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低浓度硒纳米颗粒增强了一种广食性寄生蜂及其宿主的性能,对宿主抑制没有净效应。

Low concentrations of selenium nanoparticles enhance the performance of a generalist parasitoid and its host, with no net effect on host suppression.

机构信息

Laboratory of Insect Natural Enemies, Institute of Biological Control, Faculty of Agriculture, Kyushu University, Fukuoka, Japan.

Department of Horticulture and Crop Production, School of Agriculture and Technology, Dormaa-Ahenkro Campus, University of Energy and Natural Resources, Sunyani, Ghana.

出版信息

Pest Manag Sci. 2024 Apr;80(4):1812-1820. doi: 10.1002/ps.7907. Epub 2023 Dec 20.

Abstract

BACKGROUND

The environmental and economic costs of conventional insecticides have stirred an interest in alternative management tactics, including the use of nanotechnologies. Selenium nanoparticles (SeNPs) have many applications in agriculture but may not be compatible with biological control; however, low concentrations of SeNPs may benefit natural enemies via hormesis. This study investigates the concentration-dependent effects of SeNPs (0-1000 mg L ) on Anisopteromalus calandrae (Howard) (Hymenoptera: Pteromalidae), a generalist parasitoid of stored product pests.

RESULTS

The LC of SeNPs was 1540 mg L for female parasitoids and 1164 mg L for males. SeNPs had a significant hormetic effect; average lifespan increased by 10% at a concentration of 4.03 mg L for females and by 35% at 13.83 mg L for males. In a bioassay including hosts [the azuki bean beetle, Callosobruchus chinensis (L.) (Coleoptera: Chrysomelidae: Bruchinae)], a low concentration of SeNPs (25 mg L ) enhanced the performance of female parasitoids; lifespan increased by 23% and the number of offspring increased by 88%. However, the number of emerging hosts did not significantly decrease; in the absence of parasitism, SeNPs actually improved host emergence by 17%.

CONCLUSION

Because higher concentrations of SeNPs reduced parasitoid lifespan, whereas low concentrations enhanced not only parasitoid performance but also host emergence, practitioners should exercise caution when considering SeNPs for use in integrated pest management. © 2023 Society of Chemical Industry.

摘要

背景

传统杀虫剂的环境和经济成本引起了人们对替代管理策略的兴趣,包括纳米技术的应用。硒纳米颗粒(SeNPs)在农业中有许多应用,但可能与生物防治不兼容;然而,低浓度的 SeNPs 可能通过兴奋效应有益于天敌。本研究调查了 SeNPs(0-1000mg/L)对储粮害虫通用寄生蜂黄宽缘步甲(Anisopteromalus calandrae(Howard))(膜翅目:卷蛾科)的浓度依赖性影响。

结果

SeNPs 对雌性寄生蜂的 LC 为 1540mg/L,对雄性寄生蜂的 LC 为 1164mg/L。SeNPs 具有显著的兴奋效应;雌性寄生蜂在 4.03mg/L 浓度下平均寿命增加 10%,雄性寄生蜂在 13.83mg/L 浓度下平均寿命增加 35%。在包括宿主(红小豆象,Callosobruchus chinensis(L.)(鞘翅目:象甲科:豆象亚科))的生物测定中,低浓度的 SeNPs(25mg/L)增强了雌性寄生蜂的性能;寿命增加了 23%,后代数量增加了 88%。然而,出现的宿主数量并没有显著减少;在没有寄生的情况下,SeNPs 实际上将宿主的出现率提高了 17%。

结论

由于较高浓度的 SeNPs 缩短了寄生蜂的寿命,而较低浓度的 SeNPs 不仅增强了寄生蜂的性能,而且还增强了宿主的出现率,因此从业者在考虑将 SeNPs 用于综合虫害管理时应谨慎。© 2023 化学工业协会。

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