Modelling and Stability Analysis of Cotton Leaf Curl Virus (CLCuV) Transmission Dynamics in Cotton Plant

Abayneh Kebede Fantaye
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引用次数: 2

Abstract

In this paper, the transmission dynamics of cotton leaf curl virus (CLCuV) disease in cotton plants was proposed and investigated qualitatively using the stability theory of a nonlinear ordinary differential equations. Cotton and vector populations were both taken into account in the models. Cotton population was categorized as susceptible (A) and infected (B). The vector population was also categorized as susceptible (C) and infected (D). We established that all model solutions are positive and bounded by relevant initial conditions. The existence of unique CLCuV free and endemic equilibrium points, as well as the basic reproduction number, which is computed using the next generation matrix approach, are investigated. The conditions for the local and global asymptotic stability of these equilibrium points are then established. When the basic reproduction number is less than one, the system has locally and globally asymptotically stable CLCuV free equilibrium point, but when the basic reproduction number is more than one, the system has locally and globally asymptotically stable endemic equilibrium point. The numerical simulation findings show that lowering the infection rate of cotton vectors has a significant impact on controlling cotton leaf curl virus (CLCuV) in the time frame given.
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棉花卷曲叶病毒(CLCuV)在棉花植株中的传播动力学建模及稳定性分析
本文利用非线性常微分方程的稳定性理论,提出了棉花卷曲叶病毒(CLCuV)在棉花植株中的传播动力学,并对其进行了定性研究。模型中都考虑了棉花种群和病媒种群。棉花种群被划分为易感(A)和感染(B),媒介种群也被划分为易感(C)和感染(D)。我们建立了所有模型解都是正的,并且受相关初始条件的限制。研究了CLCuV自由平衡点和特有平衡点的存在性,以及用下一代矩阵法计算的基本繁殖数。建立了这些平衡点的局部和全局渐近稳定的条件。当基本繁殖数小于1时,系统具有局部和全局渐近稳定的CLCuV自由平衡点;当基本繁殖数大于1时,系统具有局部和全局渐近稳定的地方性平衡点。数值模拟结果表明,在给定的时间范围内,降低棉花媒介的感染率对控制棉花卷曲叶病毒(CLCuV)有显著的影响。
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