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A decision-support tool to predict spray deposition of insecticides in commercial potato fields and its implications for their performance

机译:一种决策支持工具,可预测商业马铃薯田中杀虫剂的喷雾沉积及其对农药性能的影响

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Approximately US$1.3 billion is spent each year on insecticide applications in major row crops. Despite this significant economic importance, there are currently no widely established decision-support tools available to assess suitability of spray application conditions or of the predicted quality or performance of a given commercial insecticide applications. We conducted a field study, involving 14 commercial spray applications with either fixed wing airplane (N = 8) or ground rig (N = 6), and we used environmental variables as regression fits to obtained spray deposition (coverage in percentage). We showed that 1) ground rig applications provided higher spray deposition than aerial applications, 2) spray deposition was lowest in the bottom portion of the canopy, 3) increase in plant height reduced spray deposition, 4) wind speed increased spray deposition, and 5) higher ambient temperatures and dew point increased spray deposition. Potato psyllid, Bactericera cockerelli (Sulc) (Hemiptera: Triozidae), mortality increased asymptotically to ≈60% in response to abamectin spray depositions exceeding around 20%, whereas mortality of psyllid adults reached an asymptotic response ≈40% when lambda-cyhalothrin/thiamethoxam spray deposition exceeded 30%. A spray deposition support tool was developed (http://pilcc.tamu.edu/) that may be used to make decisions regarding 1) when is the best time of day to conduct spray applications and 2) selecting which insecticide to spray based on expected spray deposition. The main conclusion from this analysis is that optimization of insecticide spray deposition should be considered a fundamental pillar of successful integrated pest management programs to increase efficiency of sprays (and therefore reduce production costs) and to reduce risk of resistance development in target pest populations.
机译:每年大约有13亿美元用于主要行作物的杀虫剂应用。尽管具有如此重要的经济意义,但目前尚没有广泛建立的决策支持工具可用于评估喷雾应用条件的适用性或给定商业杀虫剂应用的预测质量或性能。我们进行了一项现场研究,涉及14架固定翼飞机(N = 8)或地面装备(N = 6)的商业喷雾应用,我们使用环境变量作为回归拟合来获得喷雾沉积(覆盖率)。我们发现,1)地面钻机应用提供的喷雾沉积高于空中应用; 2)喷雾沉积在顶篷底部最低; 3)植物高度增加,喷雾沉积减少; 4)风速增加喷雾沉积,以及5 )较高的环境温度和露点会增加喷雾沉积。马铃薯木虱,Bactericera cockerelli(Sulc)(半翅目:Triozidae)的死亡率随着对阿维菌素喷雾沉积物的超过20%的响应而渐近增加至≈60%,而当lambda-cyhalothrin / thiamethoxamamam时,木虱成虫的死亡率达到了约40%的渐近响应。喷雾沉积超过30%。开发了一种喷雾沉积支持工具(http://pilcc.tamu.edu/),该工具可用于以下方面的决策:1)何时是进行喷涂的最佳时间; 2)根据哪种农药选择喷雾剂预期的喷雾沉积。该分析的主要结论是,应将优化杀虫剂喷雾沉积视为成功实施有害生物综合治理计划的基本支柱,以提高喷雾效率(从而降低生产成本)并降低目标有害生物种群产生抗药性的风险。

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