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首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Integrating Insect, Resistance, and Floral Resource Management in Weed Control Decision-Making
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Integrating Insect, Resistance, and Floral Resource Management in Weed Control Decision-Making

机译:在防草决策中整合昆虫,抗性和花卉资源管理

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摘要

Managing agricultural pests with an incomplete understanding of the impacts that tactics have on crops, pests, and other organisms poses risks for loss of short-term profits and longer-term negative impacts, such as evolved resistance and nontarget effects. This is especially relevant for the management of weeds that are viewed almost exclusively as major impediments to crop production. Seldom considered in weed management are the benefits weeds provide in agroecosystems, which should be considered for optimal decision-making. Integration of weed costs and benefits will become increasingly important as management for pests transitions away from nearly complete reliance on herbicides and transgenic crop traits as the predominant approach for control. Here, we introduce a weed-management decision framework that accounts for weed benefits and exemplify how in-crop weed occurrence can increase crop yields in which a highly damaging insect also occurs. We highlight a case study showing how management decision-making for common milkweed, which is currently controlled primarily with glyphosate in herbicide-tolerant corn, can be improved by integrating management of the European corn borer (ECB), which is currently controlled primarily by the transgenic toxin Cry1 in Bacillus thuringiensis corn. Our data reveal that milkweed plants harboring aphids provide a food source (honeydew) for parasitoid wasps, which attack ECB eggs. Especially at high ECB population densities (>1 egg mass leaf(-1)), maintaining low milkweed densities (<1 stem m(-2)), effectively helps to minimize yield losses from ECB and to increase the economic injury level of this aggressive perennial weed. In addition, milkweed is the host for the monarch butterfly, so breeding-ground occurrences of the plant, including crop fields, may help sustain populations of this iconic insect. Using a more-holistic approach to integrate the management of multiple crop pests has the capacity to improve decision-making at the field scale, which can improve outcomes at the landscape scale.
机译:如果不完全了解战术对农作物,害虫和其他生物的影响,而对农业害虫进行管理,则可能会损失短期利益和长期负面影响,例如进化的抗性和非目标作用。这对于杂草的管理尤其重要,杂草几乎完全被视为作物生产的主要障碍。杂草管理中很少考虑的是杂草在农业生态系统中提供的利益,应将其考虑为最佳决策依据。随着对害虫的管理已从几乎完全不依赖除草剂和转基因作物性状转变为控制的主要方法,杂草成本和收益的整合将变得越来越重要。在这里,我们介绍了一种杂草管理决策框架,该框架考虑了杂草的好处,并举例说明了作物内杂草的出现如何可以增加农作物的产量,其中还出现了高度破坏性的昆虫。我们重点介绍了一个案例研究,说明如何通过整合目前主要由欧洲玉米the控制的欧洲玉米bore(ECB)的管理,可以改善目前主要由除草剂耐受性玉米中的草甘膦控制的普通马利筋的管理决策。苏云金芽孢杆菌玉米中的转基因毒素Cry1。我们的数据表明,带有蚜虫的马利筋植物为寄生性黄蜂提供了食物来源(蜜露),这些寄生虫会攻击ECB卵。尤其是在高ECB种群密度(> 1个卵叶(-1))下,保持较低的马利筋密度(<1个茎m(-2)),可以有效地减少ECB的产量损失并提高其经济损失水平多年生侵略性杂草。此外,马利筋是帝王蝶的寄主,因此该植物的繁殖地(包括农田)可能有助于维持这种标志性昆虫的种群。使用更全面的方法来整合多种农作物有害生物的管理能力,可以改善田间尺度的决策,从而可以改善景观尺度的结果。

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