A three-dimensional composite interplanting method of poria cocos and soybean
By using a three-dimensional intercropping method of Poria cocos and soybeans, an efficient synergistic system was constructed. By using modified soil conditioners and pre-treated pine wood segments, the problems of low land utilization, low nitrogen fixation efficiency, and difficulty in establishing microbial strains in Poria cocos cultivation were solved, thus achieving high yield and sustainable development of both Poria cocos and soybeans.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HUANGGANG ACAD OF AGRI SCI
- Filing Date
- 2026-04-08
- Publication Date
- 2026-07-17
AI Technical Summary
Existing Poria cocos cultivation methods suffer from problems such as low land utilization, low nitrogen fixation efficiency, poor stress resistance, and difficulty in establishing fungal strains. Traditional intercropping techniques fail to fully explore the synergistic potential between crops at the physiological and biochemical levels, and soil improvement methods are extensive and lack precise control, thus limiting the survival rate and growth rate of Poria cocos fungal strains.
A three-dimensional intercropping method of Poria cocos and soybeans was adopted. By applying modified soil conditioner and specially treated pine wood segments, an efficient synergistic symbiotic system was constructed. The nitrogen-fixing function of soybean rhizobia and the slow-release function of modified biochar were utilized. Combined with chemical and physical composite processes, crop growth and system stress resistance were precisely regulated. Innovative pretreatment technology improved the colonization speed and survival rate of the strains.
It significantly improved land productivity and resource utilization, increased the yield and robustness of Poria cocos and soybeans, improved the soil micro-ecological environment, solved the problems of low land utilization and difficulty in establishing microbial strains, and achieved a dual improvement in economic and ecological benefits.
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Figure CN122397583A_ABST