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A matrix model describing host–parasitoid population dynamics: The case of Aphelinus certus and soybean aphid

机译:描述宿主-拟寄生虫种群动态的矩阵模型:以麻疯豆和大豆蚜虫为例

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摘要

Integrating elements from life tables into population models within a matrix framework has been an underutilized method of describing host–parasitoid population dynamics. This type of modeling is useful in describing demographically-structured populations and in identifying points in the host developmental timeline susceptible to parasitic attack. We apply this approach to investigate the effect of parasitism by the Asian parasitoid Aphelinus certus on its host, the soybean aphid (Aphis glycines). We present a matrix population model with coupled equations that are analogous to a Nicholson–Bailey model. To parameterize the model, we conducted several bioassays outlining host and parasitoid life history and supplemented these studies with data obtained from the literature. Analysis of the model suggests that, at a parasitism rate of 0.21 d−1, A. certus is capable of maintaining aphid densities below economically damaging levels in 31.0% of simulations. Several parameters—parasitoid lifespan, colonization timeline, host developmental stage, and mean daily temperature—were also shown to markedly influence the overall dynamics of the system. These results suggest that A. certus might provide a valuable service in agroecosystems by suppressing soybean aphid populations at relatively low levels of parasitism. Our results also support the use of A. certus within a dynamic action threshold framework in order to maximize the value of biological control in pest management programs.
机译:在矩阵框架内将生命表中的元素整合到人口模型中,描述宿主-寄生虫种群动态的方法一直未得到充分利用。这种类型的建模在描述人口结构人口和确定宿主发展时间表中容易受到寄生虫侵袭的点时很有用。我们采用这种方法来调查亚洲寄生性麻风阿菲林对它的寄主大豆蚜(Aphis glycines)的寄生作用。我们提出了一个矩阵种群模型,该模型具有类似于Nicholson-Bailey模型的耦合方程式。为了参数化该模型,我们进行了几次生物测定,概述了宿主和寄生虫的生活史,并用从文献中获得的数据补充了这些研究。对模型的分析表明,在寄生率为0.21 d −1 时,A。certus能够在31.0%的模拟中将蚜虫密度保持在经济损害水平以下。还显示了几个参数,如拟寄生物的寿命,定殖时间轴,宿主发育阶段和平均日温度,这些参数会显着影响系统的整体动力学。这些结果表明,A。certus可能通过在相对较低的寄生水平上抑制大豆蚜虫种群而在农业生态系统中提供有价值的服务。我们的结果还支持在动态行动阈值框架内使用A. certus,以便在虫害管理计划中最大化生物控制的价值。

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