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Theoretical analysis of spatial nonhomogeneous patterns of entomopathogenic fungi growth on insect pest

机译:昆虫病虫虫昆虫致病性真菌生长的空间非均匀模式的理论分析

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摘要

This paper presents the study of the dynamics of intrahost (insect pests)-pathogen [entomopathogenic fungi (EPF)] interactions. The interaction between the resources from the insect pest and the mycelia of EPF is represented by the Holling and Powell type II functional responses. Because the EPF's growth is related to the instability of the steady state solution of our system, particular attention is given to the stability analysis of this steady state. Initially, the stability of the steady state is investigated without taking into account diffusion and by considering the behavior of the system around its equilibrium states. In addition, considering small perturbation of the stable singular point due to non-linear diffusion, the conditions for Turing instability occurrence are deduced. It is observed that the absence of the regeneration feature of insect resources prevents the occurrence of such phenomena. The long time evolution of our system enables us to observe both spot and stripe patterns. Moreover, when the diffusion of mycelia is slightly modulated by a weak periodic perturbation, the Floquet theory and numerical simulations allow us to derive the conditions in which diffusion driven instabilities can occur. The relevance of the obtained results is further discussed in the perspective of biological insect pest control.
机译:本文介绍了胎粪(昆虫害虫)的动态的研究 - 嗜血症[昆虫致病真菌(EPF)]相互作用。来自昆虫害虫和EPF菌丝体的资源之间的相互作用由HOLLING和POWELL II类功能反应表示。由于EPF的增长与我们系统稳态解决方案的不稳定性有关,因此对这种稳态的稳定性分析给出了特别的注意。最初,研究了稳定状态的稳定性而不考虑扩散,并考虑系统周围的均衡状态。另外,考虑由于非线性扩散引起的稳定奇异点的小扰动,推导出无稳定性发生的条件。观察到昆虫资源的再生特征缺乏阻止这种现象的发生。我们系统的长时间演变使我们能够观察点点和条纹图案。此外,当菌丝体的扩散被弱周期性扰动略微调节时,Floquet理论和数值模拟允许我们导出可能发生扩散驱动的不稳定性的条件。在生物害虫防治的角度下进一步讨论了所得结果的相关性。

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  • 来源
    《Chaos》 |2019年第6期|共12页
  • 作者单位

    Univ Yaounde I Postgrad Sch Sci Technol &

    Geosci Res &

    Postgrad Training Unit Phys &

    Applicat Lab Mech Mat &

    Struct Dept Phys Fac Sci POB 812 Yaounde Cameroon;

    Univ Buea Complex Syst &

    Theoret Biol Grp Lab Res Adv Mat &

    Nonlinear Sci LaRAMaNS Dept Phys Fac Sci POB 63 Buea Cameroon;

    Univ Yaounde I Postgrad Sch Sci Technol &

    Geosci Res &

    Postgrad Training Unit Phys &

    Applicat Lab Mech Mat &

    Struct Dept Phys Fac Sci POB 812 Yaounde Cameroon;

    Int Rice Res Inst Sustainable Impact Platform Adapt Agron &

    Pest Ecol Cluster DAPO Box 7777-1301 Manila Philippines;

    Univ Yaounde I Postgrad Sch Sci Technol &

    Geosci Res &

    Postgrad Training Unit Phys &

    Applicat Lab Mech Mat &

    Struct Dept Phys Fac Sci POB 812 Yaounde Cameroon;

    Int Inst Trop Agr 08 BP 0932 Cotonou Benin;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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