首页> 外文期刊>The Journal of general physiology >The Mechanism of Sodium and Chloride Uptake by the Gills of a Fresh-Water Fish, Carassius auratus
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The Mechanism of Sodium and Chloride Uptake by the Gills of a Fresh-Water Fish, Carassius auratus

机译:淡水Car鱼the的Up吸收钠和氯的机理

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Carassius auratus placed in a dilute sodium chloride solution (400 μM) is able to absorb sodium and chloride ions at very different rates, or to absorb one ion and to lose the other. This is the case not only for fish which have been previously kept in choline chloride or sodium sulfate solutions or deionized water, in order to stimulate their absorption processes, but also in control fish which have not been deprived of sodium or chloride. The absorption of sodium or chloride appears to be unaffected by the presence of a nonpermeant co-ion such as choline or sulfate. Conductivity measurements of the external medium show that during ion uptake the conductivity is constant or increases slowly. This suggests the existence of exchange processes between the ions absorbed and endogenous ions excreted. It is unlikely that potassium or calcium is exchanged for sodium, because of the low permeability of the gills to these ions. Finally, the flux ratios observed for both sodium and chloride ions in the present investigation can only be explained, in relation to their electrochemical gradients across the gills, in terms of active transport.
机译:置于稀氯化钠溶液(400μM)中的a鱼能够以非常不同的速率吸收钠离子和氯离子,或者吸收一个离子而失去另一个离子。不仅对于以前为了保持其吸收过程而在氯化胆碱或硫酸钠溶液或去离子水中养过的鱼,而且对于没有剥夺钠或氯化物的对照鱼也是如此。钠或氯的吸收似乎不受诸如胆碱或硫酸盐之类的非渗透性共离子的影响。外部介质的电导率测量表明,在离子吸收过程中,电导率恒定或缓慢增加。这表明被吸收的离子与排出的内源性离子之间存在交换过程。由于potassium对这些离子的渗透性低,钾或钙不太可能被钠交换。最后,在本研究中,钠离子和氯离子的通量比只能根据其在across上的电化学梯度,以主动迁移的方式进行解释。

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