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Management and eradication options for Queensland fruit fly

机译:昆士兰果蝇的管理与根除选项

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Several tephritid fruit flies have explosive population growth and a wide host range, resulting in some of the largest impacts on horticultural crops, reducing marketable produce, and limiting market access. For these pests, early detection and eradication are routinely implemented in vulnerable areas. However, social and consumer concerns can limit the types of population management tools available for fruit fly incursion responses. Deterministic population models were used to compare eradication tools used at typical densities alone and in combination against the Queensland fruit fly ('Qfly'), Bactrocera tryoni. The models suggested that tools that prevent egg laying are likely to be most effective at reducing populations. Tools that induced mortality once Qfly was sexually mature only slowed population growth, as successful mating still occurred. Release of sterile Qfly when using the sterile insect technique (SIT) interferes with the successful mating of wild flies, and of the tools investigated here, SIT caused the greatest reduction in the population at the prescribed release rate. Used in tandem with SIT, protein baits slightly improved the rate of population reduction, but the male annihilation technique (MAT) almost nullified control by SIT due to the mortality induced on sterile flies. The model suggested that the most rapid decrease in population size would be achieved by SIT plus protein baits. However, the model predicted both the SIT and protein baits when used alone would result in population reduction. The MAT can be used prior to SIT release to increase overflooding ratios.
机译:几种实蝇的种群呈爆炸式增长,宿主范围广泛,对园艺作物造成了一些最大的影响,减少了可销售的产品,限制了市场准入。对于这些害虫,在易受伤害的地区通常会进行早期检测和根除。然而,社会和消费者的担忧可能会限制果蝇入侵反应可用的种群管理工具的类型。确定性种群模型用于比较在典型密度下单独使用和组合使用的根除工具与昆士兰果蝇(“Qfly”)Bactrocera tryoni。这些模型表明,防止产卵的工具在减少种群数量方面可能最有效。一旦Qfly性成熟,诱导死亡的工具只会减缓种群增长,因为成功的交配仍在发生。当使用无菌昆虫技术(SIT)时,无菌Qfly的释放会干扰野生苍蝇的成功交配,在本文研究的工具中,在规定的释放率下,SIT导致种群的最大减少。蛋白质诱饵与SIT配合使用,略微提高了种群减少的速度,但由于不育苍蝇的死亡率,雄性湮灭技术(MAT)几乎使SIT的控制无效。该模型表明,SIT+蛋白质诱饵可以实现种群规模的最快速减少。然而,该模型预测,单独使用SIT和蛋白质诱饵会导致种群减少。可以在释放坐垫之前使用坐垫,以增加溢流率。

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