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幼年企鹅首次冷水浸泡后的热适应和代谢适应

Thermal and metabolic adaptation to first cold-water immersion in juvenile penguins.

作者信息

Barré H, Roussel B

出版信息

Am J Physiol. 1986 Sep;251(3 Pt 2):R456-62. doi: 10.1152/ajpregu.1986.251.3.R456.

DOI:10.1152/ajpregu.1986.251.3.R456
PMID:3752279
Abstract

Juvenile king and macaroni penguins are terrestrial seabirds and must face an intensive and prolonged energetic demand during their passage from shore to marine life in cold subantarctic seawater. Evidence for progressive thermal adaptation was sought by measurement of metabolic rate (MR) and body (Tb) and skin (Tsk) temperatures in unrestrained, fully immersed penguins. Steady-state responses obtained after the 3rd h of immersion in never-immersed (NI) penguins were compared with those of penguins acclimatized to seawater temperature (A). NI macaroni penguins, unlike NI king penguins, showed a fall in Tb on their first immersion but, once acclimatized, were able to maintain their homeothermy due to an increase (greater than 3.2 W/kg) in regulatory thermogenesis. In NI king penguins, during a simulation of seawater adaptation by 10 successive immersions, MR at 7 degrees C water temperature (Tw) rose from 6.0 to 9.4 W/kg (becoming 3-5 times higher than in air), whereas Tb rose from 37.6 to 38.4 degrees C. In both species occurrence of peak MR at much lower Tw, progressive increase in thermogenesis capacity, and lower conductance in water after adaptation to marine life (28 and 36% less in A king and macaroni penguins, respectively) showed that the passage from shore to marine life consisted of a true cold acclimatization.

摘要

幼年国王企鹅和长冠企鹅是陆生海鸟,在从海岸过渡到亚南极寒冷海水中的海洋生活期间,它们必须面对强烈且持久的能量需求。通过测量未受束缚、完全浸入水中的企鹅的代谢率(MR)、体温(Tb)和皮肤温度(Tsk),来探寻渐进性热适应的证据。将首次浸入水中的企鹅(NI)在浸入3小时后获得的稳态反应与适应海水温度的企鹅(A)的反应进行比较。与首次浸入水中的国王企鹅不同,首次浸入水中的长冠企鹅体温会下降,但一旦适应环境,由于调节性产热增加(大于3.2瓦/千克),它们能够维持体温恒定。在首次浸入水中的国王企鹅中,通过连续10次浸入模拟海水适应过程时,水温(Tw)为7摄氏度时的代谢率从6.0瓦/千克升至9.4瓦/千克(比在空气中高3至5倍),而体温从37.6摄氏度升至38.4摄氏度。在这两个物种中,在更低的水温下出现代谢率峰值、产热能力逐渐增加以及适应海洋生活后在水中的传导率降低(国王企鹅和长冠企鹅分别降低28%和36%),这表明从海岸到海洋生活的过渡包括真正的冷适应过程。

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