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Implication of the mineralocorticoid axis in rainbow trout osmoregulation during salinity acclimation

机译:盐度驯化过程中盐皮质激素轴对虹鳟渗透调节的影响

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摘要

Cortisol and glucocorticoid receptors (GRs) play an important role in fish osmoregulation, whereas the involvement of the mineralocorticoid receptor (MR) and its putative ligand 11-deoxycorticosterone (DOC) is poorly investigated. In this study, we assessed the implication of DOC and MR in rainbow trout (Oncorhynchus mykiss) osmoregulation during hypo- and hypersaline acclimation in parallel with the cortisol-GR system. A RIA for DOC was developed to measure plasma DOC levels, and a MR-specific antibody was developed to localize MR protein in the gill, intestine, and kidney. This is the first study to report DOC plasma levels during salinity change and MR localization in fish osmoregulatory tissue. Corticosteroid receptor mRNA abundance was investigated in osmoregulatory tissue during salinity acclimation, and the effect of cortisol and DOC on ionic transporters gene expression was assayed using an in vitro gill incubation method. Differential tissue-, salinity-, and time-dependent changes in MR mRNA levels during both hyper- and hyposaline acclimations and the ubiquitous localization of MR in osmoregulatory tissue suggest a role for the MR in osmoregulation. Presumably, DOC does not act as ligand for MR in osmoregulation because there were no changes in plasma DOC levels during either freshwater-seawater (FW-SW) or SW-FW acclimation or any effect of DOC on gill ionic transporter mRNA levels in the gill. Taken together, these results suggest a role for MR, but not for DOC, in osmoregulation and confirm the importance of cortisol as a major endocrine regulator of trout osmoregulation.
机译:皮质醇和糖皮质激素受体(GRs)在鱼类渗透调节中起着重要作用,而盐皮质激素受体(MR)及其推定的配体11-脱氧皮质酮(DOC)的参与却很少。在这项研究中,我们评估了虹鳟(Oncorhynchus mykiss)在低盐和高盐适应过程中与皮质醇GR系统平行渗透过程中DOC和MR的影响。开发了用于DOC的RIA以测量血浆DOC水平,并开发了MR特异性抗体以将MR蛋白定位在local,肠和肾中。这是第一个报告盐度变化和鱼类渗透调节组织中MR定位过程中DOC血浆水平的研究。在盐度适应过程中,在渗透调节组织中研究了皮质类固醇受体mRNA的丰度,并使用体外g培养法测定了皮质醇和DOC对离子转运蛋白基因表达的影响。高盐和次盐水驯化期间MR mRNA水平的组织,盐度和时间依赖性变化以及渗透调节组织中MR的普遍存在表明MR在渗透调节中的作用。据推测,DOC在渗透调节过程中不作为MR的配体,因为在淡水-海水(FW-SW)或SW-FW适应过程中血浆DOC水平没有变化,或者DOC对the中g离子转运蛋白mRNA水平的任何影响。两者合计,这些结果表明,在渗透压调节中,MR发挥了作用,但对DOC没有作用,并证实了皮质醇作为鳟鱼渗透压调节剂的主要内分泌调节剂的重要性。

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