Araújo Sean, Seibert Janaína, Ruani Ana, Alcántara-de la Cruz Ricardo, Cruz Artur, Pereira Alana, Zandonai Doraí, Forim Moacir, Silva Maria Fátima, Bueno Odair, Fernandes João
Chemistry Department, Sao Carlos Federal University, UFSCar, São Carlos 13565-905, Brazil.
Centro de Ciências da Natureza, Campus Lagoa do Sino, Sao Carlos Federal University, Buri 18290-000, Brazil.
Insects. 2022 Apr 6;13(4):359. doi: 10.3390/insects13040359.
and are the main genera of leaf-cutting ants present in North and South America, causing extensive damage to agroforestry. Control of the ants requires high handling costs with few effective methods available to decrease the losses. The symbiosis between the leaf-cutting ants and the fungus is essential for ant nest survival. Therefore, may be a key target in controlling leaf-cutting ants, since its reduction may cause an imbalance in the symbiosis necessary to maintain the nest. Among the options for natural fungal control, plant species are considered important sources of compounds belonging to several classes of natural products that show potential as antifungal agents. This review also presents studies that establish that the antagonist fungi from the and genera effectively reduce the development of . The development of nanostructured delivery systems, which have shown advantages over conventional formulations, is suggested for ant control; no commercial nanotechnology-based product has yet been developed, and this appears to be a new approach for future studies.
和是在北美洲和南美洲出现的切叶蚁的主要属,对农林业造成广泛破坏。控制这些蚂蚁需要高昂的处理成本,且可用的有效方法很少,难以减少损失。切叶蚁与真菌之间的共生关系对蚁巢的生存至关重要。因此,真菌可能是控制切叶蚁的关键目标,因为其数量减少可能会导致维持蚁巢所需的共生关系失衡。在天然真菌控制的选项中,植物物种被认为是几类天然产物化合物的重要来源,这些化合物显示出作为抗真菌剂的潜力。本综述还介绍了一些研究,这些研究表明来自属和属的拮抗真菌能有效抑制真菌的生长。有人建议开发纳米结构递送系统用于控制蚂蚁,该系统已显示出优于传统制剂的优势;目前尚未开发出基于纳米技术的商业产品,但这似乎是未来研究的一种新方法。