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Method for improving anti-oxidation and immune resistance of hepialus larvae

An anti-oxidation and larval technology, applied in animal feed, animal feed, application, etc., can solve the problems of decreased survival rate of bat moth larvae, non-growth efficiency of bat moth larvae, morbidity and death of bat moth larvae, etc.

Pending Publication Date: 2022-06-28
哈尔滨辰康生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Under normal circumstances, general technical solutions, such as raising the temperature of the breeding environment, often cause a large number of larvae of bat moths to become ill and die, and at the same time cause the growth of miscellaneous bacteria such as Beauveria bassiana and Paecilomyces aureus, resulting in the survival of bat moth larvae. rate dropped significantly
In addition, some technicians use the solution of disinfectant to avoid the growth of miscellaneous bacteria, but it will cause the problem of no growth or low growth efficiency of bat moth larvae

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0011] Weigh 2 grams of Clostridium butyricum spore powder with a specification of 10 billion / gram and add it to 1000 mL of pure water, stir evenly, and obtain a concentration of 2 × 10 7 CFU / mL bacterial solution. The prepared bacterial liquid was sprayed on the soil matrix where the host larvae of Cordyceps sinensis grow, and the amount of bacteria liquid was sprayed into each cubic centimeter of the matrix. After fully stirring and mixing, 100 larvae of the same batch of hatched Cordyceps sinensis host bat moth larvae were weighed and weighed. After calculating the average single weight, it was put into the pretreated matrix, and the carrot feed was added to raise it under the environmental conditions of 8 degrees Celsius and 60% humidity. The control group was not sprayed with bacterial liquid, but was sprayed with a corresponding amount of sterile water, and other conditions were the same as the experimental group. The results of calculating the survival rate after feed...

Embodiment 2

[0013] Weigh 0.05 g of Clostridium butyricum spore powder with a specification of 10 billion / g and add it to 1000 mL of pure water, stir evenly, and obtain a concentration of 0.5 × 10 6 CFU / mL bacterial solution. The prepared bacterial liquid was sprayed on the soil matrix where the host larvae of Cordyceps sinensis grew, and the amount of bacteria liquid was sprayed into 0.01 mL per cubic centimeter of the substrate. After fully stirring and mixing, 100 larvae of the same batch of hatched Cordyceps sinensis host bat moth larvae were weighed and weighed. After calculating the average single weight, put it into the pretreated matrix, add carrot feed, and raise it under the environmental conditions of 18 degrees Celsius and 80% humidity. The control group was not sprayed with bacterial liquid, but was sprayed with a corresponding amount of sterile water, and other conditions were the same as the experimental group. The results of calculating the survival rate after feeding for...

Embodiment 3

[0015] Weigh 0.3 g of Clostridium butyricum spore powder with a specification of 10 billion / g and add it to 1000 mL of pure water, stir evenly, and obtain a concentration of 3 × 10 6 CFU / mL bacterial solution. The prepared bacterial liquid was sprayed on the soil matrix where the host larvae of Cordyceps sinensis grow, and the amount of bacteria liquid was sprayed into each cubic centimeter of the substrate. After fully stirring and mixing, 100 larvae of the same batch of hatched Cordyceps sinensis host bat moths were weighed and weighed. After calculating the average single weight, put it into the pretreated matrix, add carrot feed and raise it under the environmental conditions of 13 degrees Celsius and 75% humidity. The control group was not sprayed with bacterial liquid, but was sprayed with a corresponding amount of sterile water, and other conditions were the same as the experimental group. The results of calculating the survival rate after feeding for 120 days showed ...

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Abstract

The invention relates to a method for improving anti-oxidation and immune resistance of hepialus larvae, which is characterized in that when the hepialus larvae are fed, a clostridium butyricum solution is adopted to pretreat feed or a feeding substrate, so that clostridium butyricum is promoted to enter intestinal tracts of the hepialus larvae and is subjected to enzyme catalytic reaction with oligosaccharide components in the feed to generate hydrogen; therefore, the anti-oxidation ability of larvae for removing active oxygen substances such as hydroxyl free radicals is improved, the damage of oxygen free radicals in organisms is reduced, and the effects of resisting aging of insect cells, keeping cell viability, improving the immunity of larvae and resisting disease and infectious microbe are achieved.

Description

technical field [0001] The invention relates to a method for improving the antioxidative and immune resistance of bat moth larvae. Background technique [0002] Cordyceps sinensis is a precious medicinal material in my country. It is also known as the "Three Treasures of Traditional Chinese Medicine" together with ginseng and velvet antler. Cordyceps sinensis is produced in the eastern area of ​​the Qinghai-Tibet Plateau, and its wild yield is small. In recent decades, the resource has been declining, and it is facing the risk of resource depletion. [0003] Cordyceps sinensis is an insect-borne fungus that forms parasitic in the larvae of bat moth insects. Therefore, feeding manta moth larvae is a prerequisite for the production of Cordyceps sinensis. Because the larvae of the bat moth grow in the cold environment of the Qinghai-Tibet Plateau, it has the characteristics of long growth cycle and slow growth. Under normal circumstances, general technical solutions, such as...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01K67/033A23K10/18A23K50/90
CPCA01K67/033A23K10/18A23K50/90
Inventor 不公告发明人
Owner 哈尔滨辰康生物科技有限公司