Scott Graham R, Milsom William K
Department of Zoology, University of British Columbia, Vancouver, BC, Canada.
Am J Physiol Regul Integr Comp Physiol. 2007 Jul;293(1):R379-91. doi: 10.1152/ajpregu.00161.2007. Epub 2007 May 9.
The bar-headed goose flies over the Himalayan mountains on its migratory route between South and Central Asia, reaching altitudes of up to 9,000 m. We compared control of breathing in this species with that of low-altitude waterfowl by exposing birds to step decreases in inspired O(2) under both poikilocapnic and isocapnic conditions. Bar-headed geese breathed substantially more than both greylag geese and pekin ducks during severe environmental (poikilocapnic) hypoxia (5% inspired O(2)). This was entirely due to an enhanced tidal volume response to hypoxia, which would have further improved parabronchial (effective) ventilation. Consequently, O(2) loading into the blood and arterial Po(2) were substantially improved. Because air convection requirements were similar between species at 5% inspired O(2), it was the enhanced tidal volume response (not total ventilation per se) that improved O(2) loading in bar-headed geese. Other observations suggest that bar-headed geese depress metabolism less than low-altitude birds during hypoxia and also may be capable of generating higher inspiratory airflows. There were no differences between species in ventilatory sensitivities to isocapnic hypoxia, the hypoxia-induced changes in blood CO(2) tensions or pH, or hypercapnic ventilatory sensitivities. Overall, our results suggest that evolutionary changes in the respiratory control system of bar-headed geese enhance O(2) loading into the blood and may contribute to this species' exceptional ability to fly high.
斑头雁在南亚和中亚之间的迁徙路线上飞越喜马拉雅山脉,飞行高度可达9000米。我们通过在变碳酸血症和等碳酸血症条件下,让鸟类吸入的氧气逐步减少,比较了该物种与低海拔水禽的呼吸控制情况。在严重的环境性(变碳酸血症)缺氧(吸入5%的氧气)时,斑头雁的呼吸量比灰雁和北京鸭都要多得多。这完全是由于对缺氧的潮气量反应增强,这会进一步改善平行支气管(有效)通气。因此,血液中的氧气含量和动脉血氧分压得到了显著改善。由于在吸入5%氧气时,不同物种之间的空气对流需求相似,所以是潮气量反应增强(而非通气总量本身)改善了斑头雁的氧气含量。其他观察结果表明,斑头雁在缺氧时代谢抑制程度低于低海拔鸟类,并且可能能够产生更高的吸气气流。在对等碳酸血症缺氧的通气敏感性、缺氧引起的血液二氧化碳张力或pH值变化以及高碳酸血症通气敏感性方面,不同物种之间没有差异。总体而言,我们的结果表明,斑头雁呼吸控制系统的进化变化增强了血液中的氧气含量,可能有助于该物种具备非凡的高飞能力。