Ghazy Noureldin Abuelfadl, Okamura Mayo, Sai Kanae, Yamakawa Sota, Hamdi Faten Abdelsalam, Grbic Vojislava, Suzuki Takeshi
Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology, Koganei, Japan.
Agriculture Zoology Department, Faculty of Agriculture, Mansoura University, El-Mansoura, Egypt.
Front Plant Sci. 2020 Aug 11;11:1218. doi: 10.3389/fpls.2020.01218. eCollection 2020.
Spider mites (Acari: Tetranychidae) are pests of a wide range of agricultural crops, vegetables, and ornamental plants. Their ability to rapidly develop resistance to synthetic pesticides has prompted the development of new strategies for their control. Evaluation of synthetic pesticides and bio-pesticides-and more recently the identification of RNA interference (RNAi) target genes-requires an ability to deliver test compounds efficiently. Here we describe a novel method that uses a sheet-like structure mimicking plant leaves and allows for oral delivery of liquid test compounds to a large number of individuals in a limited area simultaneously (~100 mites cm). The main component is a fine nylon mesh sheet that holds the liquid within each pore, much like a plant cell, and consequently allows for greater distribution of specific surface area even in small amounts (10 µl cm for 100-µm mesh opening size). The nylon mesh sheet is placed on a solid plane (, the undersurface of a Petri dish), a solution or suspension of test compounds is pipetted into the mesh sheet, and finally a piece of paraffin wax film is gently stretched above the mesh so that the test mites can feed through it. We demonstrate the use of the method for oral delivery of a tracer dye (Brilliant Blue FCF), pesticides (abamectin and bifenazate), dsRNA targeting the gene, or fluorescent nanoparticles to three species of spider mites (Acari: Tetranychidae) and to the cotton aphid, Glover (Hemiptera: Aphididae). The method is fast, easy, and highly reproducible and can be adapted to facilitate several aspects of bioassays.
叶螨(蜱螨亚纲:叶螨科)是多种农作物、蔬菜和观赏植物的害虫。它们对合成农药迅速产生抗性的能力促使人们开发新的防治策略。评估合成农药和生物农药,以及最近鉴定RNA干扰(RNAi)靶基因,都需要高效递送测试化合物的能力。在此,我们描述了一种新方法,该方法使用模仿植物叶子的片状结构,能够在有限区域内同时将液体测试化合物经口递送至大量个体(约100只螨/平方厘米)。其主要成分是精细的尼龙网片,它能将液体保持在每个孔隙内,很像植物细胞,因此即使少量液体(对于100微米的网孔开口尺寸为10微升/平方厘米)也能实现更大的比表面积分布。将尼龙网片放置在固体平面上(如培养皿的底面),用移液管将测试化合物的溶液或悬浮液加入网片中,最后在网片上方轻轻拉伸一块石蜡膜,以便测试螨能够通过它进食。我们展示了该方法用于向三种叶螨(蜱螨亚纲:叶螨科)和棉蚜Aphis gossypii Glover(半翅目:蚜科)经口递送示踪染料(亮蓝FCF)、农药(阿维菌素和联苯肼酯)、靶向该基因的dsRNA或荧光纳米颗粒。该方法快速、简便且高度可重复,可用于促进生物测定的多个方面。