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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Evolution of the wave: aerodynamic and aposematic functions of butterfly wing motion.
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Evolution of the wave: aerodynamic and aposematic functions of butterfly wing motion.

机译:波的演变:蝴蝶翼运动的气动和惯性功能。

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摘要

Many unpalatable butterfly species use coloration to signal their distastefulness to birds, but motion cues may also be crucial to ward off predatory attacks. In previous research, captive passion-vine butterflies Heliconius mimetic in colour pattern were also mimetic in motion. Here, I investigate whether wing motion changes with the flight demands of different behaviours. If birds select for wing motion as a warning signal, aposematic butterflies should maintain wing motion independently of behavioural context. Members of one mimicry group (Heliconius cydno and Heliconius sapho) beat their wings more slowly and their wing strokes were more asymmetric than their sister-species (Heliconius melpomene and Heliconius erato, respectively), which were members of another mimicry group having a quick and steady wing motion. Within mimicry groups, wing beat frequency declined as its role in generating lift also declined in different behavioural contexts. In contrast, asymmetry of the stroke was not associated with wing beat frequency or behavioural context-strong indication that birds process and store the Fourier motion energy of butterfly wings. Although direct evidence that birds respond to subtle differences in butterfly wing motion is lacking, birds appear to generalize a motion pattern as much as they encounter members of a mimicry group in different behavioural contexts.
机译:许多难吃的蝴蝶物种使用着色来表示对鸟类的厌恶,但运动提示对于抵御掠夺性攻击也可能至关重要。在先前的研究中,颜色模式上的圈养西番莲蝴蝶Heliconius也在运动中模仿。在这里,我研究机翼运动是否随不同行为的飞行要求而变化。如果鸟类将机翼运动选择为警告信号,则无神蝶应保持机翼运动独立于行为环境。一个模仿团体(Heliconius cydno和Heliconius sapho)的成员较慢地挥动翅膀,并且其翅膀的笔触比其姊妹物种(分别为Heliconius melpomene和Heliconius erato)的不对称性更高,后者是另一个模仿团体的成员,具有快速且稳定的机翼运动。在模仿人群中,机翼拍打频率下降,因为其在不同行为情况下产生升力的作用也下降。相反,中风的不对称性与机翼的跳动频率或行为背景无关,后者表明鸟类处理并存储了蝴蝶机翼的傅立叶运动能。尽管缺少直接的证据表明鸟类对蝴蝶翅膀运动的细微差别做出反应,但是鸟类似乎在不同的行为情境中,就像遇到模仿组成员一样,概括了运动模式。

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