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意大利蜜蜂(膜翅目:蜜蜂科)蜂群接触吡虫啉会损害幼虫发育,加剧蛹的氧化应激,并导致成年蜜蜂中肠发生变化。

Exposure of Apis mellifera (Hymenoptera: Apidae) colonies to imidacloprid impairs larval development, promotes oxidative stress in pupae, and induces changes in the midgut of adult bees.

作者信息

Moreira Daiani Rodrigues, de Souza Tuan Henrique Smielevski, Galhardo Douglas, Figueira Cinthia Leão, Baulli Samara Calvi, da Silva Breno Gabriel, das Chagas Francieli, Oliveira José Washington Santos, Rocha Jean Samel, de Souza Khatlab Angélica, Gasparino Eliane, de Alencar Arnaut de Toledo Vagner, Gigliolli Adriana Aparecida Sinópolis, Ruvolo-Takasusuki Maria Claudia Colla

机构信息

Department of Biotechnology, Genetics and Cell Biology, State University of Maringá, Maringá, Paraná, 87020-900, Brazil.

Department of Animal Science, State University of Maringá, Maringá, Paraná, 87020-900, Brazil.

出版信息

Biol Res. 2025 Jan 21;58(1):5. doi: 10.1186/s40659-024-00571-5.

Abstract

Bees are essential pollinators that contribute to maintaining biodiversity and increasing agricultural production. However, by foraging on agricultural crops, bees may become contaminated with compounds used for pest control. In this study, we exposed bee (Apis mellifera L.) colonies to the insecticide imidacloprid (IMD) under field conditions to assess the occurrence of oxidative stress in larvae and pupae and investigate morphological changes in the fat body and midgut of larvae and midgut of adult bees. The apiary area was divided into three groups: control, commercial formulation containing IMD (Evidence 700WG) (IMD), and IMD active ingredient (Sigma-Aldrich) (IMD). Treatment groups were fed syrup containing 1 µg L IMD, whereas the control group was fed syrup only. Compared with the control, larvae exposed to IMD or IMD for 42 days exhibited morphological changes in the external body, midgut, and fat body. The midgut of adult bees contaminated with IMD showed only structural remnants of the peritrophic membrane and absence of regenerative cell nests. Oxidative stress analyses revealed that IMD-exposed larvae had higher nitrite and carbonylated protein contents and lower catalase and superoxide dismutase activity than control individuals. In pupae, IMD decreased catalase activity while increasing superoxide dismutase activity. These findings indicate that IMD has the potential to significantly impact the development of bees and their colonies by disrupting vital organs responsible for normal physiological functioning and overall activities of individuals. Oxidative stress, which was detected at different stages of bee development, may induce lipid, protein, and DNA oxidation, leading to cell death.

摘要

蜜蜂是重要的传粉者,有助于维持生物多样性和提高农业产量。然而,蜜蜂在采集农作物时,可能会被用于害虫防治的化合物污染。在本研究中,我们在田间条件下将蜂群(意大利蜜蜂)暴露于杀虫剂吡虫啉(IMD)中,以评估幼虫和蛹体内氧化应激的发生情况,并研究幼虫脂肪体和中肠以及成年蜜蜂中肠的形态变化。养蜂场区域分为三组:对照组、含有IMD的商业制剂(Evidence 700WG)(IMD组)和IMD活性成分(Sigma-Aldrich)(IMD组)。处理组喂食含有1µg/L IMD的糖浆,而对照组仅喂食糖浆。与对照组相比,暴露于IMD或IMD组42天的幼虫在体表、中肠和脂肪体上出现了形态变化。被IMD污染的成年蜜蜂中肠仅显示围食膜的结构残余,且没有再生细胞巢。氧化应激分析表明,与对照个体相比,暴露于IMD的幼虫亚硝酸盐和羰基化蛋白质含量更高,过氧化氢酶和超氧化物歧化酶活性更低。在蛹中,IMD降低了过氧化氢酶活性,同时增加了超氧化物歧化酶活性。这些发现表明,IMD有可能通过破坏负责个体正常生理功能和整体活动的重要器官,对蜜蜂及其蜂群的发育产生重大影响。在蜜蜂发育的不同阶段检测到的氧化应激可能会诱导脂质、蛋白质和DNA氧化,导致细胞死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/279f/11748266/df4cca81558b/40659_2024_571_Fig1_HTML.jpg

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