A pesticide synergistic regulation method and system based on different strain symbiotic mechanisms

By analyzing soil pH and the growth and distribution of harmful bacterial strains, an oxidation-reduction potential trend map was constructed, and the optimal colonization area of ​​beneficial bacterial strains was planned. This solved the shortcomings of the symbiotic mechanism of multiple bacterial strains in the regulation of pesticide efficacy, and achieved a high-efficiency and stable synergistic effect of pesticides under different environmental conditions.

CN120234704BActive Publication Date: 2026-06-09广东博创佳禾科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
广东博创佳禾科技有限公司
Filing Date
2025-03-14
Publication Date
2026-06-09

AI Technical Summary

Technical Problem

Existing pesticide synergy regulation methods lack a deep understanding of the symbiotic mechanisms among multiple bacterial strains, leading to decreased pesticide efficacy. Furthermore, traditional methods may pose potential environmental hazards and lack universality and stability.

Method used

By acquiring soil pH and the growth distribution of harmful bacterial strains, an oxidation-reduction potential trend map was constructed. The antagonistic performance index of beneficial bacterial strains was analyzed, the optimal colonization area was planned, and pesticide efficacy was regulated by combining the radiation influence area of ​​biofilm growth.

Benefits of technology

It achieves precise and efficient control of harmful strains, improves the control effect of pesticides and the survival antagonism of beneficial strains, and enhances the stability and universality of pesticides under different environmental conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of pesticide production and preparation, and particularly relates to a pesticide synergistic regulation method and system based on different strain symbiotic mechanisms. A local soil sample space field is constructed, beneficial strain colonization planning analysis is performed on the local soil sample space field based on target control requirements of the local soil sample, strain symbiotic mechanisms and actual antagonistic performance indexes, and the best colonization area of the beneficial strain in the local soil sample is obtained. A growth radiation influence area of the harmful strain is generated based on a historical growth rate and a historical growth trend of a biological membrane on a root system plant, and synergistic regulation is performed on a pesticide preparation sample through analysis of the growth radiation influence area and the best colonization area. The present application can accurately and efficiently regulate the pesticide through analysis of antagonistic changes between the beneficial strain and the harmful strain, symbiotic mechanisms of biological membrane space colonization influence, so as to improve the control effect of the pesticide on the root system plant in the target soil after application.
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