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血液和水中pH值及二氧化碳分压的变化对虹鳟(Salmo gairdneri)呼吸的影响。

The effects of changes in pH and PCO2 in blood and water on breathing in rainbow trout, Salmo gairdneri.

作者信息

Janssen R G, Randall D J

出版信息

Respir Physiol. 1975 Nov;25(2):235-45. doi: 10.1016/0034-5687(75)90099-7.

Abstract

The effect of sustained hypercapnia on the acid-base balance and gill ventilation in rainbow trout, Salmo gairdneri, was studied. The response to an increase in PICO2 from 0.3 to 5.2 mm Hg was a five-fold increase in gill ventilation volume and a slight increase in breathing frequency. There was a concomitant rise in PACO2 and an immediate fall in pHa. If PICO2 was maintained at 5.2 mm Hg for several days, ventilation volume gradually returned to the initial, prehypercapnic level within three days. Arterial pH also returned to the initial level within 2-3 days. These results are consistent with the hypothesis that under these conditions fish regulate pH via HCO3/C1 exchange across the gills rather than by changes in ventilation and subsequent adjustment of PACO2. A reduction in environmental pH causes a reduction in pHa but only a slow gradual increase in VG. Injections of HC1 or NaHCO3 into the blood have opposite effects on pHa but both cause a marked increase in VG. It is concluded that a rise in PACO2 results in a rise in VG and that changes in pH in blood or water have little direct effect on VG in rainbow trout. Possible location for receptors involved in this reflex response are discussed.

摘要

研究了持续高碳酸血症对虹鳟(Salmo gairdneri)酸碱平衡和鳃通气的影响。当PICO2从0.3毫米汞柱增加到5.2毫米汞柱时,鳃通气量增加了五倍,呼吸频率略有增加。同时,PACO2升高,pHa立即下降。如果将PICO2维持在5.2毫米汞柱几天,通气量在三天内逐渐恢复到高碳酸血症前的初始水平。动脉pH也在2至3天内恢复到初始水平。这些结果与以下假设一致:在这些条件下,鱼类通过鳃上的HCO3/C1交换来调节pH,而不是通过通气变化和随后对PACO2的调节。环境pH的降低会导致pHa降低,但只会使VG缓慢逐渐增加。向血液中注射HCl或NaHCO3对pHa有相反的影响,但都会导致VG显著增加。得出的结论是,PACO2的升高会导致VG升高,血液或水中pH的变化对虹鳟的VG几乎没有直接影响。讨论了参与这种反射反应的受体的可能位置。

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