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微小的银弹:纳米银颗粒对索诺兰伊蚊(双翅目:蠓科)的吸血幼虫具有杀虫作用。

Tiny silver bullets: silver nanoparticles are insecticidal to Culicoides sonorensis (Diptera: Ceratopogonidae) biting midge larvae.

机构信息

Department of Entomology, Kansas State University, Manhattan, KS, USA.

Department of Entomology and Plant Pathology, University of Arkansas, Fayetteville, AR, USA.

出版信息

J Med Entomol. 2024 Nov 14;61(6):1427-1434. doi: 10.1093/jme/tjae107.

Abstract

Insecticide formulations with safer environmental profiles and limited off-target effects are desirable to manage medical and veterinary pests. Silver nanoparticles are insecticidal against mosquitos, nonbiting midges, and other insects. The biting midge, Culicoides sonorensis Wirth and Jones, is a vector of agriculturally important pathogens in much of the United States, and this study aimed to examine the insecticidal properties of silver nanoparticles in larvae of this species. Mortality of third-instar larvae was assessed daily for 7 days after exposure to concentrations of silver nanoparticles, sorghum polymer particles, and hybrid silver-sorghum polymer particles. Both silver nanoparticles and silver-sorghum polymer particles were insecticidal, but sorghum polymer particles alone did not significantly contribute to larval mortality. Concentrations of 100 mg/liter of silver nanoparticles achieved >50% mortality at day 7, and 200 mg/liter treatments achieved >75% larval mortality within 24 h. The antimicrobial properties of silver nanoparticles were also examined, and culturable bacteria were recovered from larval-rearing media at 200 mg/liter but not at 400 mg/liter of silver nanoparticles. These data suggest that C. sonorensis larval mortality is primarily caused by silver nanoparticle toxicity and not by the reduction of bacteria (i.e., a larval food source). This work describes the first use of silver nanoparticles in C. sonorensis and shows the potential insecticide applications of these nanoparticles against this agricultural pest. The grain-polymer particles also successfully carried insecticidal silver nanoparticles, and their utility in loading diverse compounds could be a novel toxin delivery system for biting midges and similar pests.

摘要

具有更安全的环境特性和有限的非靶标效应的杀虫剂配方是管理医学和兽医害虫所需要的。银纳米颗粒对蚊子、非吸血蠓和其他昆虫具有杀虫作用。吸血蠓,Culicoides sonorensis Wirth 和 Jones,是美国大部分地区农业重要病原体的传播媒介,本研究旨在研究银纳米颗粒对该物种幼虫的杀虫特性。暴露于银纳米颗粒、高粱聚合物颗粒和杂交银-高粱聚合物颗粒浓度后,每天评估三龄幼虫的死亡率,持续 7 天。银纳米颗粒和银-高粱聚合物颗粒都具有杀虫作用,但单独的高粱聚合物颗粒对幼虫死亡率没有显著影响。100mg/L 的银纳米颗粒浓度在第 7 天达到>50%的死亡率,200mg/L 的处理在 24 小时内达到>75%的幼虫死亡率。还检查了银纳米颗粒的抗菌特性,在 200mg/L 的银纳米颗粒但不在 400mg/L 的银纳米颗粒中从幼虫饲养介质中回收可培养细菌。这些数据表明,C. sonorensis 幼虫死亡率主要是由银纳米颗粒毒性引起的,而不是由细菌减少(即幼虫的食物来源)引起的。这项工作描述了银纳米颗粒在 C. sonorensis 中的首次使用,并展示了这些纳米颗粒对这种农业害虫作为杀虫剂的潜在应用。谷物-聚合物颗粒也成功地携带了杀虫银纳米颗粒,它们在装载各种化合物方面的效用可能是一种针对吸血蠓和类似害虫的新型毒素传递系统。

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