Gerken Alison R, Scott Rose L, Khosla Sonika, Markley Alexus, Mueller Codi, Scheff Deanna S
USDA ARS, Center for Grain and Animal Health Research, Manhattan, KS, USA.
J Insect Sci. 2025 Mar 14;25(2). doi: 10.1093/jisesa/ieaf021.
Insects that infest postharvest commodities cause significant damage or destruction, costing billions of dollars in lost products yearly. Insecticide treatments applied as contact insecticides are effective in managing insect populations. However, recovery of the insects after exposure to these insecticides is increased if food is present, reducing the efficacy of surface treatments and leading to continued infestations. In addition, variation in temperature and humidity could play a significant role in recovery. Here, we assess the role of food, temperature, and humidity on the recovery of Tribolium castaneum Herbst, red flour beetle, after exposure to a contact insecticide. We found food is an important factor in recovery under different temperature and humidity conditions. While recovery was higher at warmer temperatures and higher humidities, recovery increased further when food was present versus absent. Moreover, we found that any amount of flour, even a dusting, resulted in over 90% of beetles recovering after insecticide exposure, but when sand was substituted for flour, recovery was 25% lower compared to a no food treatment. These results highlight the importance of how environmental factors and the availability of food influence efficacy of insecticide treatments. Sanitation in food facilities is critically important as even the smallest amount of food present can cause substantial recovery, allowing beetles to escape treated areas and move throughout facilities. Further work pinpointing variation in underlying recovery between different populations and among different insect species is needed to understand local adaptation potential.
侵染收获后农产品的昆虫会造成重大损害或破坏,每年因产品损失造成的成本高达数十亿美元。作为接触性杀虫剂使用的杀虫剂处理在控制昆虫数量方面是有效的。然而,如果有食物存在,昆虫接触这些杀虫剂后的恢复能力会增强,这会降低表面处理的效果并导致持续的侵染。此外,温度和湿度的变化可能在恢复过程中起重要作用。在这里,我们评估了食物、温度和湿度对赤拟谷盗(Tribolium castaneum Herbst)接触杀虫剂后恢复的作用。我们发现,在不同的温度和湿度条件下,食物是恢复的一个重要因素。虽然在较高温度和较高湿度下恢复率更高,但有食物时的恢复率比没有食物时进一步提高。此外,我们发现,任何数量的面粉,即使只是薄薄一层,都会使超过90%的甲虫在接触杀虫剂后恢复,但用沙子代替面粉时,与无食物处理相比,恢复率低25%。这些结果凸显了环境因素和食物可获得性如何影响杀虫剂处理效果的重要性。食品设施中的卫生至关重要,因为即使存在最少量的食物也会导致大量恢复,使甲虫能够逃离处理区域并在整个设施中移动。需要进一步开展工作,确定不同种群和不同昆虫物种之间潜在恢复能力的差异,以了解局部适应潜力。