蜜蜂触角相关敏感基因的表达监测及其与卫生行为的关系

E. Facchini, F. Dell'Orco, M. Mortarino, R. Rizzi
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引用次数: 1

摘要

蜜蜂是非常重要的微型牲畜,不仅因为它们的生产具有经济价值,而且因为它们作为传粉者发挥着至关重要的作用。最近,整个欧洲都有蜂群损失的记录,造成这种现象的原因可以归结为农用化学品和病原体。在后者中,寄生性破坏者瓦螨被认为是主要的致死原因。蜜蜂(Apis mellifera)的卫生行为(HB)包括检测和清除受细菌、真菌疾病和寄生影响的幼虫。这种行为是群居昆虫进化出的一系列策略的一部分,这些策略被称为群居免疫,通过持续消除蜂巢中的病原体和寄生虫,限制它们的繁殖和对其他蜜蜂的感染,从而赋予它们抗病能力。昆虫外周感觉组织的生理变化会影响个体的行为状态,而触角水平的基因表达变化也可能导致蜜蜂行为状态的改变。此外,先前有报道称,触角在蜜蜂识别幼虫异常的过程中起着关键作用。本研究的目的是通过real - time - pcr技术研究选定基因(Obp3、Obp4、Obp16、Obp18、Act5C、Mblk-1)在蜜蜂触角中的表达水平。在以前的转录组学和蛋白质组学研究中,这些靶点被报道为HB的潜在生物标志物。采用优化的冷冻灭种法对10个蚁群的卫生行为进行了实地测量,并收集了已知年龄(15日龄)的工蚁进行分子分析。初步结果表明,Obp3基因表达量最少,但其表达模式与HB值相关;特别是,高度卫生的菌落表达Obp3的比例明显高于低HB组的菌落。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression monitoring of relevant sensitivity genes in honey bee antennae and their relationship with Hygienic Behavior
Honeybees are very important microlivestock, not only for the economic value of their productions but also for the crucial role they fulfill as pollinators. Recently, colony losses have been recorded throughout Europe and the reasons underpinning such phenomenon can be addressed to agro-chemicals and pathogens. Among the latter, the parasitic mite Varroa destructor is considered the principal mortality cause. Hygienic behavior (HB) in honeybee ( Apis mellifera ) involves the detection and removal of brood affected by bacterial, fungal diseases, and parasitization. This behavior is part of a series of strategies evolved by social insects known as social immunity, which confers disease resistance thanks to the persistent elimination of pathogens and parasites from the hive, limiting their multiplication and the infection of other bees. It has previously reported that physiological changes in peripheral sense tissues of insects influence the behavioral state of individuals, and it has been suggested that changes in gene expression at antennal level can contribute to shifts in the behavioral states of honeybees. Moreover, it has previously reported that antennae hold a key role in the process of recognition of abnormalities in the brood by honeybees. The aim of the work was to investigate the expression level of selected genes (Obp3, Obp4, Obp16, Obp18, Act5C, Mblk-1) through RealTime-PCR in honeybee antennae. These targets are reported as potential biomarkers of HB in previous transcriptomic and proteomic studies. Hygienic behavior has been measured in the field through optimized freeze-killed-brood method on 10 colonies, from which workers of known age (15 days old) have been collected for molecular analysis. Preliminary results show that Obp3 is the least expressed among the tested genes, but its expression pattern is linked to the HB value; in particular, highly hygienic colonies express Obp3 significantly at higher rate with respect to the lower HB group of colonies.
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