Maginniss Leigh A, Ekelund Summer A, Ultsch Gordon R
Department of Biological Sciences, DePaul University, Chicago, Illinois 60614, USA.
Physiol Biochem Zool. 2004 Mar-Apr;77(2):232-41. doi: 10.1086/381473.
We assessed the effects of cold and submergence on blood oxygen transport in common map turtles (Graptemys geographica). Winter animals were acclimated for 6-7 wk to one of three conditions at 3 degrees C: air breathing (AB-3 degrees C), normoxic submergence (NS-3 degrees C), and hypoxic (PO2=49 Torr) submergence (HS-3 degrees C). NS-3 degrees C turtles exhibited a respiratory alkalosis (pH 8.07; PCO2=7.9 Torr; [lactate]=2.2 mM) relative to AB-3 degrees C animals (pH 7.89; PCO2=13.4 Torr; [lactate]=1.1 mM). HS-3 degrees C animals experienced a profound metabolic acidosis (pH 7.30; PCO2=7.9 Torr; [lactate]=81 mM). NS-3 degrees C turtles exhibited an increased blood O2 capacity; however, isoelectric focusing revealed no seasonal changes in the isohemoglobin (isoHb) profile. Blood O2 affinity was significantly increased by cold acclimation; half-saturation pressures (P50's) for air-breathing turtles at 3 degrees and 22 degrees C were 6.5 and 18.8 Torr, respectively. P50's for winter animals submerged in normoxic and hypoxic water were 5.2 and 6.5 Torr, respectively. CO2 Bohr slopes (Delta logP50/Delta pH) were -0.15, -0.16, and -0.07 for AB-3 degrees C, NS-3 degrees C, and HS-3 degrees C turtles, respectively; the corresponding value for AB-22 degrees C was -0.37. The O2 equilibrium curve (O2EC) shape was similar for AB-3 degrees C and NS-3 degrees C turtles; Hill plot n coefficients ranged from 1.8 to 2.0. The O2EC shape for HS-3 degrees C turtles was anomalous, exhibiting high O2 affinity below P50 and a right-shifted segment above half-saturation. We suggest that increases in Hb-O2 affinity and O2 capacity enhance extrapulmonary O2 uptake by turtles overwintering in normoxic water. The anomalous O2EC shape and reduced CO2 Bohr effect of HS-3 degrees C turtles may also promote some aerobic metabolism in hypoxic water.
我们评估了寒冷和淹没对普通地图龟(Graptemys geographica)血液氧运输的影响。将处于冬季的动物在3摄氏度下适应6 - 7周,分为三种条件之一:空气呼吸(AB - 3摄氏度)、常氧淹没(NS - 3摄氏度)和低氧(PO2 = 49 Torr)淹没(HS - 3摄氏度)。相对于AB - 3摄氏度的动物(pH 7.89;PCO2 = 13.4 Torr;[乳酸] = 1.1 mM),NS - 3摄氏度的龟表现出呼吸性碱中毒(pH 8.07;PCO2 = 7.9 Torr;[乳酸] = 2.2 mM)。HS - 3摄氏度的动物经历了严重的代谢性酸中毒(pH 7.30;PCO2 = 7.9 Torr;[乳酸] = 81 mM)。NS - 3摄氏度的龟血液氧容量增加;然而,等电聚焦显示异血红蛋白(isoHb)谱没有季节性变化。冷适应显著增加了血液氧亲和力;3摄氏度和22摄氏度下空气呼吸龟的半饱和压力(P50)分别为6.5和18.8 Torr。在常氧和低氧水中淹没的冬季动物的P50分别为5.2和6.5 Torr。AB - 3摄氏度、NS - 3摄氏度和HS - 3摄氏度龟的二氧化碳玻尔斜率(ΔlogP50/ΔpH)分别为 - 0.15、 - 0.16和 - 0.07;AB - 22摄氏度的相应值为 - 0.37。AB - 3摄氏度和NS - 3摄氏度龟的氧平衡曲线(O2EC)形状相似;希尔图n系数范围为1.8至2.0。HS - 3摄氏度龟的O2EC形状异常,在P50以下表现出高氧亲和力,在半饱和以上有一段右移。我们认为,血红蛋白 - 氧亲和力和氧容量的增加增强了在常氧水中越冬的龟的肺外氧摄取。HS - 3摄氏度龟异常的O2EC形状和降低的二氧化碳玻尔效应也可能促进低氧水中的一些有氧代谢。