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Anguillicola crassus infection affects mRNA expression levels in gas gland tissue of European yellow and silver eel

机译:广角鳗感染影响欧洲黄鳗和银鳗气腺组织中的mRNA表达水平

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摘要

Using Illumina sequencing, we investigated transcriptional changes caused by the nematode Anguillicola crassus within yellow and silver eels by comparing swimbladder samples of uninfected yellow with infected yellow eels, and uninfected silver with infected silver eels, respectively. In yellow eel gas gland, the infection caused a modification of steady state mRNA levels of 1675 genes, most of them being upregulated. Functional annotation analysis based on GO terms was used to categorize identified genes with regard to swimbladder metabolism or response to the infection. In yellow eels, the most prominent category was ‘immune response’, including various inflammatory components, complement proteins, and immunoglobulins. The elevated expression of several glucose and monocarboxylate transporters indicated an attempt to maintain the level of glucose metabolism, even in due to the infection thickened swimbladder tissue. In silver eel swimbladder tissue, on the contrary, the mRNA levels of only 291 genes were affected. Genes in the categories ‘glucose metabolism’ and ‘ROS metabolism’ barely responded to the infection and even the reaction of the immune system was much less pronounced compared to infected yellow eels. However, in the category ‘extracellular matrix’, the mRNA levels of several mucin genes were strongly elevated, suggesting increased mucus production as a defense reaction against the parasite. The present study revealed a strong reaction to an Anguillicola crassus infection on mRNA expression levels in swimbladder tissue of yellow eels, whereas in silver eels the changes ware almost negligible. A possible explanation for this difference is that the silvering process requires so much energy that there is not much scope to cope with the additional challenge of a nematode infection. Another possible explanation could be that gas-secreting activity of the silver eel swimbladder was largely reduced, which could coincide with a reduced responsiveness to other challenges, like a nematode infection.
机译:使用Illumina测序,我们分别比较了未感染的黄色和感染的黄色鳗鱼和未感染的银和感染的银色鳗鱼的游泳标本,调查了黄色和银色鳗鱼中线虫Anguillicola crassus引起的转录变化。在黄e气腺中,感染导致1675个基因的稳态mRNA水平发生改变,其中大多数被上调。基于GO术语的功能注释分析用于根据泳囊代谢或对感染的反应对已鉴定的基因进行分类。在黄e中,最突出的类别是“免疫应答”,包括各种炎症成分,补体蛋白和免疫球蛋白。几种葡萄糖和单羧酸盐转运蛋白的高表达表明,即使由于感染导致游泳囊组织增厚,也试图维持葡萄糖代谢水平。相反,在银鳗游泳膀胱组织中,只有291个基因的mRNA水平受到影响。与感染的黄鳗鱼相比,“葡萄糖代谢”和“ ROS代谢”类别的基因几乎对感染没有反应,甚至免疫系统的反应也没有那么明显。然而,在“细胞外基质”类别中,几种粘蛋白基因的mRNA水平显着升高,表明粘液产生增加是对寄生虫的防御反应。本研究表明,对黄色鳗鱼游泳组织中mRNA表达水平产生了强烈的克氏杆菌感染反应,而在银鳗中,这种变化几乎可以忽略不计。对此差异的可能解释是,镀银过程需要大量能量,以致没有足够的空间来应对线虫感染的额外挑战。另一个可能的解释可能是银鳗游泳囊的气体分泌活性大大降低,这可能与对其他挑战(如线虫感染)的响应能力降低相吻合。

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