首页> 外文期刊>American Journal of Physiology >Respiratory, metabolic, and acid-base correlates of aerobic metabolic rate reduction in overwintering frogs.
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Respiratory, metabolic, and acid-base correlates of aerobic metabolic rate reduction in overwintering frogs.

机译:越冬青蛙有氧代谢速率降低的呼吸,代谢和酸碱相关性。

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摘要

Aerobic metabolic rates (MO2) and respiratory quotients (RQ = CO2 production/MO2) were measured contemporaneously in hibernating frogs Rana temporaria (L.), submerged for 90 days at 3 degrees C. After 3 mo of submergence in fully aerated water, MO2 levels were 61% of those seen at the same temperature before hibernation. Over the first 40 days of hibernation, RQ values (< or = 0.82) favored a lipid-based metabolism that progressively shifted to an exclusively carbohydrate metabolism (RQ = 1.01) by 90 days of hibernation. Liver glycogen concentrations fell by 68% during the first 8 wk of submergence, thereafter exhibiting a less rapid rate of utilization. Conversely, muscle glycogen concentrations remained stable over the first 2 mo of the experiment before falling by 33% over the course of the remaining 2 mo, indicating that the frog was recruiting muscle glycogen reserves to fuel metabolism. Submerged frogs exhibited an extracellular acidosis during the first week of submergence, but over the course of the next 15 wk "extracellular pH" values were not significantly different from the values obtained from the control air-breathing animals. The initial extracellular acidosis was not mirrored in the intracellular compartment, and the acid-base state was not significantly different from the control values for the first 8 wk. However, over the subsequent 8- to 16-wk period, the acid-base status shifted to a lower intracellular pH-HCO3 concentration set point, indicative of a metabolic acidosis. Even so, there was no indication that the acidosis could be attributed to anaerobic metabolism, as both plasma and muscle lactate levels remained low and stable. Muscle adenylate energy charge and lactate-to-pyruvate and creatine-to-phosphocreatine ratios also remained unchanged throughout hibernation. The capacity for profound metabolic rate suppression together with the ability to match substrate use to shifts in aerobic metabolic demands and the ability to fix new acid-base homeostatic set points are highly adaptive, both in terms of survival and reproductive success, to an animal that is often forced to overwinter under the cover of ice.
机译:在3摄氏度下浸泡90天的冬眠青蛙蛙蛙(Lana temporaria)同时测量有氧代谢率(MO2)和呼吸商(RQ = CO2产生量/ MO2)。在完全充气水中浸泡3个月后,MO2处于休眠之前在相同温度下所见水平的61%。在休眠的前40天中,RQ值(<或= 0.82)支持基于脂质的代谢,该代谢在休眠90天后逐渐转变为仅碳水化合物代谢(RQ = 1.01)。在浸入的前8周,肝糖原浓度下降了68%,此后利用率下降得很快。相反,在实验的前2个月中,肌肉糖原浓度保持稳定,而在其余2个月的过程中下降了33%,这表明青蛙正在募集肌肉糖原储备来促进新陈代谢。浸入水中的青蛙在浸入的第一周内表现出细胞外酸中毒,但在接下来的15周内,“细胞外pH”值与从对照呼吸动物获得的值没有显着差异。最初的细胞外酸中毒未在细胞内区室反映出来,并且酸碱状态与前8周的控制值无显着差异。然而,在随后的8到16周内,酸碱状态转变为较低的细胞内pH-HCO3浓度设定点,表明发生了代谢性酸中毒。即使这样,也没有迹象表明酸中毒可归因于无氧代谢,因为血浆和肌肉乳酸水平均保持较低且稳定。在整个冬眠期间,肌肉腺苷酸的能量电荷以及乳酸与丙酮酸的比例以及肌酸与磷酸肌酸的比例也保持不变。具有深远的代谢速率抑制能力,以及与底物用途匹配以适应有氧代谢需求变化的能力,以及固定新的酸碱稳态设定值的能力,无论是在生存还是在繁殖成功方面,都具有高度的适应性。通常被迫在冰层下越冬。

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