首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Body building and concurrent mass loss: flight adaptations in tree sparrows.
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Body building and concurrent mass loss: flight adaptations in tree sparrows.

机译:健身和并发的质量损失:树麻雀的飞行适应。

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摘要

Environmental changes are responsible for the evolution of flexible physiology and the extent of phenotypic plasticity in the regulation of birds' organ size has not been appreciated until recently. Rapid reversible physiological changes during different life-history stages are virtually only known from long-distance migrants, and few studies have focused on less extreme aspects of organ flexibility. During moult, birds suffer from increased wing loading due to wing-area reductions, which may impair flight ability. A previous study found that tree sparrows' escape flight (Passer montanus) is unaffected during moult, suggesting compensatory aptness. We used non-invasive techniques to study physiological adaptations to increased wing loading in tree sparrows. As wing area was reduced during natural moult the ratio of pectoral-muscle size to body mass increased. When moult was completed this ratio decreased. We show experimentally a novel, strategic, organ-flexibility pattern. Unlike the general pattern, where body mass is positively coupled to pectoral-muscle size, tree sparrows responded within 7 days to reductions in wing area by reducing body mass concurrently with an increase in pectoral-muscle size. This rapid flexibility in a non-migratory species probably reflects the paramount importance and long history of flight in birds.
机译:环境的变化是造成柔韧性生理发展的原因,直到最近,人们才意识到表型可塑性在调节禽类器官大小方面的程度。实际上,只有从长途迁徙者才能知道在不同的生活史阶段中快速可逆的生理变化,而且很少有研究集中在器官柔韧性的极端方面。在换羽期间,由于机翼面积的减少,家禽的机翼负荷增加,这可能会损害飞行能力。先前的一项研究发现,树麻雀的逃逸飞行(Passer montanus)在换羽期间不受影响,这表明代偿性适合。我们使用非侵入性技术来研究生理适应以增加麻雀的机翼负荷。随着自然换羽期机翼面积的减少,胸肌尺寸与体重之比增加。当换羽完成时,该比率降低。我们通过实验展示了一种新颖的,战略性的,器官柔韧性模式。与通常的体重与胸肌大小呈正相关的一般模式不同,树麻雀在7天之内通过减小体重并同时增加胸肌大小来响应翼面积的减小。非迁徙物种的这种快速灵活性可能反映了鸟类的至高无上的重要性和悠久的飞行历史。

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