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Butterfly catastrophe model for wheat aphid population dynamics: Construction, analysis and application

机译:小麦蚜虫种群动态的蝴蝶突变模型:构建,分析与应用

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摘要

In agriculture, a population catastrophic phenomenon exists in many species of insects such as wheat aphids. Numerous previous attempts have been made to describe this dynamic behavior of insect populations using mathematical models in order to develop efficient biological control measures. However, most of the models are limited to no more than three controlling variables and restricted in theoretical analysis, thus, are not enough to cope with complicated ecological systems. Catastrophe theory, one of the earliest dynamic theories, can be used to address this problem more comprehensively. In this study, we propose using butterfly catastrophe theory to build a wheat aphid population dynamics model as a function of four controlling factors (natural enemy, weather factor, pesticide effect and carrying capacity). We used data collected by Ecology and Integrated Pest Management Laboratory in Northwest A & F University to verify the model. Model development, parameter estimation and verification results are presented. The results indicate that the butterfly catastrophe model can be applied to analyze aphid population dynamics considering four controlling variables. Effective management strategies for preventing catastrophic increase of wheat aphids can be carried out by changing the four controlling variables.
机译:在农业中,许多害虫如小麦蚜虫中都存在种群灾难性现象。为了开发有效的生物防治措施,已经进行了许多先前的尝试来使用数学模型描述昆虫种群的这种动态行为。但是,大多数模型限于三个控制变量以下,并且在理论分析中受到限制,因此不足以应付复杂的生态系统。突变理论是最早的动态理论之一,可以用来更全面地解决这个问题。在这项研究中,我们建议使用蝴蝶突变理论,根据四个控制因素(天敌,天气因素,农药效应和承载力)建立小麦蚜虫种群动态模型。我们使用了西北农林科技大学生态与病虫害综合治理实验室收集的数据来验证该模型。提出了模型开发,参数估计和验证结果。结果表明,考虑四个控制变量,蝴蝶突变模型可用于分析蚜虫种群动态。通过更改四个控制变量,可以采取有效的管理策略来防止小麦蚜虫的灾难性增长。

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