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首页> 外文期刊>Marine and Freshwater Behaviour and Physiology >A histological study of the kidney structure of Van fish (Alburnus tarichi) acclimated to highly alkaline water and freshwater
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A histological study of the kidney structure of Van fish (Alburnus tarichi) acclimated to highly alkaline water and freshwater

机译:对高碱性水和淡水适应的范鱼(Alburnus tarichi)肾脏结构的组织学研究

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Kidneys are important organs that play a role in ion and water regulation in different aquatic environments. The Van fish (Alburnus tarichi, Guldenstadt, 1814) has acclimated to the alkaline waters of the largest saline soda lake in the world. In this study, changes in kidney tissue were examined histologically in alkaline and freshwater as the fish entered freshwater for reproduction. In addition, immunological changes were examined for Na+, K+, ATPase (NKA), an important transmembrane protein in kidneys. A histological comparison of the kidneys of fish taken from both environments was made. The glomerular volume was larger in fish acclimated to freshwater, and the collecting tubules were larger in diameter and had thicker walls. The fish acclimated to alkaline lake water had reduced numbers of glomeruli of smaller size. NKA enzyme was present in tubules within kidneys in both environments. It was, however, observed more frequently in fish acclimated to freshwater. Although plasma osmolality and Cl- values decreased in the fish acclimated to freshwater, hematocrit values increased (p<0.05). No changes were observed in the muscle water content between alkaline water- and freshwater-acclimated fish. We clearly demonstrate that histologic and immunochemical changes take place in the kidney of the Van fish acclimated to the different physicochemical characteristics of alkaline and freshwater environments.
机译:肾脏是重要的器官,在不同的水生环境中,它们在离子和水的调节中发挥作用。范鱼(Alburnus tarichi,古尔登施塔特,1814年)已经适应了世界上最大的盐水苏打湖的碱性水域。在这项研究中,当鱼类进入淡水繁殖时,在碱性和淡水中组织学检查了肾脏组织的变化。此外,检查了肾脏中重要的跨膜蛋白Na +,K +,ATPase(NKA)的免疫学变化。对两种环境中的鱼肾脏进行了组织学比较。适应淡水的鱼的肾小球体积较大,收集管的直径较大且壁较厚。适应碱性湖水的鱼减少了较小尺寸的肾小球的数量。在两种环境中,肾脏的肾小管中均存在NKA酶。然而,在适应淡水的鱼类中更经常观察到这种情况。尽管在适应淡水的鱼中血浆渗透压和Cl-值降低,但血细胞比容值却增加了(p <0.05)。在碱性水和淡水适应鱼之间的肌肉含水量未见变化。我们清楚地表明,适应碱性和淡水环境的不同物理化学特征,范鱼的肾脏发生了组织学和免疫化学变化。

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