Zaobidna Ewa A, Żółtowska Krystyna, Łopieńska-Biernat Elżbieta
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Acta Parasitol. 2017 Dec 20;62(4):779-789. doi: 10.1515/ap-2017-0094.
The ectoparasitic mite Varroa destructor has emerged as the major pest of honeybees. Despite extensive research efforts, the pathogenesis of varroosis has not been fully explained. Earlier studies suggested that V. destructor infestation leads to the suppression of the host's immune system. The aim of this study was to analyze the immune responses of 14 genes in the Toll signal transduction pathways, including effector genes of antimicrobial peptides (AMPs), in developing Apis mellifera workers and drones infested with V. destructor. Four developmental stages (L5 larvae, prepupae, and 2 pupal stages) and newly emerged imagines were analyzed. In workers, the most significant changes were observed in L5 larvae in the initial stages of infestation. A significant increase in the relative expression of 10 of the 14 analyzed genes, including defensin-1 and defensin-2, was observed in infested bees relative to non-infested individuals. The immune response in drones developed at a slower rate. The expression of genes regulating cytoplasmic signal transduction increased in prepupae, whereas the expression of defensin-1 and defensin-2 effector genes increased in P3 pupae with red eyes. The expression of many immunity-related genes was silenced in successive life stages and in imagines, and it was more profound in workers than in drones. The results indicate that V. destructor significantly influences immune responses regulated by the Toll signal transduction pathway in bees. In infested bees, the observed changes in Toll pathway genes varied between life stages and the sexes.
外寄生螨类瓦螨已成为蜜蜂的主要害虫。尽管进行了广泛的研究,但瓦螨病的发病机制尚未完全阐明。早期研究表明,瓦螨侵染会导致宿主免疫系统受到抑制。本研究的目的是分析受瓦螨侵染的意大利蜜蜂工蜂和雄蜂发育过程中,Toll信号转导途径中14个基因的免疫反应,包括抗菌肽(AMPs)的效应基因。分析了四个发育阶段(L5幼虫、预蛹和两个蛹期)以及新羽化的成虫。在工蜂中,侵染初期L5幼虫阶段观察到最显著的变化。相对于未受侵染的个体,受侵染蜜蜂中14个分析基因中的10个基因,包括防御素-1和防御素-2的相对表达显著增加。雄蜂的免疫反应发展较慢。调节细胞质信号转导的基因在预蛹期表达增加,而防御素-1和防御素-2效应基因在红眼的P3蛹期表达增加。许多免疫相关基因的表达在连续的生命阶段和成虫期被沉默,且在工蜂中比在雄蜂中更明显。结果表明,瓦螨显著影响蜜蜂中由Toll信号转导途径调节的免疫反应。在受侵染的蜜蜂中,Toll途径基因观察到的变化在生命阶段和性别之间有所不同。