Gaubert Joy, Giovenazzo Pierre, Derome Nicolas
Laboratoire Derome, Département de Biologie, Institut de Biologie Intégrative et des Systèmes, Université Laval, Québec, QC, Canada.
Laboratoire Giovenazzo, Département de Biologie, Université Laval, Québec, QC, Canada.
Front Physiol. 2023 Jul 7;14:1172859. doi: 10.3389/fphys.2023.1172859. eCollection 2023.
The honeybee is an important species for the agri-food and pharmaceutical industries through bee products and crop pollination services. However, honeybee health is a major concern, because beekeepers in many countries are experiencing significant colony losses. This phenomenon has been linked to the exposure of bees to multiple stresses in their environment. Indeed, several biotic and abiotic stressors interact with bees in a synergistic or antagonistic way. Synergistic stressors often act through a disruption of their defense systems (immune response or detoxification). Antagonistic interactions are most often caused by interactions between biotic stressors or disruptive activation of bee defenses. Honeybees have developed behavioral defense strategies and produce antimicrobial compounds to prevent exposure to various pathogens and chemicals. Expanding our knowledge about these processes could be used to develop strategies to shield bees from exposure. This review aims to describe current knowledge about the exposure of honeybees to multiple stresses and the defense mechanisms they have developed to protect themselves. The effect of multi-stress exposure is mainly due to a disruption of the immune response, detoxification, or an excessive defense response by the bee itself. In addition, bees have developed defenses against stressors, some behavioral, others involving the production of antimicrobials, or exploiting beneficial external factors.
蜜蜂通过蜂产品和作物授粉服务,对农业食品和制药行业来说是一个重要物种。然而,蜜蜂健康是一个主要问题,因为许多国家的养蜂人都在经历蜂群的大量损失。这种现象与蜜蜂在其环境中受到多种压力有关。事实上,一些生物和非生物应激源以协同或拮抗的方式与蜜蜂相互作用。协同应激源通常通过破坏它们的防御系统(免疫反应或解毒作用)来起作用。拮抗相互作用最常由生物应激源之间的相互作用或蜜蜂防御的破坏性激活引起。蜜蜂已经发展出行为防御策略,并产生抗菌化合物,以防止接触各种病原体和化学物质。扩展我们对这些过程的了解可用于制定保护蜜蜂免受接触的策略。这篇综述旨在描述关于蜜蜂暴露于多种压力以及它们为保护自己而发展出的防御机制的现有知识。多压力暴露的影响主要是由于免疫反应、解毒作用的破坏,或者蜜蜂自身过度的防御反应。此外,蜜蜂已经发展出针对应激源的防御机制,有些是行为上的,有些涉及抗菌物质的产生,或者利用有益的外部因素。