/37A23K20/174A23K20/20
CPCY02A40/818Y02P60/87
Inventor 王桂芹郑伟夏长革郭贵良陈秀梅刘凡宁左亚男杨秋实
Owner JILIN AGRICULTURAL UNIV
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