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在蜜蜂先天免疫中,进攻和防御之间存在潜在的权衡:在接触吡虫啉和双甲脒后,蜜蜂血淋巴细胞的吞噬作用降低与保护反应相关。

A potential trade-off between offense and defense in honeybee innate immunity: Reduced phagocytosis in honeybee hemocytes correlates with a protective response after exposure to imidacloprid and amitraz.

机构信息

Université de Lorraine, INRAE, LSE, F-54000 Nancy, France; Université de Lorraine, IUT Thionville-Yutz, Plateforme de Recherche, Transfert de Technologie et Innovation (PRTI), 57970 Yutz, France; Lebanese University, Biology Department, Faculty of Sciences I, Hadath, Lebanon.

Université de Lorraine, INRAE, LSE, F-54000 Nancy, France.

出版信息

Pestic Biochem Physiol. 2024 Feb;199:105772. doi: 10.1016/j.pestbp.2024.105772. Epub 2024 Jan 14.

Abstract

Phagocytosis "offense" is a crucial process to protect the organism from diseases and the effects of foreign particles. Insects rely on the innate immune system and thus any hindrance to phagocytosis may greatly affect their resistance to diseases and response to pathogens. The European honeybee, a valuable species due to its economic and environmental contribution, is being challenged by colony collapse disorder leading to its decline. Exposure to multiple factors including pesticides like imidacloprid and amitraz may negatively alter their immune response and ultimately make them more susceptible to diseases. In this study, we compare the effect of different concentrations and mixtures of imidacloprid and amitraz with different concentrations of the immune stimulant, zymosan A. Results show that imidacloprid and amitraz have a synergistic negative effect on phagocytosis. The lowered phagocytosis induces significantly higher hemocyte viability suggesting a negatively correlated protective mechanism "defense" from pesticide-associated damage but may not be protective from pathogens.

摘要

吞噬作用“进攻”是保护生物体免受疾病和外来颗粒影响的关键过程。昆虫依赖于先天免疫系统,因此吞噬作用的任何障碍都可能极大地影响它们对疾病的抵抗力和对病原体的反应。欧洲蜜蜂是一种具有经济和环境贡献的有价值物种,但由于群体崩溃失调而导致其数量下降。暴露于多种因素,包括像吡虫啉和双甲脒这样的杀虫剂,可能会使它们的免疫反应产生负面影响,并最终使它们更容易患病。在这项研究中,我们比较了不同浓度和混合物的吡虫啉和双甲脒与不同浓度的免疫刺激剂,几丁质 A 的作用。结果表明,吡虫啉和双甲脒对吞噬作用有协同的负面影响。吞噬作用的降低会显著提高血球的活力,这表明存在一种负相关的保护机制,即“防御”与杀虫剂相关的损伤,但可能无法抵御病原体。

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