Integrated Potential of Microbial, Botanical, and Chemical Pesticides for the Control of Viral Disease Vector Whiteflies (Hemiptera: Aleyrodidae) on Tomato under Greenhouse and Field Perspectives

IF 1.5 Q2 AGRONOMY International Journal of Agronomy Pub Date : 2022-09-30 DOI:10.1155/2022/4686811
Amha Gebremariam, Eyerus Mekuriaw, Fekadu Shemekit, F. Assefa
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Abstract

Whiteflies are one of the most devastating horticultural pests attacking tomatoes. Although there are several control methods for the control of whitefly pests, the integrated application of entomopathogenic fungi (IPM) with chemical and botanical insecticides has proven more effective than individual control agents. This study was carried out to evaluate individual and combined treatments of entomopathogens B. bassiana, M. anisopliae, B. thuringiensis, Hunter 40 EC, and neem oil for the control of whitefly species on tomato (Solanum lycopersicum) under greenhouse and field condition. The greenhouse study showed that the different treatments resulted in a 58.48 to 100% reduction of nymphs and a 52.06 to 100% reduction of adults on both Galilea and Melkashola tomato varieties under greenhouse conditions. The combined treatments of AAUMB-29 + Neem oil displayed a higher yield (423.3 g fruits/plant) on the Gelilea tomato variety, and AAUDM-43 + Hunter 40 EC displayed a yield of (376.66 g/plant) on the Melkashola tomato variety. Under field conditions, the application of AAUMB-29 + Hunter 40 EC + Neem oil significantly decreased the whitefly population by 91.93% ( P < 0.001 ) after 10 days of the fourth spray. The result of fruit yield of tomato was significantly higher in all treatments (31.17 t to 70.42 t·ha−1) compared to untreated control (25.83 t·ha−1). Among the treatments, AAUMB-29 + Hunter 40 EC + Neem oil gave the highest fruit yield of 70.42 t·ha−1 followed by AAUMB-29 + Hunter 40 EC (64.50 t·ha−1) on the Galilea tomato variety under field conditions. The combined treatment of AAUMB-29 + Hunter 40 EC + Neem oil was the most effective with lower whitefly infestation, higher marketable yields, and less percentage of yield losses. Further investigations are required to determine the optimization and practicability of this integrated application of treatments for the control of both sucking and chewing insect pests under field conditions.
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从温室和田间角度看微生物、植物和化学农药对番茄病毒病媒白蝇(半翅目:Aleyrodidae)的综合防治潜力
白蝇是危害番茄的最具破坏性的园艺害虫之一。尽管有几种控制粉虱害虫的方法,但事实证明,昆虫病原真菌(IPM)与化学和植物杀虫剂的综合应用比单独的控制剂更有效。本研究旨在评价在温室和田间条件下,昆虫病原体B.bassiana、M.anisopliae、B.thuringiensis、Hunter 40 EC和印楝油单独和联合处理对番茄(Solanum lycopersicum)粉虱物种的防治效果。温室研究表明,在温室条件下,不同处理导致Galilea和Melkashola番茄品种若虫减少58.48%至100%,成虫减少52.06至100%。AAUMB-29的联合处理 + 印楝油显示出更高的产量(423.3 g水果/植物)和AAUDM-43 + Hunter 40 EC的产量为(376.66 g/株)。在现场条件下,AAUMB-29的应用 + Hunter 40 EC + 第四次喷洒10天后,印楝油使粉虱种群数量显著减少91.93%(P<0.001)。番茄的果实产量在所有处理中都显著较高(31.17 t至70.42 t·ha−1)与未经处理的对照组(25.83 t·ha−1)。在治疗中,AAUMB-29 + Hunter 40 EC + 印楝油产量最高,为70.42 t·ha−1,然后是AAUMB-29 + Hunter 40 EC(64.50 t·ha−1)。AAUMB-29的联合治疗 + Hunter 40 EC + 印楝油是最有效的,具有较低的粉虱侵扰、较高的市场产量和较小的产量损失百分比。需要进一步的研究来确定这种综合应用处理方法在田间条件下控制吸血害虫和咀嚼害虫的最佳性和实用性。
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来源期刊
CiteScore
3.60
自引率
5.30%
发文量
66
审稿时长
16 weeks
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