Department of Biological Sciences, University of Cincinnati, Cincinnati, OH45221, USA.
Parasitology. 2020 Sep;147(11):1196-1205. doi: 10.1017/S0031182020000918. Epub 2020 Jun 5.
Parasites cause harm to their hosts and represent pervasive causal agents of natural selection. Understanding host proximate responses during interactions with parasites can help predict which genes and molecular pathways are targets of this selection. In the current study, we examined transcriptional changes arising from interactions between Drosophila melanogaster and their naturally occurring ectoparasitic mite, Gamasodes queenslandicus. Shifts in host transcript levels associated with behavioural avoidance revealed the involvement of genes underlying nutrient metabolism. These genetic responses were reflected in altered body lipid and glycogen levels in the flies. Mite infestation triggered a striking immune response, while male accessory gland protein transcript levels were simultaneously reduced, suggesting a trade-off between host immune responses to parasite challenge and reproduction. Comparison of transcriptional analyses during mite infestation to those during nematode and parasitoid attack identified host genes similarly expressed in flies during these interactions. Validation of the involvement of specific genes with RNA interference lines revealed candidates that may directly mediate fly-ectoparasite interactions. Our physiological and molecular characterization of the Drosophila-Gamasodes interface reveals new proximate mechanisms underlying host-parasite interactions, specifically host transcriptional shifts associated with behavioural avoidance and infestation. The results identify potential general mechanisms underlying host resistance and evolutionarily relevant trade-offs.
寄生虫会对宿主造成伤害,是自然选择的普遍原因。了解宿主在与寄生虫相互作用过程中的近因反应有助于预测哪些基因和分子途径是这种选择的目标。在本研究中,我们研究了黑腹果蝇与其天然外寄生螨,昆士兰革螨之间相互作用所产生的转录变化。与行为回避相关的宿主转录水平的变化揭示了营养代谢相关基因的参与。这些遗传反应反映在果蝇体内脂质和糖原水平的改变上。螨虫的侵袭引发了强烈的免疫反应,同时雄性附腺蛋白的转录水平同时降低,这表明宿主对寄生虫挑战的免疫反应和繁殖之间存在权衡。在螨虫感染期间进行的转录分析与线虫和寄生蜂攻击期间进行的转录分析进行比较,确定了在这些相互作用中在果蝇中相似表达的宿主基因。使用 RNA 干扰系验证特定基因的参与,揭示了可能直接介导果蝇-外寄生螨相互作用的候选基因。我们对果蝇-革螨界面的生理和分子特征的描述揭示了宿主-寄生虫相互作用的新近因机制,特别是与行为回避和感染相关的宿主转录变化。结果确定了宿主抗性和进化相关权衡的潜在一般机制。