Perry S F, Daxboeck C, Emmett B, Hochachka P W, Brill R W
Comp Biochem Physiol A Comp Physiol. 1985;81(1):49-53. doi: 10.1016/0300-9629(85)90265-8.
The effects of temperature change (in vitro) on acid-base balance of skipjack tuna blood were investigated. By examining the relationship between blood pH and temperature (in vitro) under conditions of constant CO2 tension (open system), it was observed that dpH/dT = -0.013 U/degrees C. This value falls well within the range of in vivo values reported for other ectothermic vertebrates, and is only slightly different than results obtained in vitro under conditions of constant CO2 content (closed system; dpH/dT = -0.0165 U/degrees C). It is concluded that changes in pH following temperature changes can be accounted for solely by the passive, in vitro behaviour of the chemical buffer system found in the blood, so that active regulatory mechanisms of pH adjustment need not be postulated for skipjack tuna.
研究了温度变化(体外)对鲣鱼血液酸碱平衡的影响。通过在恒定二氧化碳张力(开放系统)条件下检查血液pH值与温度(体外)之间的关系,观察到dpH/dT = -0.013 U/℃。该值完全落在其他变温脊椎动物体内值的范围内,并且与在恒定二氧化碳含量(封闭系统;dpH/dT = -0.0165 U/℃)条件下体外获得的结果仅略有不同。得出的结论是,温度变化后pH值的变化可以仅由血液中化学缓冲系统的被动体外行为来解释,因此无需假定鲣鱼存在主动的pH调节机制。