Department of Plant Protection, Faculty of Agricultural Sciences, University of Guilan, Rasht, Iran.
Tea Research Center, Horticulture Science Research Institute, Agricultural Research Education and Extension Organization (AREEO), Lahijan, Iran.
Arch Insect Biochem Physiol. 2022 Dec;111(4):e21962. doi: 10.1002/arch.21962. Epub 2022 Aug 23.
Saponins cause mortality in insects by reducing food absorption and movement in the gut, which may be used to exploit the control of insect pests. In the current study, tea seed saponin (TSS) was extracted and then added to the artificial diets of Helicoverpa armigera. Pre-ovipositional period of the TSS-treated individuals increased while longevity and fecundity decreased compared to control. There was a significant reduction of the treated individuals in the life table parameters of TSS-treated Individuals including net reproduction rate (R ), intrinsic rate of population increase (r), finite rate of increase (λ), and gross reproduction rate (GRR). Also, we found that saponin suppressed the immune system by reducing the total hemocyte count, immune-related gene expression, and phenoloxidase activity. Our results demonstrated a lower expression of cecropin gene in the treated larvae with TSS while no significant differences were observed in attacin gene. Our results clearly showed that feeding of H. armigera larvae in the diet containing TSS significantly reduced demographic parameters, forced insects to obtain more time to complete one generation, and caused vulnerabilities against pathogens. These discrepancies alleviated nutrient uptake of the larvae and disrupted their feeding and growth. Hence, a proper formulation with a desirable concentration would be prepared and applied in the fields suffering H. armigera damage to monitor insecticidal efficiency of TSS.
皂素通过减少昆虫肠道内的食物吸收和运动导致昆虫死亡,可用于开发害虫防治。在本研究中,从油茶籽中提取了茶皂素(TSS),并将其添加到棉铃虫的人工饲料中。与对照相比,TSS 处理个体的预产卵期增加,而寿命和繁殖力下降。TSS 处理个体的生命表参数包括净生殖率(R)、内禀增长率(r)、有限增长率(λ)和总生殖率(GRR)均显著降低。此外,我们发现皂素通过降低总血细胞计数、免疫相关基因表达和酚氧化酶活性来抑制免疫系统。我们的结果表明,用 TSS 处理的幼虫中 Cecropin 基因的表达降低,而 Attacin 基因则没有明显差异。我们的结果清楚地表明,在含有 TSS 的饮食中喂养棉铃虫幼虫会显著降低人口统计参数,迫使昆虫获得更多时间来完成一代,并使它们易受病原体侵害。这些差异减轻了幼虫对营养物质的吸收,并破坏了它们的进食和生长。因此,将制备并应用含有理想浓度的合适配方来监测遭受棉铃虫危害的田地中 TSS 的杀虫效率。