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首页> 外文期刊>The Journal of Experimental Biology >Ionoregulatory changes in different populations of maturing sockeye salmon Oncorhynchus nerka during ocean and river migration
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Ionoregulatory changes in different populations of maturing sockeye salmon Oncorhynchus nerka during ocean and river migration

机译:在海洋和河流迁移过程中,成熟的红鲑鲑Oncorhynchus nerka在不同种群中的电离变化

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We present the first data on changes in ionoregulatory physiology of maturing, migratory adult sockeye salmon Oncorhynchus nerka. Fraser River sockeye were intercepted in the ocean as far away as the Queen Charlotte Islands (approximately 850 km from the Fraser River) and during freshwater migration to the spawning grounds; for some populations this was a distance of over 700 km. Sockeye migrating in seawater toward the mouth of the Fraser River and upriver to spawning grounds showed a decline in gill Na+,K+-ATPase activity. As a result, gill Na+,K+-ATPase activity of fish arriving at the spawning grounds was significantly lower than values obtained from fish captured before entry into freshwater. Plasma osmolality and chloride levels also showed significant decreases from seawater values during the freshwater migration to spawning areas. Movement from seawater to freshwater increased mRNA expression of a freshwater-specific Na+,K+-ATPase isoform (alpha1a) while having no effect on the seawater-specific isoform (alpha1b). In addition, gill Na+,K+-ATPase activity generally increased in active spawners compared with unspawned fish on the spawning grounds and this was associated with a marked increase in Na+,K+-ATPase alpha1b mRNA. Increases in gill Na+,K+-ATPase activities observed in spawners suggests that the fish may be attempting to compensate for the osmotic perturbation associated with the decline in plasma chloride concentration and osmolality.
机译:我们提出了关于成熟的,迁徙的成年红鲑鲑Oncorhynchus nerka的电离生理变化的第一批数据。在远至夏洛特皇后群岛(距弗雷泽河约850公里)的海洋中,以及在淡水向产卵场迁移的过程中,弗雷泽河的红鲑鱼均在海洋中被截获;对于某些人群来说,这是700多公里的距离。红鲑在海水中向弗雷泽河(Fraser River)河口和上游产卵地迁移,表明g Na +,K + -ATPase活性下降。结果,到达产卵场的鱼g Na +,K + -ATPase活性明显低于从进入淡水之前捕获的鱼获得的值。在淡水向产卵区迁移期间,血浆渗透压和氯化物含量也从海水值显着下降。从海水到淡水的运动增加了淡水特异性Na +,K + -ATPase亚型(alpha1a)的mRNA表达,而对海水特异性亚型(alpha1b)没有影响。此外,与产卵场上未产卵的鱼相比,活跃产卵g的Na +,K + -ATPase活性通常增加,这与Na +,K + -ATPase alpha1b mRNA的显着增加有关。在产卵者身上观察到的Na Na +,K + -ATPase活性增加表明,这条鱼可能试图弥补与血浆氯化物浓度和重量摩尔渗透压浓度降低有关的渗透扰动。

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