The mechanisms of acid-base and ionoregulation in the freshwater rainbow trout during environmental hyperoxia and subsequent normoxia. III. Branchial exchanges.
نویسندگان
چکیده
Fluxes of both acidic equivalents (JH+net) and electrolytes across the gills were continuously monitored in the freshwater rainbow trout (Salmo gairdneri) during 24 h normoxia (PIO2 = 120-150 torr; control), 72 h hyperoxia (PIO2 = 500-600 torr), and 24 h return to normoxia. A highly negative JH+net (i.e., excretion) was responsible for over 90% of the compensation of respiratory acidosis induced by hyperoxia in the whole animal. Similarly, a highly positive JH+net (i.e., uptake) accounted for virtually all the compensation of metabolic alkalosis induced by normoxic recovery. Hyperoxia was associated with a small net gain of Na+ and large net losses of Cl- at the gills, while normoxic recovery was associated with large net losses of Na+ and net gains of Cl-, effects reflected in ECF composition. Unidirectional flux analyses with radiotracers (22Na, 36Cl) demonstrated that these net flux alterations resulted from rapid and complex changes in both influx and efflux components such that the difference between JNa+net and JCl-net was stoichiometrically equivalent to JH+net. The results support the concept that Na+ vs acidic equivalent (H+, NH+4) and Cl- vs basic equivalent (HCO-3, OH-) exchanges at the gill are dynamically adjusted in order to correct internal acid-base disturbances.
منابع مشابه
THE MECHANISMS OF ACID--BASE AND IONOREGULATION IN FRESHWATER RAINBOW TROUT DURING ENVIRONMENTAL HYPEROXIA AND SUBSEQUENT NORMOXIA. I. EXTRA- AND INTRACELLULAR ACID--BASE STATUS THE HELVE HOBE*, CHRIS M. WOOD and MICHELE G. WHEATLY**
Al~tmct. The extracellular acid-base status of the freshwater rainbow trout (Salmo gairdneri) was continuously monitored during 24 h normoxia (Pxo: = 120-150 tort; control), 72 h hyperoxia (Pioz = 500-600 tort) and 24 h return to normoxia. Hyperoxla induced a marked respiratory acidosis (ApHe = -0.23 unit) due to a 3-fold elevation in arterial CO 2 tension which was completely compensated over ...
متن کاملIntracellular acid-base responses to environmental hyperoxia and normoxic recovery in rainbow trout.
Exposure of rainbow trout to environmental hyperoxia (PIO2 approximately 530 Torr) resulted in an extracellular respiratory acidosis which was fully compensated by 72 h; return to normoxia (PIO2 approximately 145 Torr) at this time induced a metabolic alkalosis which was corrected by 24 h. Intracellular pHi ([14C]DMO method), fluid volumes [3H]PEG-4000 method), and electrolytes were monitored. ...
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Acid-base equilibria/disequilibria were evaluated in vivo in post-branchial arterial blood and pre-branchial venous blood of freshwater rainbow trout (Oncorhynchus mykiss). This was accomplished using arterial and venous extracorporeal circuits in conjunction with a stopped-flow apparatus. After the abrupt stoppage of circulating post-branchial blood within the stopped-flow apparatus, pH increa...
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ورودعنوان ژورنال:
- Respiration physiology
دوره 55 2 شماره
صفحات -
تاریخ انتشار 1984