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16种精油的活性成分及其对(鳞翅目:螟蛾科)的熏蒸作用

Active Components of 16 Essential Oils and Their Fumigation Effects on (Lepidoptera: Pyralidae).

作者信息

Su Xiao-Ling, Huang Zhi-Chu, Chen Lin, Chen Dao-Yin, Zhao Dong-Xu, Zeng Zhi-Jiang

机构信息

Honeybee Research Institute, Jiangxi Agricultural University, Nanchang 330045, China.

Jinhua Academy of Agricultural Sciences, Jinhua 321017, China.

出版信息

Insects. 2024 Dec 9;15(12):977. doi: 10.3390/insects15120977.

Abstract

The greater wax moth (GWM, ) is a prevalent pest of the honeybee and a significant risk to both honeybee populations and honeycomb storage. Research on the toxicity of essential oils (EOs) to GWM larvae has provided promising results, although their ovicidal effects and active ingredients require further study. Identifying effective plant compounds is essential for developing insecticides for GWM control. This study assessed the fumigation efficacy of 16 EOs on GWM eggs and fifth instar larvae and determined the effectiveness of these EOs and their primary components for fumigating fifth larvae. Wintergreen, star anise, and clove oils demonstrated significant insecticidal effects on GWM eggs and fifth instar larvae, resulting in a mortality rate exceeding 80% within 48 h. Gas chromatography-mass spectrometry analysis identified methyl salicylate (93.26%), -anethole (87.75%), and eugenol (77.75%) as the primary compounds in wintergreen, star anise, and clove oils, respectively. Further toxicity testing confirmed that these compounds were responsible for the observed insecticidal properties of the EOs. Notably, -anethole exhibited the lowest LC value (25.22 μL/L) against the fifth instar larvae of GWM and significant toxicity against GWM eggs and fifth instar larvae, suggesting its potential as a viable option for the future control of GWM populations.

摘要

大蜡螟(GWM)是蜜蜂的一种常见害虫,对蜜蜂种群和蜂巢储存构成重大风险。尽管精油(EOs)对大蜡螟幼虫的杀卵作用及其活性成分尚需进一步研究,但关于精油对大蜡螟幼虫毒性的研究已取得了有前景的结果。确定有效的植物化合物对于开发用于控制大蜡螟的杀虫剂至关重要。本研究评估了16种精油对大蜡螟卵和五龄幼虫的熏蒸效果,并确定了这些精油及其主要成分对熏蒸五龄幼虫的有效性。冬青油、八角茴香油和丁香油对大蜡螟卵和五龄幼虫显示出显著的杀虫效果,在48小时内死亡率超过80%。气相色谱-质谱分析确定水杨酸甲酯(93.26%)、茴香脑(87.75%)和丁香酚(77.75%)分别为冬青油、八角茴香油和丁香油中的主要化合物。进一步的毒性测试证实,这些化合物是观察到的精油杀虫特性的原因。值得注意的是,茴香脑对大蜡螟五龄幼虫的LC值最低(25.22μL/L),并且对大蜡螟卵和五龄幼虫具有显著毒性,表明其作为未来控制大蜡螟种群的可行选择的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47d5/11677612/cd5b8118ab95/insects-15-00977-g001.jpg

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