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Laboratory and Greenhouse Evaluation of a Granular Formulation of Beauveria bassiana for Control of Western Flower Thrips Frankliniella occidentalis

机译:球孢白僵菌颗粒制剂防治西花蓟马富兰克氏菌的实验室和温室评价

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摘要

Western flower thrips (WFT) is one of the most important pests of horticultural crops worldwide because it can damage many different crops and transmit various plant viruses. Given these significant impacts on plant production, novel methodologies are required to maximize regulation of WFT to minimize crop losses. One particular approach is to develop control strategies for the non-feeding, soil-dwelling stages of WFT. Control of these stages could be enhanced through the use of granules impregnated with entomopathogenic fungi mixed in the soil. The use of soil-applied fungi contrasts with existing approaches in which entomopathogenic fungi are formulated as oil-based suspensions or water-based wettable powders for foliar applications against the feeding stages of WFT. To examine the efficacy of this approach, we evaluated the effects of a granular formulation of Beauveria bassiana on the soil-dwelling, pupal phases of Frankliniella occidentalis in laboratory bioassays and greenhouse experiments. Based on micromorphological observations of fungal conidia during the infection process after treatment of WFT with a B. bassiana suspension, fungal conidia complete the process of surface attachment, germination, and penetration of the body wall of the WFT pupa and enter the host within 60 h of treatment. Given these results, we undertook a controlled greenhouse experiment and applied B. bassiana granules to soil used to cultivate eggplants. Populations of F. occidentalis on eggplants grown in treated soil were 70% lower than those on plants grown in the untreated soil after 8 weeks. Furthermore, when measuring the survival and growth of B. bassiana on granules under different soil moisture conditions, survival was greatest when the soil moisture content was kept at 20%. These results indicate that the application of B. bassiana-impregnated granules could prove to be an effective biological control strategy for use against F. occidentalis under greenhouse conditions.
机译:西方花蓟马(WFT)是全世界园艺作物最重要的害虫之一,因为它可能损害许多不同的作物并传播各种植物病毒。鉴于这些对植物生产的重大影响,需要采用新颖的方法来最大化WFT的监管,以最大程度地减少农作物的损失。一种特殊的方法是为WFT的非进食,土壤居住阶段制定控制策略。通过使用在土壤中混合了昆虫病原真菌的颗粒可以增强对这些阶段的控制。土壤施用真菌的使用与现有方法形成了对比,在现有方法中,昆虫病原真菌被配制为油基悬浮液或水基可湿性粉剂,用于叶面施用WFT的饲喂阶段。为了检查这种方法的有效性,我们在实验室生物测定和温室实验中评估了球孢白僵菌颗粒制剂对西方富兰克氏菌在土壤中,阶段的影响。根据用球孢杆菌悬浮液处理WFT后真菌分生孢子在感染过程中的微观形态学观察,真菌分生孢子完成WFT pa体壁的表面附着,发芽和渗透过程,并在60小时内进入宿主治疗。鉴于这些结果,我们进行了受控温室试验,并将球孢杆菌颗粒用于种植茄子的土壤。 8周后,在处理过的土壤中生长的茄子上的西洋蓟马种群比在未处理过的土壤中生长的茄子的种群低70%。此外,当测量不同土壤水分条件下球孢杆菌在颗粒上的存活和生长时,当土壤水分含量保持在20%时,存活率最大。这些结果表明,在温室条件下,应用球孢杆菌浸渍的颗粒可被证明是有效的生物防治策略,可用于对抗西洋参。

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