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首页> 外文期刊>Theoretical Population Biology >A network approach to modeling population aggregation and genetic control of pest insects
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A network approach to modeling population aggregation and genetic control of pest insects

机译:害虫昆虫种群聚集和遗传控制建模的网络方法

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Historically, models of the invasion and biological control of insect pests have omitted heterogeneities in the spatial structure of the targeted populations. In this study, we use stochastic network simulations to examine explicitly population heterogeneity as a function of landscape structure and insect behavior. We show that when insects are distributed non-randomly across a heterogeneous landscape, control can be significantly hindered. However, when insect populations are clustered as a result of limited dispersal, genetic control efficiency can be enhanced. In developing the model, we relax a key assumption of previous theoretical studies of genetic control: that released genetic control insects remain homogenously distributed irrespectiveof the spatial structure of the wild type populations. Here, this behavior (termed the 'coverage proportion') is parameterized and its properties are explored. We show that landscape heterogeneity and limited dispersal have little effect on the criticalcoverage proportion necessary for control.
机译:从历史上看,害虫的入侵和生物控制模型已经忽略了目标种群空间结构的异质性。在这项研究中,我们使用随机网络模拟来明确检查种群异质性与景观结构和昆虫行为的关系。我们表明,当昆虫在整个异质景观中非随机分布时,控制可能会受到严重阻碍。然而,当昆虫种群由于有限的传播而聚集时,可以提高遗传控制效率。在开发该模型时,我们放宽了先前有关遗传控制的理论研究的一个关键假设:释放的遗传控制昆虫无论野生型种群的空间结构如何,均保持均匀分布。在此,对该行为(称为“覆盖率”)进行参数化,并探究其特性。我们表明,景观异质性和有限的扩散对控制所需的临界覆盖率几乎没有影响。

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