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强烈换羽对海雀潜水的影响以及对换羽模式进化的潜在影响。

The effects of intense wing molt on diving in alcids and potential influences on the evolution of molt patterns.

作者信息

Bridge Eli S

机构信息

University of Minnesota Department of Ecology, Evolution, and Behavior, 100 Ecology Building, 1987 Upper Buford Circle, Saint Paul, MN 55108, USA.

出版信息

J Exp Biol. 2004 Aug;207(Pt 17):3003-14. doi: 10.1242/jeb.01116.

Abstract

Large and medium-sized alcids have a very intense wing molt wherein many flight feathers are shed in rapid succession and wing surface area is reduced by as much as 40%. Although these birds are rendered flightless during wing molt, they must still use their wings to propel themselves underwater. A molt-induced loss of wing area could simply reduce wing propulsion such that more muscular work would be required to maintain a given speed. Alternatively, molt could reduce drag on the wings, making a bird more penguin-like and actually enhancing diving ability. I addressed this issue by filming captive common guillemots Uria aalge and tufted puffins Fratercula cirrhata using an array of video cameras to plot the birds' movements in three dimensions. From these coordinate data I calculated swimming velocities, angles of descent and absolute depths. These values allowed me to estimate the forces due to drag and buoyancy that must be counteracted by flapping, which in turn yielded estimates of the amount of work generated during each flap as well as the average power and cost of transport. Within-bird comparisons of diving performance when wings were intact and during several stages of wing molt indicated that molt is associated with more frequent flapping, reduced displacement during the flap cycle, and possibly reduced work per flap. These negative effects on diving may explain why primary and secondary molts were offset in the birds I studied such that the period during which all of the flight feathers are effectively missing is minimized.

摘要

大中型海雀有非常强烈的换羽过程,在此期间许多飞羽会迅速相继脱落,翼表面积减少多达40%。尽管这些鸟类在换羽期间无法飞行,但它们仍必须用翅膀在水下推进自己。换羽导致的翼面积损失可能只是简单地降低了翼的推进力,以至于需要更多的肌肉工作来维持给定的速度。或者,换羽可以减少翅膀上的阻力,使鸟类更像企鹅,实际上增强潜水能力。我通过用一系列摄像机拍摄圈养的普通海鸠乌鸫和角嘴海雀,以绘制鸟类在三维空间中的运动来解决这个问题。从这些坐标数据中,我计算了游泳速度、下降角度和绝对深度。这些值使我能够估计由于阻力和浮力而必须通过拍打来抵消的力,这反过来又得出了每次拍打期间产生的工作量以及平均功率和运输成本的估计值。对翅膀完好时和换羽几个阶段的潜水性能进行的鸟内比较表明,换羽与更频繁的拍打、拍打周期内位移的减少以及每次拍打可能减少的工作量有关。这些对潜水的负面影响可能解释了为什么在我研究的鸟类中初级和次级换羽是错开的,从而使所有飞羽都有效缺失的时期最小化。

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