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Development of an automatic monitoring trap for Mediterranean fruit fly (Ceratitis capitata) to optimize control applications frequency

机译:开发地中海果蝇(Ceratitis Capitata)的自动监测陷阱,优化控制应用频率

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Continuous monitoring of population fluctuations is important to improve the control of economic pests. The Mediterranean fruit fly [medfly; Ceratitis capitcita (Wiedemann)] is a major economic pest of fruit crops worldwide, particularly in the Middle East. The current medfly weekly monitoring method, manual counting, results in a suboptimal spraying frequency in citrus orchards. This paper describes the development of an automatic trap for sequential medfly remote monitoring. To our knowledge, it is the first automatic trap developed for medfly monitoring. A new cylinder-shaped trap was designed, and optical sensors specifically created for detecting and counting dead or stunted Medflies were embedded in it. Field tests were conducted to estimate the trapping efficiency, accuracy and over-counting of the medfly Automatic Traps (medfly-ATs). medfly-ATs and Steiner traps were placed in commercial citrus orchards over five different periods between the years 2013 and 2015. The medfly-AT and conventional Steiner trap were found to have similar trapping efficiencies under field conditions. The accuracy of the medfly-AT counts ranged between 88% and 100%; the absolute over-counting in all experimental sites and periods was three flies. Over-counting was mostly due to ants and rain. The paper discusses the importance of field tests in evaluating the performance of automatic traps. Results of an informal experiment conducted in a commercial orchard showed that daily monitoring using the medfly-AT device holds promise for reducing insecticide applications, but extensive in-field experiments should be conducted to prove it. (C) 2017 Elsevier B.V. All rights reserved.
机译:持续监测人口波动对于改善经济害虫的控制是重要的。地中海果蝇[麦茸; Centitcita(Wiedemann)]是全球水果作物的主要经济害虫,特别是在中东。目前的Medfly每周监测方法,手动计数,导致柑橘果园中的次优喷涂频率。本文介绍了用于顺序MEDFLY远程监控的自动陷阱的开发。据我们所知,它是第一个为Medfly监控开发的自动陷阱。设计了一种新的圆柱形陷阱,并嵌入其中专门为检测和计数死亡或干扰的杂交而产生的光学传感器。进行现场测试以估算MEDFLY自动陷阱(MEDFLY-ATS)的诱捕效率,准确性和过度计数。 Medfly-ATS和Steiner Traps被置于2013年和2015年之间的五个不同时期的商业柑橘果园。发现Medfly-AT和常规的Steiner陷阱在现场条件下具有类似的诱捕效率。 MEDFLY-AT计数的准确性范围在88%和100%之间;所有实验遗址和时期的绝对倒计时是三蝇。过度计数主要是由于蚂蚁和雨水。本文讨论了现场测试在评估自动陷阱性能方面的重要性。商用果园中进行的非正式实验结果表明,使用MEDFLY-AT装置的日常监测能够降低杀虫剂应用,但应进行广泛的现场实验以证明它。 (c)2017 Elsevier B.v.保留所有权利。

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