Insecticide activity of essential oil of Litsea cubeba (Lour.) Pers. and its major component citral against Drosophila suzukii: Histological and ultrastructural assessment

Jiaqi Gao , Lingli Wang , Ziwei Pan , Shengnan Liu , Qing Gu , Dafeng Song
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Abstract

Application of synthetic insecticides is the most frequently used method for controlling pests. However, their indiscriminatory use has led to the development of resistance and high insecticide residues in the environment. Natural products that have low mammalian toxicity with low environmental impact, are viable alternatives to synthetic pesticides. This study aimed to evaluate the contact, fumigant toxicity, and repellent activity of Litsea cubeba essential oil (EO) and its major compound citral against Drosophila suzukii (Matsumura). The morphological alterations in target organs and microscopic damage were observed by scanning electron microscopy (SEM) and light microscopy. Contact exposure to Litsea cubeba EO at 1.0 μL/cm2 resulted in mortality of 91.67% in 24 h. Fumigant toxicity assay showed that larvae mortality reached 100% when Drosophila adults were exposed to 100 μL/L Litsea cubeba EO within 24 h. Litsea cubeba EO was most repellent at 1.0 μL/cm2. The symptoms caused by Litsea cubeba EO and citral on larval epidermis was uneven pigmentation and darkening of body. In the SEM images, treated Drosophila larvae exhibited a dry cuticle surface, sensory distortions, and general degeneration. The intensified cytoplasmic vacuolation and necrosis of the intestinal tract were observed in the photomicrographs with both extracts. This study showed that Litsea cubeba EO can be utilized as a bioinsecticide against Drosophila, making it an environmentally safer option for pest management in fruit and vegetable preservation.

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立枯草精油(Litsea cubeba (Lour.) Pers.)及其主要成分柠檬醛对铃木果蝇的杀虫活性:组织学和超微结构评估
使用合成杀虫剂是控制害虫最常用的方法。然而,滥用合成杀虫剂导致了抗药性的产生和杀虫剂在环境中的高残留。对哺乳动物毒性低、对环境影响小的天然产品是合成杀虫剂的可行替代品。本研究旨在评估立枯草精油及其主要化合物柠檬醛对铃木果蝇(松村)的接触毒性、熏蒸毒性和驱避活性。通过扫描电子显微镜(SEM)和光学显微镜观察了目标器官的形态变化和显微损伤。立枯草环氧乙烷接触浓度为 1.0 μL/cm2 时,24 小时内死亡率为 91.67%;熏蒸剂毒性试验表明,当果蝇成虫接触 100 μL/L 立枯草环氧乙烷 24 小时内,幼虫死亡率达到 100%。立枯草环氧乙烷和柠檬醛对幼虫表皮造成的症状是不均匀的色素沉着和身体变黑。在扫描电子显微镜图像中,处理过的果蝇幼虫表现出角质层表面干燥、感觉器官扭曲和整体退化。在两种提取物的显微照片中,都观察到细胞质空泡化加剧和肠道坏死。这项研究表明,岩白菜素环氧乙烷可作为一种生物杀虫剂来对付果蝇,使其成为果蔬保鲜过程中虫害防治的一种更安全的环保选择。
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