考虑气候变化的影响,露天田中最大限度地发挥内部寄生蜂旋流蝇(Meteorus gyrator, Thunberg)作为生物防治剂的作用

M. Gesraha, A. Ebeid, S. Marei, O. El-Fandary, Atef Abdel-Rahman Aly
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引用次数: 0

摘要

背景:在埃及的田野里,小蠓科的成员,即流星科的成员攻击某些鳞翅目幼虫。通过2年的实验,选取了埃及2个省,从一些鳞翅目幼虫攻击各种寄主植物中饲养的记录种中,记录到的种数最多的是M.rubens(群居)和M.gyrator(独居)。本研究的目的是通过释放大量的寄生蜂成虫,以提高寄生蜂在田间的寄生效率。方法:连续2年(2020 - 2021年)在El-Ghaebia省和El-Sharkia省田间主要植物中采集鳞翅目幼虫。常见的植物有:三叶草、卷心菜、秋葵、番茄、玉米、犹太锦葵、豆类、大豆、棉花、豌豆和生菜。收集到的幼虫在最佳条件下饲养,直到它们化蛹或在成熟的类内寄生蜂幼虫迁移进行化蛹之前饲养。寄生蜂的生产:在NRC实验室饲养了一些鳞翅目幼虫,用于大规模生产寄生蜂回旋流星。结果:获得的结果表明,在2 - 5月的孳生期,黑穗病螨的夜间寄主幼虫主要为黑穗病螨。至于回肠螺,记录的数量较少(在它的繁盛时期,5月至8月);它是由其他鳞翅目幼虫养大的。2个试验年在El-Gharbia省,rubens的寄生率分别达到26.50%和21.79%;而在第二个实验年,旋流田鼠的比例为2.25%。2个试验年,沙尔克亚蠹蛾的寄生率分别为18.60%和28.60%;而M. gyrator仅在第一年为10.00%。结论:为提高其作为一种生物防治剂的生产力,在任何地区都必须增加其成虫数量。
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Maximizing the Role of the Internal Larval Parasitoid, Meteorus gyrator (Thunberg) in the Open Field as a Biological Control Agent Considering the Effects of Climatic Changes
Background: Members of Braconidae, i.e., Meteorus spp. assault certain lepidopterous larvae in Egyptian fields. The recorded species M.rubens (gregarious) and M.gyrator (solitary) were the most species reared from some lepidopterous larvae attacking various host plants in two chosen Governorates in Egypt through two experimental years. This work aims to increase the parasitizing efficiency of M.gyrator in fields by releasing an impressive number of parasitoid adults. Methods: Samples of lepidopteran larvae were picked up from the prevailing plants in fields of El-Ghaebia and El-Sharkia Governorates, for two successive years (2020 to 2021). The prevailing plants are: clover, cabbage, okra, tomato, maize, jew's mallow, bean, soybean, cotton, pea, and lettuce. Collected larvae were reared under optimal conditions until their pupation or in anticipation of the migration of the full-grown endoparasitoid's larvae for pupation. Parasitoid’s production: Species of some lepidopterous larvae were reared in the NRC laboratory for large-scale manufacturing of the parasitoid Meteorus gyrator. Results: Acquired results uncover that Agrotis ipsilon was the primary noctuid host larvae of M. rubens during its abundant periods (February-May). While in case of M.gyrator it was recorded in fewer numbers (at its abundant periods, May-August); which was raised from other lepidopteran larvae. The M. rubens parasitism percentage reached 26.50 and 21.79% at El-Gharbia Governorate through the two experimental years, respectively; whereas in the case of M. gyrator it was 2.25% in the 2nd experimental year only. In El-Sharkia, M. rubens parasitism percentage was 18.60 and 28.60%, respectively throughout the two experimental years; while it was 10.00% for M. gyrator in the first year only. Conclusion: To boost the productivity of this solitary internal parasitoid as a bio-control agent, it is mandatory to increase its adults population in any field.
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