农药和补充食物在害虫-捕食系统中的重要性的理论研究。

IF 1.8 4区 数学 Q3 ECOLOGY
Journal of Biological Dynamics Pub Date : 2025-12-01 Epub Date: 2024-12-26 DOI:10.1080/17513758.2024.2444263
K Durga Prasad, B S R V Prasad, Kritish De
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引用次数: 0

摘要

有害生物综合防治(IPM)结合化学和生物防治,使有害生物数量保持在经济阈值以下。在IPM环境下,为捕食者提供额外食物以及农药使用对害虫-捕食者动态的影响仍未研究。为了解决这个问题,在这项工作中,我们利用微分方程建立了一个理论模型,假设捕食者的Holling II型功能反应,包括额外的食物来源。利用动力系统理论对系统中出现的Hopf分岔进行了分析,得出了害虫种群控制策略。研究表明,提供给捕食者的额外食物的质量和数量在系统的动态中起着至关重要的作用。杀虫剂,再加上引入由优质补充食品支持的捕食者,能够更有效地从系统中快速消除害虫。这一观察结果突出了IPM在以最少的农药施用优化有害生物管理策略和支持环境方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Importance of pesticide and additional food in pest-predator system: a theoretical study.

Integrated pest management (IPM) combines chemical and biological control to maintain pest populations below economic thresholds. The impact of providing additional food for predators on pest-predator dynamics, along- side pesticide use, in the IPM context remains unstudied. To address this issue, in this work a theoretical model was developed using differential equations, assuming Holling type II functional response for the predator, with additional food sources included. Strategies for controlling pest populations were derived by analyzing Hopf bifurcation occurring in the system using dynamical system theory. The study revealed that the quality and quantity of additional food supplied to predators play a crucial role in the system's dynamics. Pesticides, combined with the introduction of predators supported by high-quality supplementary food, enable a quick elimination of pests from the system more effectively. This observation highlights the role of IPM in optimizing pest management strategies with minimal pesticide application and supporting the environment.

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来源期刊
Journal of Biological Dynamics
Journal of Biological Dynamics ECOLOGY-MATHEMATICAL & COMPUTATIONAL BIOLOGY
CiteScore
4.90
自引率
3.60%
发文量
28
审稿时长
33 weeks
期刊介绍: Journal of Biological Dynamics, an open access journal, publishes state of the art papers dealing with the analysis of dynamic models that arise from biological processes. The Journal focuses on dynamic phenomena at scales ranging from the level of individual organisms to that of populations, communities, and ecosystems in the fields of ecology and evolutionary biology, population dynamics, epidemiology, immunology, neuroscience, environmental science, and animal behavior. Papers in other areas are acceptable at the editors’ discretion. In addition to papers that analyze original mathematical models and develop new theories and analytic methods, the Journal welcomes papers that connect mathematical modeling and analysis to experimental and observational data. The Journal also publishes short notes, expository and review articles, book reviews and a section on open problems.
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