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Adjusting the Phenology Model of Codling Moth (Lepidoptera: Tortricidae) in Washington State Apple Orchards

机译:调整华盛顿州苹果园苹果Mo蛾(鳞翅目:Tor科)的物候模型

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Studies were conducted with codling moth, Cydia pomonella L., to fit cumulative curves for the occurrence of injured fruits and male moth catches in sex pheromone-baited traps as a function of accumulated degree-days after the start of moth flight. Twelve data sets were collected from seven apple, Malus domestica Bordhausen, orchards in Washington State from 2003 to 2006. Cumulative data were grouped across years for orchards either treated with sex pheromone dispensers or untreated and fit to logistic equations for both the first and second generation. No significant differences were found for the cumulative curves of moth flight or egg hatch between pheromone-treated and untreated orchards; thus, these data were combined. These new logistic models for moth flight and egg hatch were compared with a widely used distributed-delay model originally developed in Michigan. The cumulative flight curves for the logistic and distributed-delay models were statistically different (slopes) for the first but not the second generation. Cumulative egg hatch in the logistic model was significantly different from the distributed-delay model (intercepts and slopes) for both generations. Most strikingly, the timing of 50% egg hatch during the first generation was delayed 100 DD in the logistic model. The potential impact of this change in the characterization of codling moth's phenology on the effectiveness of insecticide programs targeting eggs and newly eclosed larvae was examined. Possible explanations for this significant difference between the models are discussed.
机译:对co蛾(Cydia pomonella L.)进行了研究,以拟合累积曲线,以计算在性信息素诱饵诱捕器中受伤果实和雄蛾捕获物的发生与蛾飞行开始后的累积天数之间的关系。从2003年到2006年,从华盛顿州的七个苹果园,苹果园,果园中收集了十二个数据集。对经过性信息素分配器处理或未经处理的果园的多年累积数据进行了分组,并拟合了第一代和第二代的逻辑方程。 。用信息素处理过的果园和未处理过的果园之间的飞蛾或卵孵化的累积曲线没有显着差异;因此,这些数据被合并。将这些用于飞蛾和卵孵化的新逻辑模型与最初在密歇根州开发的广泛使用的分布式延迟模型进行了比较。第一代但第二代的逻辑和分布延迟模型的累积飞行曲线在统计上不同(斜率)。 Logistic模型中的累积卵孵化与两代的分布式延迟模型(截距和坡度)都存在显着差异。最惊人的是,在逻辑模型中,第一代蛋孵化50%的时间延迟了100 DD。研究了这种变化对苹果蛾的物候特性的影响,该变化对以卵和新近灭绝的幼虫为目标的杀虫剂计划的有效性。讨论了模型之间这种显着差异的可能解释。

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