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雀形目鸟类换羽相关的耗氧量减少。

Moult-related reduction of aerobic scope in passerine birds.

机构信息

School of Biological Sciences, University of Wollongong, Wollongong, 2522, Australia.

Department of Bird Migration, Swiss Ornithological Institute, Sempach, 6204, Switzerland.

出版信息

J Comp Physiol B. 2019 Aug;189(3-4):463-470. doi: 10.1007/s00360-019-01213-z. Epub 2019 Mar 14.

Abstract

It is well established that the nutrient and energy requirements of birds increase substantially during moult, but it is not known if these increased demands affect their aerobic capacity. We quantified the absolute aerobic scope of house and Spanish sparrows, Passer domesticus and P. hispaniolensis, respectively, before and during sequential stages of their moult period. The absolute aerobic scope (AAS) is the difference between maximum metabolic rate (MMR) during peak locomotor activities and minimum resting metabolic rate (RMR), thus representing the amount of aerobic power above that committed to maintenance needs available for other activities. As expected, RMR increased over the moult period by up to 40 and 63% in house and Spanish sparrows, respectively. Surprisingly, the maximum metabolic rates also decreased during moult in both species, declining as much as 25 and 38% compared with pre-moult values of house and Spanish sparrows, respectively. The concurrent changes in RMR and MMR during moult resulted in significant decreases in AAS, being up to 32 and 47% lower than pre-moult levels of house and Spanish sparrows, respectively, during moult stages having substantial feather replacement. We argue that the combination of reduced flight efficiency due to loss of wing feathers and reduced aerobic capacity places moulting birds at greater risk of predation. Such performance constraints likely contribute to most birds temporally separating moult from annual events requiring peak physiological capacity such as breeding and migration.

摘要

众所周知,鸟类在换羽期间的营养和能量需求会大幅增加,但目前尚不清楚这些增加的需求是否会影响它们的有氧能力。我们分别量化了家雀和西班牙麻雀在换羽期间不同阶段的绝对有氧范围。绝对有氧范围(AAS)是在最高运动活动期间的最大代谢率(MMR)与最低静息代谢率(RMR)之间的差异,因此代表了用于维持需要之外的其他活动的有氧能力。正如预期的那样,RMR 在换羽期间增加了 40%至 63%,分别在西班牙麻雀和家雀中。令人惊讶的是,在这两个物种中,最大代谢率在换羽期间也下降了,与家雀和西班牙麻雀的换羽前值相比,分别下降了 25%至 38%。RMR 和 MMR 在换羽期间的同时变化导致 AAS 显著下降,在换羽阶段大量更换羽毛时,AAS 比换羽前的家雀和西班牙麻雀分别低 32%和 47%。我们认为,由于翅膀羽毛的损失导致飞行效率降低以及有氧能力降低,使换羽鸟类更容易受到捕食的威胁。这种性能限制可能导致大多数鸟类在时间上使换羽与需要峰值生理能力的年度事件(如繁殖和迁徙)分开。

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