Method for artificially feeding cordyceps sinensis host hepialus armoricanus larvae

By using a three-layer structure design and a dynamic feeding method to simulate the natural habitat, the problems of low survival rate, long growth cycle and frequent disease outbreaks of ghost moth larvae were solved, achieving efficient and large-scale management of ghost moth larvae and improving survival rate and health.

CN120959208APending Publication Date: 2025-11-18TIANSHUI ZHONGXING BIO TECH
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Patent Information

Application Number
CN202511222208.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing technologies have resulted in low survival rates, long growth cycles, susceptibility to diseases, and extensive management of bat moth larvae, making it difficult to achieve large-scale and standardized breeding.

Method used

It adopts a three-layer structure design: an underground shelter and moisture-retaining layer, an artificial feed slow-release layer, and a surface humus activity layer. Combined with dynamic feeding and environmental control, it simulates the natural habitat, uses natural and palatable plants and functional additives, and constructs a multi-dimensional disease prevention and control system.

Benefits of technology

It significantly improved the survival rate and health of ghost moth larvae, shortened the growth cycle, enabled efficient and large-scale management, and increased breeding efficiency per unit area.

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Abstract

The invention relates to the technical field of artificial cultivation of medicinal insects, in particular to a method for artificially feeding cordyceps sinensis host hepialus armoricanus larvae. The invention provides a method for artificially feeding cordyceps sinensis host hepialus armoricanus larvae. The method comprises the following steps: sequentially constructing a three-layer structure from bottom to top in an independent small chamber, wherein the three-layer structure comprises an underground sheltering and moisturizing layer, an artificial feed slow-release layer and an earth surface humus activity layer; feeding a single hepialus armoricanus larva in the small chamber; environment control: the temperature is 10-18 DEG C, and the humidity is 75-85%; and feeding management: dynamically feeding artificial feed for slow release and cleaning excrement. According to the method, the survival rate and health degree of the hepialus armoricanus larvae can be remarkably improved, the growth cycle is shortened, and large-scale management is facilitated.
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