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首页> 外文期刊>The Journal of Applied Ecology >EPIC-GILSYM: Modelling crop-pest insect interactions and management with a novel coupled crop-insect model
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EPIC-GILSYM: Modelling crop-pest insect interactions and management with a novel coupled crop-insect model

机译:EPIC-GILSYM:造型害虫昆虫交互和管理一个新颖的耦合crop-insect模型

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1. Modern intensive agriculture relies heavily on pesticides to control weeds, pathogens and insect pests. Forecasting and managing the impact of pests and pesticides on crop production is challenging. Since pest control tactics not only affect the target pest, but also initiate feedbacks within the field community, proper modelling of pest management requires functions in at least two trophic levels. 2. To respond to this challenge, we integrated a process-based insect population dynamics model and a process-based crop model. The coupled model was then used to simulate eight field trials on five different sites across the US, testing the efficacy of five different pesticides against six different pests as well as the yield response. 3. The results showed that the model performed robustly on different sites (five plots across the US) and under different climatic conditions (8 years spanning a period from 1985 to 2014). For armyworm and black cutworm, the simulated yields per hectare, the number of insects per plant and the response to insecticide treatments closely matched the reported numbers. For the European corn borer, the number of insects per plant differed slightly between simulated and field data, but the response to the insecticide treatment showed an adequate match. Simulations for the bean leaf beetle and stalk borer yielded similar results. The comparison between simulated and measured adult potato leafhopper numbers revealed that even though numbers did not match exactly in two of three years, they were in the same range, and the measured and simulated impacts were almost identical for all three used insecticides. 4. Synthesis and applications. The novel coupled crop-insect model EPIC-GILSYM realistically simulates two trophic levels (insects and plants), their interactions, and the effect crop management has on both levels. It has been successfully tested against field trial data collected in eight different years on five plots in different parts of th
机译:1. 杀虫剂来控制杂草,病原体和昆虫害虫。害虫和农药在作物生产具有挑战性的。影响目标害虫,还发起反馈现场社区内,适当的害虫管理需要造型功能至少在两个营养水平。这一挑战,我们一个基于流程的集成昆虫种群动态模型和基于流程的作物模型。然后在五个用来模拟八个田间试验不同的站点,测试五种不同农药对六的效果不同的害虫以及产生反应。结果表明,该模型在不同的网站(5块美国)和不同气候条件下(8年跨越一个时期从1985年到2014年)。对粘虫和小地老虎,模拟每公顷产量,昆虫的数量植物和杀虫剂治疗的响应密切匹配报告的数字。欧洲玉米螟,昆虫的数量植物和模拟之间略有不同字段数据,但对杀虫剂的反应治疗显示适当的匹配。豆叶甲虫和柄钻了类似的结果。并测量成人土豆叶蝉数量透露,尽管数字不匹配完全在两个三年,他们的相同的范围,测量和模拟所有三个使用影响几乎是相同的杀虫剂。小说EPIC-GILSYM crop-insect耦合模型实际模拟两个营养级(昆虫和植物),他们的互动,影响作物管理已在两个水平。成功对现场试验数据进行了测试在八个不同的年收集的五块在的不同部分

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