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首页> 外文期刊>Frontiers in Physiology >Anguillicola crassus Infection Significantly Affects the Silvering Related Modifications in Steady State mRNA Levels in Gas Gland Tissue of the European Eel
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Anguillicola crassus Infection Significantly Affects the Silvering Related Modifications in Steady State mRNA Levels in Gas Gland Tissue of the European Eel

机译: Anguillicola crassus 感染显着影响欧洲鳗Gas气腺组织中稳态mRNA水平的银化相关修饰

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Using Illumina sequencing, transcriptional changes occurring during silvering in swimbladder tissue of the European eel have been analyzed by comparison of yellow and silver eel tissue samples. Functional annotation analysis based on GO terms revealed significant expression changes in a number of genes related to the extracellular matrix, important for the control of gas permeability of the swimbladder, and to reactive oxygen species (ROS) defense, important to cope with ROS generated under hyperbaric oxygen partial pressures. Focusing on swimbladder tissue metabolism, levels of several mRNA species encoding glucose transport proteins were several-fold higher in silver eels, while enzymes of the glycolytic pathway were not affected. The significantly higher steady state level of a transcript encoding for membrane bound carbonic anhydrase, however, suggested that CO_(2)production in the pentose phosphate shunt and diffusion of CO_(2)was of particular importance in silver eel swimbladder. In addition, the mRNA level of a large number of genes related to immune response and to sexual maturation was significantly modified in the silver eel swimbladder. The modification of several processes related to protein metabolism and transport, cell cycle, and apoptosis suggested that these changes in swimbladder metabolism and permeability were achieved by increasing cell turn-over. The impact of an infection of the swimbladder with the nematode Anguillicola crassus has been assessed by comparing these expression changes with expression changes observed between uninfected yellow eel swimbladder tissue and infected silver eel swimbladder tissue. In contrast to uninfected silver eel swimbladder tissue, in infected tissue the mRNA level of several glycolytic enzymes was significantly elevated, and with respect to extracellular matrix, several mucin genes were many-fold higher in their mRNA level. Modification of many immune related genes and of the functional categories “response to DNA damage stimulus” and “cellular response to stress” illustrated the damaging effect of the nematode infection. This study has identified a range of cellular processes in the swimbladder of silver eels that appear to be altered by nematode infection. These altered cellular processes could contribute to detrimental changes in swimbladder function that, in turn, may lead to impairment of spawning migration.
机译:使用Illumina测序,通过比较黄色和银色鳗鱼组织样品,分析了欧洲鳗鱼游泳组织中银染过程中发生的转录变化。基于GO术语的功能注释分析显示,与细胞外基质相关的许多基因的表达均有明显变化,这对于控制泳囊的气体渗透性以及对活性氧(ROS)的防御至关重要,对于应对在这种条件下产生的ROS具有重要意义。高压氧分压。着眼于游泳囊组织的新陈代谢,银glucose中编码葡萄糖转运蛋白的几种mRNA种类的水平要高几倍,而糖酵解途径的酶则不受影响。然而,编码膜结合的碳酸酐酶的转录物的稳态水平显着更高,这表明戊糖磷酸分流器中的CO_(2)产生和CO_(2)的扩散在银e游泳中特别重要。此外,在银鳗游泳膀胱中,与免疫反应和性成熟相关的大量基因的mRNA水平也被显着改变。与蛋白质代谢和转运,细胞周期和细胞凋亡相关的几个过程的修饰表明,泳囊代谢和通透性的这些变化是通过增加细胞周转来实现的。通过将这些表达变化与未感染的黄色鳗鱼游泳组织和感染的银鳗游泳组织之间观察到的表达变化进行比较,可以评估线虫感染鳗鱼游动囊的影响。与未感染的鳗鱼游泳膀胱组织相比,在感染的组织中,几种糖酵解酶的mRNA水平显着升高,并且相对于细胞外基质,一些粘蛋白基因的mRNA水平高出许多倍。许多免疫相关基因和功能类别“对DNA损伤刺激的反应”和“对应激的细胞反应”的修饰说明了线虫感染的破坏作用。这项研究已经确定了银鳗鱼游泳囊中一系列可能被线虫感染改变的细胞过程。这些改变的细胞过程可能导致游泳囊功能的有害变化,继而可能导致产卵迁移的损害。

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