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首页> 外文期刊>IBIS >Temporary flightlessness in pre-laying Common Eiders Somateria mollissima: are females constrained by excessive wing-loading or by minimal flight muscle ratio?
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Temporary flightlessness in pre-laying Common Eiders Somateria mollissima: are females constrained by excessive wing-loading or by minimal flight muscle ratio?

机译:预先铺设的常见绒鸭暂时失飞软体动物:雌性是否受到过多的机翼负荷或最小的飞行肌肉比率的限制?

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摘要

Large body size, small wings and relatively low flight muscle mass are general attributes of flightlessness in birds, but a general analysis is lacking when considering these factors simultaneously. Common Eiders Somateria mollissima are large sea ducks characterized by short, pointed wings of low surface area. Because females fast throughout incubation, they need to accumulate large body reserves prior to laying. During this pre-laying period, many females cannot take off, and dive when approached under still-air conditions, whereas males take off readily when disturbed. In this paper, we examine how pre-laying female Common Eiders fit the maximum wing-loading ratio of Meunier, the marginal flight muscle ratio (FMR) of Marden and predictions of a general model of take-off performance (also by Marden). Wing morphology was recorded and flight muscles were dissected from specimens collected during the pre-laying period near one breeding colony. In addition, take-off ability, as observed during collection, was compared with the proposed thresholds for flightlessness and outputs from the general model of take-off performance. The results indicated that half of the pre-laying females exceeded the wing-loading ratio of Meunier, although all females had values above 0.160, the flight muscle ratio below which take-off would be impossible. We suggest that wing-loading and flight muscle ratio interact in Eiders, with higher FMR compensating for excessive wing-loading. Nevertheless, the model of take-off performance predicted, with reasonable accuracy, the behavioural observations under still-air conditions. Indeed, females that were predicted to be temporarily flightless could produce a specific lift of 8.8 N/kg on average (less than the 9.8 N/kg required to overcome gravity). In contrast, the average specific lift predicted for males capable of flight was estimated to be 11.4 N/kg. These results agree with our observations that female Common Eiders are at the limit of flight capability in vertebrates.
机译:较大的体型,较小的翅膀和相对较低的飞行肌肉质量是鸟类无法飞行的一般属性,但同时考虑这些因素时,缺乏通用的分析。常见的绒鸭Somateria mollissima是大型海鸭,其特征是具有短而尖的,低表面积的翅膀。由于雌性在整个孵化过程中速度很快,因此它们需要在产蛋之前积累大量的身体储备。在预铺设期间,许多雌鸟无法起飞,并且在静止空气条件下接近时会潜水,而雄蜂在受到干扰时很容易起飞。在本文中,我们研究了预铺设的雌性常见绒毛如何适应Meunier的最大机翼负荷率,Marden的边缘飞行肌肉率(FMR)以及起飞性能的一般模型的预测(也由Marden提出)。记录翅膀的形态,并在一个繁殖种群附近的预产期从采集的标本中解剖出飞行肌肉。此外,将收集期间观察到的起飞能力与拟议的失航阈值和通用起飞性能模型的输出进行了比较。结果表明,尽管所有雌性的产蛋率均高于0.160,但一半的预产雌性都超过了穆尼尔(Meunier)的机翼负荷比,但飞行力比不能低于该值。我们建议机翼载荷中的机翼载荷和飞行肌肉比率相互影响,较高的FMR可以补偿机翼载荷过多。尽管如此,起飞性能模型仍以合理的准确性预测了在静止空气条件下的行为观察。确实,据预测暂时无法飞行的雌性平均产生的比重为8.8 N / kg(低于克服重力所需的9.8 N / kg)。相比之下,预计能够飞行的雄性的平均比重估计为11.4 N / kg。这些结果与我们的观察结果一致,即雌性普通绒毛处于脊椎动物飞行能力的极限。

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