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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >The contribution of conservation biological control to integrated control of Bemisia tabaci in cotton
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The contribution of conservation biological control to integrated control of Bemisia tabaci in cotton

机译:保护性生物防治对棉花烟粉虱综合防治的贡献

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Integrated control systems are based on the complimentary contribution of chemical and biological control fostered by conservation of natural enemies. Yet, in the 50 years since the integrated control concept [ICC] [Stern, V.M., Smith, R.F., van den Bosch, R., Hagen, K.S., 1959. The integrated control concept. Hilgardia 29, 81-101] was introduced there are few operational programs and even fewer attempts to analyze the mechanisms that allow chemical and biological control to act in concert. The dearth of demonstrable evidence for the ICC has eroded the credibility of biological control and its usage in operational IPM plans. We used in situ life tables within an experimental design to measure and compare the contribution and interaction of biological control and insecticides as tactical components within three pest management systems for Bemisia tabaci (Gennadius) in cotton. Insecticides were the key factor immediately following applications of broad-spectrum materials or one of two selective insect growth regulators (IGRs), and this mortality replaced that provided by natural enemies. Two to six weeks later, however, mortality from natural enemies, primarily predation, in the IGR regimes rebounded to the high levels observed in untreated controls and became the key factor. Mortality from natural enemies remained depressed in the broad-spectrum insecticide regime. Single IGR applications were sufficient to suppress B. tabaci populations throughout the season, while up to five broad-spectrum applications were needed to achieve comparable control. The chemical residual of IGRs was limited to several weeks, demonstrating a key role for mortality from conserved natural enemies that extended the control interval. This "bioresidual" allows for long-term, commercially-acceptable pest suppression following the use of selective insecticides. We provide a rare experimental illustration of integrated control, where chemical and biological controls "augment one another". Our approach and methodology could be applied to demonstrate and validate integrated control in many other systems, addressing a critical need for implementation of biological control in practicing IPM systems.
机译:综合控制系统是基于天敌保护所促进的化学和生物控制的互补贡献。然而,自集成控制概念[ICC]以来的50年间[Stern,V.M.,Smith,R.F.,van den Bosch,R.,Hagen,K.S.,1959.集成控制概念。 [Hilgardia 29,81-101]的介绍很少有操作程序,甚至很少尝试分析允许化学和生物控制协同作用的机制。 ICC缺乏可证明的证据,削弱了生物控制的信誉及其在IPM运营计划中的应用。我们在实验设计中使用了原位生命表,以测量和比较生物防治和杀虫剂(作为棉田烟粉虱(Gennadius)的三种害虫管理系统中的战术组件)之间的贡献和相互作用。杀虫剂是应用广谱材料或两种选择性昆虫生长调节剂(IGR)之一后的关键因素,其死亡率取代了天敌提供的死亡率。然而,在两到六周后,IGR方案中天敌的死亡(主要是捕食)导致的死亡率反弹至未治疗对照中观察到的高水平,成为关键因素。在广谱杀虫剂制度下,天敌的死亡率仍然令人沮丧。单个IGR施用足以抑制整个季节的烟粉虱,同时最多需要五次广谱施用才能实现可比的控制。 IGR的化学残留限制在数周之内,这表明了延长控制间隔的保守天敌对死亡率的关键作用。在使用选择性杀虫剂后,这种“生物残留物”可以长期抑制商业上可接受的害虫。我们提供了一个综合控制的罕见实验插图,其中化学和生物控制相互“增强”。我们的方法和方法可用于演示和验证许多其他系统中的集成控制,从而满足在实践IPM系统中实施生物控制的关键需求。

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