首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Intestinal osmoregulatory acclimation and nitrogen metabolism in juveniles of the freshwater marble goby exposed to seawater.
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Intestinal osmoregulatory acclimation and nitrogen metabolism in juveniles of the freshwater marble goby exposed to seawater.

机译:暴露在海水中的淡水大理石虾虎鱼幼鱼的肠道渗透调节驯化和氮代谢。

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The objective of this study was to elucidate the role of the intestine from juveniles of the marble goby, Oxyeleotris marmorata, during seawater (SW) exposure. It has been reported elsewhere that SW-exposed juvenile O. marmorata exhibits hypoosmotic and hypoionic regulation, with the induction of branchial Na+/K+-ATPase (NKA), Na+:K+:2Cl- cotransporter (NKCC), and cystic fibrosis transmembrane receptor-like chloride channels. Here, we report that SW exposure also led to significant increases in the activity and protein abundance of NKA in, and probably an increase in Na+ uptake through, its intestine. Additionally, there was an increase in apical NKCC immunoreactivity in the intestinal epithelium, indicating that there could be increased Cl- uptake through the intestine. These results suggest that absorption of ions, and hence water, from the intestinal lumen could be an essential part of the osmoregulatory process in juvenile O. marmorata during exposure to SW. Furthermore, there were significant increases in the glutamate content, and the aminating activity and protein abundance of glutamate dehydrogenase (GDH) in the intestine of fish exposed to SW. Since the intestinal glutamine synthetase activity and protein abundance decreased significantly, and the intestinal glutamine content remained unchanged, in the SW-exposed fish, excess glutamate formed via increased GDH activity in the intestine could be channeled to other organs to facilitate the increased synthesis of amino acids. Taken together, our results indicate for the first time that, besides absorbing ions and water during SW exposure, the intestine of juvenile O. marmorata also participated in altered nitrogen metabolism in response to salinity changes.
机译:这项研究的目的是阐明在海水(SW)接触过程中,大理石虾虎鱼(Oxyeleotris marmorata)幼鱼的肠内作用。在其他地方已经报道了SW暴露的少年O。桑mor具有低渗透性和低离子调节性,并诱导分支Na + / K + -ATPase(NKA),Na + :K + :2Cl -共转运蛋白(NKCC)和囊性纤维化跨膜受体样氯通道。在这里,我们报道,SW暴露还导致NKA的活性和蛋白质丰度显着增加,并且可能通过其肠Na + 吸收增加。此外,肠上皮的顶端NKCC免疫反应性增加,表明通过肠的Cl -摄取可能增加。这些结果表明,从肠腔吸收离子并因此吸收水可能是少年O渗透调节过程的重要组成部分。暴露于SW 的过程中。此外,暴露于SW的鱼肠中的谷氨酸含量以及谷氨酸脱氢酶(GDH)的胺化活性和蛋白质丰度也显着增加。由于肠道谷氨酰胺合成酶活性和蛋白质丰度显着下降,并且肠道谷氨酰胺含量保持不变,因此在暴露于SW的鱼中,通过增加肠道中GDH活性而形成的过量谷氨酸可被引导至其他器官,以促进氨基酸的合成增加酸。两者合计,我们的结果首次表明,除了在SW暴露期间吸收离子和水之外,少年O的肠道也是如此。 marmorata 还参与了盐分变化引起的氮代谢变化。

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