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The Incorporation of Conservation Biological Control into the Management of Bemisia tabaci (MEAM1) in Cotton

机译:将保护性生物防治技术纳入棉花烟粉虱(MEAS1)的管理中

摘要

Natural enemies provide critical population regulation of many pest species, though their effects are not commonly incorporated into agricultural management decisions. Conservation biological control is an important tool that can be implemented to minimize pest damage, but applying it requires appropriate understanding of pest and natural enemy relationships. Through experimental cotton field trials, I identified predator: prey ratios based on key arthropod predators as action thresholds of the whitefly pest Bemisia tabaci MEAM1 (Dinsdale et al. 2010; equivalent to Bemisia argentifolii Bellows et al. 1994 [Hemiptera: Aleyrodidae]), validated their efficacy, and promoted them to cotton pest managers. This dissertation begins with a multi-year field trial where whitefly and natural enemy populations were manipulated with a series of insecticidal treatments to identify key arthropod predators. The critical abundance of four key predators necessary to suppress whiteflies was estimated through predator: prey ratios. These ratios were refined for commercial pest management and developed to conform to the current whitefly IPM framework as a simple to use management-decision tool that would be readily adopted and used by pest managers. Predator: prey ratios were then validated in 1) a second field trial, 2) commercial fields in Arizona and northern Mexico and 3) historical field trials conducted from 1997-2010, where whitefly management decisions made with the standard threshold and ratios, were compared with the standard threshold alone. I found no difference in management outcomes when decisions were made with the standard threshold alone, or with predator: prey ratios in the field trial, but analysis of potential decisions on commercial farms and with historical trial data indicated that the majority of sprays could be delayed if control decisions incorporated ratio-based thresholds. Finally, an outreach program was developed and deployed to present ratios as decision-making tools for cotton pest managers that reduce uncertainty in control decisions and optimize spray outcomes. Pest managers indicated positive changes in knowledge and a gradual adoption of ratios for decision-making. The implementation of whitefly control decisions that incorporate predator: prey ratios may reduce pest managers' uncertainty in decision-making, as well as insecticide use and management costs.
机译:天敌为许多害虫物种提供了关键的种群调控,尽管其影响通常不被纳入农业管理决策中。保护性生物防治是可用来最大程度地减少有害生物损害的重要工具,但应用它需要对有害生物和天敌之间关系的适当了解。通过试验性棉田试验,我确定了以主要节肢动物捕食者为基础的捕食者:捕食者的比率,将其作为粉虱害虫Bemisia tabaci MEAM1的行动阈值(Dinsdale等,2010;相当于Bemisia argentifolii Bellows等,1994 [Hemiptera:Aleyrodidae]),验证了它们的功效,并将其提升为棉花害虫管理者。本论文从一项为期多年的田间试验开始,其中对粉虱和天敌种群进行了一系列杀虫处理,以确定主要节肢动物的天敌。通过捕食者:被捕食者比率估算了抑制粉虱必需的四个关键捕食者的临界丰度。对这些比率进行了细化,以用于商业害虫管理,并发展为符合当前的粉虱IPM框架,是易于使用的管理决策工具,害虫管理者可以轻松采用和使用。捕食者:然后在1)第二次田间试验,2)在亚利桑那州和墨西哥北部的商业田地以及3)1997-2010年进行的历史田间试验中验证了捕食者的比率,比较了使用标准阈值和比率做出的粉虱管理决策。仅使用标准阈值。在实地试验中,仅使用标准阈值或捕食者:猎物的比率来做出决策时,我发现管理结果没有差异,但是对商业农场的潜在决策以及历史试验数据的分析表明,大多数喷雾可能会延迟控制决策是否包含基于比率的阈值。最后,制定并推广了一项推广计划,以将比率作为棉花害虫管理者的决策工具,以减少控制决策的不确定性并优化喷雾结果。害虫管理者表示知识方面发生了积极变化,并逐步采用了比率进行决策。结合捕食者:猎物比率的粉虱控制决策的实施可以减少有害生物管理者在决策中的不确定性以及杀虫剂的使用和管理成本。

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    Vandervoet Timothy F.;

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  • 年度 2016
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