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在实验室条件下,用甲氨基阿维菌素苯甲酸盐对甜菜夜蛾种群进行致死和亚致死接触的影响。

The impact of lethal and sub-lethal exposure of emamectin benzoate on populations of Spodoptera litura (Lepidoptera: Noctuidae) under laboratory conditions.

机构信息

Department of Zoology, Guru Nanak Dev University, Amritsar, 143005, Punjab, India.

Department of Microbiology, Guru Nanak Dev University, Amritsar, 143005, Punjab, India.

出版信息

Toxicon. 2024 Nov 6;250:108121. doi: 10.1016/j.toxicon.2024.108121. Epub 2024 Oct 9.

Abstract

Emamectin benzoate is an avermectin bio-insecticide commonly used for managing several insect pests including Spodoptera litura (Fabricius) (Lepidoptera: Noctuidae), a major polyphagous pest of many cultivated crops. The current study was conducted to evaluate the effects of emamectin benzoate on the fitness of S. litura populations exhibiting differential susceptibility to insecticide. The selection process and all the bioassays were carried out using 6-day-old 2nd instar larvae of S. litura. A field-collected population of S. litura was divided into two groups: one selected with emamectin benzoate for eight generations (EB-Sel) and the other kept unexposed (Unsel-Lab) to insecticide in the laboratory. An increase in resistance ratio from 1.71-fold in the F generation to 22.54-fold in the F generation of the EB-Sel population was observed compared to the Unsel-Lab (F) population. The EB-Sel and Unsel-Lab populations were treated with their respective lethal and sub-lethal concentrations which resulted in an extended development period, decreased larval survival, and adult emergence along with increased morphological abnormalities in adults. Significant reductions were observed in both male and female longevity, fecundity, egg hatching, net reproductive rate (R), intrinsic rate of increase (r), and finite rate of increase (λ) in EB-Sel and Unsel-Lab populations. Higher concentrations of the insecticide also reduced the relative fitness (R) of S. litura larvae, with maximum effect at LC of the EB-Sel population where the R value was 0.32 compared to the Unsel-Lab population. Both populations have been affected by emamectin benzoate exposure, however, the impact was more pronounced in the EB-Sel population indicating fitness costs. Our results suggested the fitness cost linked to emamectin benzoate resistance in S. litura which might favor managing insecticide resistance by reducing the frequency of resistant alleles by removing selection pressure. Consequently, our research provides significant insights to devise better pest management strategies for S. litura.

摘要

苯甲维盐是一种阿维菌素类生物杀虫剂,常用于防治小菜蛾(鳞翅目:夜蛾科)等多种农业害虫。小菜蛾是多种农作物的重要多食性害虫。本研究旨在评估苯甲维盐对具有不同杀虫剂敏感性的小菜蛾种群适合度的影响。选择过程和所有生物测定均使用 6 日龄 2 龄小菜蛾幼虫进行。从田间采集的小菜蛾种群分为两组:一组用苯甲维盐选择 8 代(EB-Sel),另一组在实验室中未接触杀虫剂(Unsel-Lab)。与 Unsel-Lab(F)种群相比,EB-Sel 种群的抗性比从 F 代的 1.71 倍增加到 F 代的 22.54 倍。用各自的致死和亚致死浓度处理 EB-Sel 和 Unsel-Lab 种群,导致发育周期延长、幼虫存活率降低、成虫出现以及成虫形态异常增加。EB-Sel 和 Unsel-Lab 种群的雌雄成虫寿命、产卵量、孵化率、净生殖率(R)、内禀增长率(r)和有限增长率(λ)均显著降低。较高浓度的杀虫剂还降低了小菜蛾幼虫的相对适合度(R),在 EB-Sel 种群的 LC 下,R 值为 0.32,与 Unsel-Lab 种群相比,效果最大。这两个种群都受到了苯甲维盐的影响,然而,EB-Sel 种群受到的影响更为明显,表明存在适合度代价。我们的研究结果表明,苯甲维盐抗性与小菜蛾适合度之间存在关联,通过减少抗性等位基因的频率来降低选择压力,从而有利于管理杀虫剂抗性。因此,我们的研究为制定更好的小菜蛾管理策略提供了重要的见解。

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