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与护理蜜蜂行为和感官相关的基因会被变形翼病毒A变种改变。

Nursing Honeybee Behavior and Sensorial-Related Genes Are Altered by Deformed Wing Virus Variant A.

作者信息

Diego Silva, Nolberto Arismendi, Pablo Alveal Juan, Ricardo Ceballos, Nelson Zapata, Marisol Vargas

机构信息

Laboratorios de Virología y Patologías en Abejas, Facultad de Agronomía, Universidad de Concepción, Av. Vicente Méndez 595, Chillán 3780000, Chile.

Centro de Investigación Austral Biotech, Facultad de Ciencias, Universidad Santo Tomás, Av. Picarte 1130-1160, Valdivia 5090000, Chile.

出版信息

Insects. 2024 Jan 23;15(2):80. doi: 10.3390/insects15020080.

Abstract

Insect behavior is coordinated mainly by smell through the diverse odor-binding proteins (OBP) that allow them to identify and recognize their environment. Sensory information collected through smell is then analyzed and interpreted in the brain, allowing for correct insect functioning. The behavior of honeybees ( L.) can be affected by different pathogens, such as deformed wing virus (DWV). In particular, the DWV variant A (DWV-A) is capable of altering olfactory sensitivity and reducing the gene expression of different OBPs, including those associated with nursing behavior. The DWV is also capable of replicating itself in the sensory lobes of the brain, further compromising the processing of sensory information. This study evaluated the behavioral response of nurse honeybees exposed to a pheromone compound and the alterations in the gene expression of the pre- and post-synaptic neuronal genes neuroxins-1 and neurogilin-1 in the bee heads and OBP proteins in the antennae of nurse bees inoculated with DWV-A. The behavioral response of nurse bees exposed to the larval pheromone compound benzyl alcohol was analyzed using a Y-tube olfactometer. The viral load, the gene expression of OBP5 and OBP11 in antennae, and neuroxins-1 and neurogilin-1 in the bee heads were analyzed via qPCR. High viral loads significantly reduced the ability of 10- and 15-day-old nurse honeybees to choose the correct pheromone compound. Also, the gene expression of OBP5, OBP11, neuroxin-1, and neurogilin-1 in nurse honeybees decreased when they were highly infected with DWV-A. These results suggest that a DWV-A infection can disturb information processing and cause nursing honeybees to reduce their activity inside the hive, altering internal cohesion.

摘要

昆虫的行为主要通过嗅觉来协调,这是借助多种气味结合蛋白(OBP)实现的,这些蛋白使它们能够识别和感知周围环境。通过嗅觉收集到的感官信息随后在大脑中进行分析和解读,以确保昆虫正常运作。蜜蜂(Apis mellifera L.)的行为会受到不同病原体的影响,比如变形翅病毒(DWV)。特别是,DWV变异体A(DWV-A)能够改变嗅觉敏感性,并降低不同OBP的基因表达,包括那些与哺育行为相关的OBP。DWV还能够在大脑的感觉叶中自我复制,进一步损害感官信息的处理。本研究评估了接触信息素化合物的哺育蜜蜂的行为反应,以及接种DWV-A的哺育蜜蜂头部突触前和突触后神经元基因神经毒素-1和神经胶质蛋白-1以及触角中OBP蛋白的基因表达变化。使用Y型管嗅觉仪分析了接触幼虫信息素化合物苯甲醇的哺育蜜蜂的行为反应。通过定量聚合酶链反应(qPCR)分析了病毒载量、触角中OBP5和OBP11以及蜜蜂头部神经毒素-1和神经胶质蛋白-1的基因表达。高病毒载量显著降低了10日龄和15日龄哺育蜜蜂选择正确信息素化合物的能力。此外,当哺育蜜蜂被DWV-A高度感染时,它们体内OBP5、OBP11、神经毒素-1和神经胶质蛋白-1的基因表达会下降。这些结果表明,DWV-A感染会干扰信息处理,导致哺育蜜蜂减少在蜂巢内的活动,从而改变内部凝聚力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6f3/10889485/c8d1b32f1f92/insects-15-00080-g001.jpg

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