Giuliano Gaetano, Campolo Orlando, Forte Giuseppe, Urbaneja Alberto, Pérez-Hedo Meritxell, Latella Ilaria, Palmeri Vincenzo, Giunti Giulia
Department of Agriculture, University of Reggio Calabria, Feo di Vito, 89122 Reggio Calabria, Italy.
Agrigeos s.r.l., Via Giordano Bruno 136, 95131 Catania, Italy.
Insects. 2024 Jun 26;15(7):476. doi: 10.3390/insects15070476.
, commonly known as the Egyptian or African cotton leafworm, is a significant agricultural threat. It is widely distributed in Africa, Mediterranean Europe, and Middle Eastern countries. This polyphagous pest infests numerous crop plants across 44 families, including cotton, soybeans, alfalfa, sweet potato, pepper, eggplant, tomato, maize, lettuce, strawberry, wheat, and hibiscus. The damage caused by on different plant organs, such as young leaves, shoots, stalks, bolls, buds, and fruits, often determines substantial product losses. Current control strategies predominantly rely on synthetic insecticides, which, despite their efficacy, have notable drawbacks, including insecticide resistance, environmental contamination, consumer concerns, and adverse effects on non-target organisms and beneficial insects. In response to these challenges, in this study, we developed and evaluated a garlic EO-based nanoemulsion with a high EO concentration (15%) and low surfactant content to mitigate the possible negative impact on plants and to enhance efficacy against larvae. Laboratory bioassays demonstrated promising larvicidal activity and reduced larval feeding, although some phytotoxicity symptoms were observed. This study underscores the potential of botanical insecticides as sustainable alternatives to synthetic chemicals, emphasizing the importance of balancing efficacy with environmental and ecological considerations in pest management strategies.
,通常被称为埃及棉叶虫或非洲棉叶虫,是一种重大的农业威胁。它广泛分布于非洲、地中海欧洲和中东国家。这种多食性害虫侵害44个科的众多作物,包括棉花、大豆、苜蓿、甘薯、辣椒、茄子、番茄、玉米、生菜、草莓、小麦和木槿。它对不同植物器官,如嫩叶、嫩枝、茎、棉铃、芽和果实造成的损害,常常导致大量的产品损失。目前的防治策略主要依赖合成杀虫剂,尽管它们有效,但有显著的缺点,包括抗药性、环境污染、消费者担忧以及对非靶标生物和有益昆虫的不利影响。为应对这些挑战,在本研究中,我们开发并评估了一种基于大蒜精油的纳米乳液,其精油浓度高(15%)且表面活性剂含量低,以减轻对植物可能的负面影响,并增强对其幼虫的防治效果。实验室生物测定显示出有前景的杀幼虫活性并减少了幼虫取食,尽管观察到了一些植物毒性症状。这项研究强调了植物源杀虫剂作为合成化学物质可持续替代品的潜力,强调了在害虫管理策略中平衡防治效果与环境和生态考虑因素的重要性。