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◆ Environmental pollution (Barking, Essex : 1987)2026-08-17

Combined toxicity of pyrethroid insecticides and azole fungicides in honey bee larvae.

Minju Choi, Kyongmi Chon, Juyeong Kim, Hui-Yeon Ahn, Bo-Seon Kim, Bala Murali Krishna Vasamsetti, Chang-Young Yoon, Sojeong Hwang, Kyeong-Hun Park, Ji-Hoon Lee

原始摘要(英文原文)· Original abstract
Pyrethroid insecticides and azole fungicides are frequently employed in agriculture, and honey bees are commonly exposed to these pesticides during foraging. Nevertheless, most studies on honey bee larvae have focused on single compound exposure, and studies on mixture toxicity in honey bee larvae are limited. Herein, we investigated the acute toxicities of pyrethroid insecticides (cypermethrin and deltamethrin) and azole fungicides (propiconazole and tebuconazole). Deltamethrin had the highest toxicity to honey bee larvae with 0.04 μg/larva LD50, followed by cypermethrin with 0.13 μg/larva LD50 value. Contrastingly, relatively low toxicities were found in azole fungicides, propiconazole and tebuconazole with their LD50 values of 49.91 and 21.90 μg/larva, respectively. Except for the cypermethrin + tebuconazole combination, all the binary and ternary mixtures showed synergistic effects. Additionally, exposure to pesticide mixtures changed the distribution of mortality symptoms. Particularly, early death and stretched death emerged as the predominant symptoms, with proportions varying among the pesticide combinations. Thus, co-exposure to pyrethroid insecticides and azole fungicides can enhance the toxicity in honey bee larvae.
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Combined toxicity of pyrethroid insecticides and azole fungicides in honey bee larvae. — 科研速览 Science Skim