有机磷杀虫剂、毒死蜱和真菌生物农药球孢白僵菌对埃及甜菜蛾(鳞翅目:姬蛾科)的田间评价及对相关节肢动物捕食者种群规模的影响

Y. Fergani, Yasmin El Sayed, E. Refaei
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引用次数: 3

摘要

甜菜生产普遍受到甜菜蛾的威胁,造成巨大的产量损失。本研究旨在评估传统杀虫剂(毒死蜱)和真菌生物农药(Biossiana®)在连续两个生长季节(2020-2021年)对甜菜蛾的有效性,并调查其在Kafr El-Sheikh省相关节肢动物捕食者中的安全性。使用了埃及农业部推荐的剂量进行测试的杀虫剂。结果表明,两季调查结果表明,毒死蜱对牛眼绦虫种群大小及相关节肢动物捕食者的抑制率均较高,而以虫源性basssiana (Biossiana®)为基础的生物农药产品对牛眼绦虫的抑制率最高,两季均达92.9%。与未处理区相比,Tac®在处理后和处理后3 d的有效率分别为77.03和83.05%。结果表明,与未经处理的地区相比,测试的Biossiana®降低了与害虫相关的节肢动物捕食者的减少百分比,以及节肢动物捕食者补偿其影响的能力。因此,我们认为埃及农民可以有效地利用Tac®和Biossiana®作为害虫综合治理的一部分。项目。Biossiana®可能是一个很好的替代方案,可以用于IPM控制程序,而不会对相关的节肢动物捕食者造成相当大的危害。
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Field Evaluation of Organophosphorus Insecticides, Chlorpyrifos and Fungal Bio-Pesticides, Beauveria bassiana Towards the Sugar Beet Moth Scrobipalpa ocellatella (Lepidoptera: Gelechiidae) and Studying their Effect on the Population Size of the Associated Arthropod Predators in the Egyptian Sugar Be
The sugar beet productions are generally threatened by the sugar beet moth Scrobipalpa ocellatella causing enormous yield loss. The current study was done to evaluate the effectiveness of one of the traditional insecticides (Chlorpyrifos) and the fungal-based bio-pesticides (Biossiana®) against the sugar beet moth during the two successive growing seasons (2020-2021) and to investigate their safety in the associated arthropod predators in Kafr El-Sheikh Governorate. The dose recommended by the Egyptian agricultural ministry was used to apply the tested pesticides. Results showed that the tested Chlorpyrifos induced a high reduction percentage in the size population of S. ocellatella as well as for the arthropod predators associated with the pest through the two seasons of investigation while the tested bio pesticides product based on entomopathogenic B. basssiana (Biossiana®) Caused maximum reduction percentage for S. ocellatella that reaches 92.9 % in both seasons. When compared to untreated areas, Tac® was effective against the S. ocellatella larvae population after the initial treatment and three days later, causing 77.03 and 83.05% respectively. The obtained results showed that the tested Biossiana® lower reduction percentage for the arthropod predators associated with the pest compared to the untreated area in addition to the ability of the arthropod predators to compensate for their effect. Therefore, it is considered that farmers in Egypt can effectively utilize Tac® and Biossiana® as a part of integrated pest management. Programs. Biossiana® might be an excellent alternative that could be used in IPM control programs with no considerable hazards to associated arthropod predators.
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