Efficacy of Some Integrated Pest Management (IPM) Techniques against Okra Shoot and Fruit Borer (Earias vittella Fab.)

Md. Shahidul Islam Khan, M. Hossain, Ruhul Amin, Sharmin Akter
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Abstract

The experiment was laid out at the central field of Sher-e-Bangla Agricultural University, Dhaka-1207, Bangladesh during February 2022 to June 2022 to determine the efficacy of some integrated pest management tools against okra shoot and fruit borer (Earias vittella Fab.) in okra. The study comprised of seven treatments, viz. T1= Barrier crop (maize), T2= T-Bird perches 2m long@ 3/plot at distinct distances, T3= Pheromone trap@ 15/ha with lures, T4= Hand picking of larvae at regular basis, T5= Bacillus thuringiesis through two applications of Bt toxin on vegetative and flowering stage@ 1g/liter of water, T6= Proclaim 5 SG (Emamectin Benzoate) @ 1g/liter of water and NLE (neem leaf extract) @ 3g/liter of water, T7= untreated control. All the sprayings were done at 7 days interval. The experiment was laid out in Randomized Complete Block Design (RCBD) with three replications. All the treatments were applied in okra at different developmental stages against shoot and fruit borer. Among the treatments, T6 gave maximum number of shoots (15.07) with less infested shoots (1.95) and infestation percentage was minimum (12.93). At the same time, the highest shoot infestation percentage (63.40) was also recorded from T7 treatment. The minimum fruit infestation (8.77) was also obtained from T6 treatment with minimum fruit infestation percentage (24.89), whereas; again, T7 illustrated maximum infestation percentage (44.36) of fruit. The treatment T6 yielded maximum (14.78 t/ha) okra that is very close to T5 (13.72 t/ha) and T4 (13.50 t/ha). So, the treatment T6 showed the best performance compared to rest other treatments. But considering the environmental and human health issues, farmers can use the T5 and T4 as they don’t involve any risk factor compared to chemical pesticides as well as their yield is approximately same as to T6 treatment.
几种有害生物综合防治技术对秋葵枝螟和果螟的防治效果
该试验于2022年2月至2022年6月在孟加拉国达卡的Sher-e-Bangla农业大学的中心农田进行,以确定一些综合虫害管理工具对秋葵枝和果螟的防治效果。研究包括7个处理,即T1=屏障作物(玉米),T2= T-Bird栖木2米长@ 3个/块不同距离,T3=信息素诱捕器@ 15个/公顷,T4=定期手动采摘幼虫,T5=在营养和开花阶段两次施用Bt毒素苏云金芽孢杆菌@ 1g/升水,T6=宣布5 SG (Emamectin Benzoate) @ 1g/升水和NLE (neem叶提取物)@ 3g/升水,T7=未经处理的对照。每隔7天喷淋一次。试验采用随机完全区组设计(RCBD), 3个重复。在秋葵不同发育期施用不同的处理,防治茎蛀虫和果蛀虫。其中,T6处理芽数最多(15.07),侵染芽数最少(1.95),侵染率最低(12.93)。同时,T7处理的茎部侵染率最高,为63.40%。T6处理的果实侵染率最低(24.89),侵染率最低(8.77);T7的侵染率最高,为44.36%。T6处理秋葵产量最高(14.78 t/ha),与T5处理(13.72 t/ha)和T4处理(13.50 t/ha)非常接近。因此,与其他治疗相比,治疗T6表现出最好的表现。但考虑到环境和人类健康问题,农民可以使用T5和T4,因为它们与化学农药相比没有任何风险因素,而且它们的产量与T6处理大致相同。
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