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Semi-artificial mouse skin membrane feeding technique for adult tick, Haemaphysalis longicornis

机译:半人工小鼠皮肤膜喂养技术,成人蜱,Haemaphysalis Longicornis

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Background An in vitro artificial feeding technique for hard ticks is quite useful for studying the tick-pathogen interactions. Here, we report a novel semi-artificial feeding technique for the adult parthenogenetic tick, Haemaphysalis longicornis, using mouse skin membrane. Findings Skin with attached adult ticks was removed from the mouse body at 4 to 5 days post-infestation for the construction of the feeding system. This system supplied with rabbit blood was kept in >95% relative humidity at 30°C during the feeding, and ticks were fully engorged (artificially engorged, AE) within 12 to 48 h. For comparison, ticks were fed to engorgement solely on rabbit or mouse for 5 days as controls (naturally engorged on rabbit, NEr, or mouse, NEm). Blood digestion-related gene expression in the midgut and reproductive fitness were compared. Body weight, egg mass weight, egg conversion ratio, and hatchability of eggs did not show any significant differences. We analyzed transcription profiles of selected genes assayed by quantitative RT-PCR and revealed similar patterns of expression between NEr and AE but some differences between NEm and AE or NEm and NEr. Conclusions Our results demonstrate that this semi-artificial feeding technique mimics natural feeding processes of ticks and can be utilized as a standardized method to inoculate pathogens, especially Babesia protozoa, into H. longicornis and possibly other tick species as well.
机译:背景技术用于硬蜱的体外人工饲喂技术对于研究蜱病原体相互作用非常有用。在这里,我们报告了一种新的半人工饲养技术,用于成人替代蜱,HaoMaphysalis Longicordornis,使用小鼠皮肤膜。在侵扰后4至5天的4至5天内从小鼠体内取出附着成人蜱的发现皮肤,以进行饲养系统。在进料期间,用兔血液提供的该系统在30℃下保持> 95%的相对湿度,并且蜱在12至48小时内被完全接通(人工闭合的AE)。为了比较,蜱虫仅被兔子或小鼠饲喂5天的兔子或小鼠(天然on兔,Ner或鼠标,NEM)。比较了血液消化相关的基因表达中的中肠和繁殖健身。体重,蛋体重,卵转化率和卵的孵化率没有显示出任何显着差异。我们分析了通过定量RT-PCR测定的所选基因的转录谱,并揭示了Ner和Ae之间的类似表达模式,但NEM和AE或NEM和NER之间的一些差异。结论我们的结果表明,这种半人工饲养技术模拟了蜱的自然饲养过程,可以用作接种病原体,特别是Babesia原生动物,进入H. longicornis以及可能其他蜱虫种的标准化方法。

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