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在升高的静压下游泳会增加欧洲鳗鱼的气体腺细胞中的糖酵解活性。

Swimming under elevated hydrostatic pressure increases glycolytic activity in gas gland cells of the European eel.

机构信息

Institute of Zoology, University of Innsbruck, Innsbruck, Austria.

Center for Molecular Biosciences, University Innsbruck, Innsbruck, Austria.

出版信息

PLoS One. 2020 Sep 30;15(9):e0239627. doi: 10.1371/journal.pone.0239627. eCollection 2020.

Abstract

In spite of many decades of research, the spawning migration of the European eel Anguilla anguilla from the European coast to the Sargasso Sea remains a mystery. In particular, the role of the swimbladder as a buoyancy regulating structure is not yet understood. In this study, we exercised silver eels in a swim tunnel under elevated hydrostatic pressure. The transcriptome of gas gland tissue of these exercised eels was then compared to the known transcriptome of not exercised (control) silver eel gas gland cells. Due to the high infection rate of the eel population with the swimbladder parasite Anguillicola crassus, the comparison also included an exercised group of silver eels with a heavily damaged swimbladder, and we compared the previously published transcriptome of not exercised silver eels with a highly damaged swimbladder with the exercised group of silver eels with a heavily damaged swimbladder. The comparisons of unexercised (control) silver eels with exercised silver eels with functional swimbladder (EF), as well as with exercised silver eels with damaged swimbladder (ED), both showed a significant elevation in transcripts related to glycolytic enzymes. This could also be observed within the comparison of unexercised silver eels with a highly infected swimbladder with exercised eels with a damaged swimbladder (DED). In contrast to EF, in ED a significant elevation in transcript numbers of mitochondrial NADH dehydrogenase was observed. While in EF the transcriptional changes suggested that acid production and secretion was enhanced, in ED these changes appeared to be related to thickened tissue and thus elevated diffusion distances. The remarkable number of differentially expressed transcripts coding for proteins connected to cAMP-dependent signaling pathways indicated that metabolic control in gas gland cells includes cAMP-dependent pathways. In contrast to ED, in EF significant transcriptional changes could be related to the reconstruction of the extracellular matrix, while in ED tissue repair and inflammation was more pronounced. Surprisingly, in exercised eels hypoxia inducible transcription factor expression was elevated. In EF, a large number of genes related to the circadian clock were transcriptionally modified, which may be connected to the circadian vertical migrations observed during the spawning migration.

摘要

尽管已经进行了几十年的研究,但欧洲鳗鲡从欧洲海岸到马尾藻海的产卵洄游仍然是一个谜。特别是,鳔作为浮力调节结构的作用尚不清楚。在这项研究中,我们在高压水隧道中对银鳗进行了锻炼。然后,将这些经过锻炼的鳗鱼的鳔组织的转录组与已知的未经锻炼(对照)的银鳗鳔细胞的转录组进行了比较。由于鳗鱼种群中患有鳔寄生虫 Anguillicola crassus 的感染率很高,因此该比较还包括了一组鳔严重受损的经过锻炼的银鳗,并且我们将之前发表的未经锻炼的银鳗与高度受损的鳔的转录组与鳔严重受损的锻炼银鳗进行了比较。未锻炼(对照)的银鳗与具有功能鳔(EF)的锻炼银鳗以及与鳔受损(ED)的锻炼银鳗的比较均显示出与糖酵解酶相关的转录本显著升高。在未锻炼的银鳗与感染严重的鳔与受损鳔的锻炼银鳗(DED)的比较中也可以观察到这种情况。与 EF 相比,在 ED 中观察到线粒体 NADH 脱氢酶的转录本数量显著增加。在 EF 中,转录变化表明酸的产生和分泌增强,而在 ED 中,这些变化似乎与组织增厚有关,从而增加了扩散距离。编码与 cAMP 依赖性信号通路相关的蛋白质的差异表达转录本的数量惊人,表明气腺细胞中的代谢控制包括 cAMP 依赖性途径。与 ED 相比,EF 中显著的转录变化可能与细胞外基质的重建有关,而 ED 中组织修复和炎症更为明显。令人惊讶的是,在经过锻炼的鳗鱼中,缺氧诱导转录因子的表达增加。EF 中,大量与生物钟相关的基因在转录上发生了修饰,这可能与产卵洄游期间观察到的昼夜垂直迁移有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1170/7526912/a4abc03fedae/pone.0239627.g001.jpg

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