首页> 外文期刊>The Journal of Experimental Biology >Floral vibrations by buzz-pollinating bees achieve higher frequency, velocity and acceleration than flight and defence vibrations
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Floral vibrations by buzz-pollinating bees achieve higher frequency, velocity and acceleration than flight and defence vibrations

机译:Buzz授粉蜜蜂花卉振动比飞行和防御振动实现更高的频率,速度和加速度

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摘要

Vibrations play an important role in insect behaviour. In bees, vibrations are used in a variety of contexts including communication, as a warning signal to deter predators and during pollen foraging. However, little is known about how the biomechanical properties of bee vibrations vary across multiple behaviours within a species. In this study, we compared the properties of vibrations produced by Bombus terrestris audax (Hymenoptera: Apidae) workers in three contexts: during flight, during defensive buzzing, and in floral vibrations produced during pollen foraging on two buzz-pollinated plants (Solanum, Solanaceae). Using laser vibrometry, we were able to obtain contactless measures of both the frequency and amplitude of the thoracic vibrations of bees across the three behaviours. Despite all three types of vibrations being produced by the same power flight muscles, we found clear differences in the mechanical properties of the vibrations produced in different contexts. Both floral and defensive buzzes had higher frequency and amplitude velocity, acceleration and displacement than the vibrations produced during flight. Floral vibrations had the highest frequency, amplitude velocity and acceleration of all the behaviours studied. Vibration amplitude, and in particular acceleration, of floral vibrations has been suggested as the key property for removing pollen from buzz-pollinated anthers. By increasing frequency and amplitude velocity and acceleration of their vibrations during vibratory pollen collection, foraging bees may be able to maximise pollen removal from flowers, although their foraging decisions are likely to be influenced by the presumably high cost of producing floral vibrations.
机译:振动在昆虫行为中发挥着重要作用。在蜜蜂中,振动用于包括通信的各种上下文,作为阻止捕食者和花粉觅食期间的警告信号。然而,关于如何在物种内的多种行为中变化的生物力学性质如何众所周知。在这项研究中,我们将轰炸机瘤(Hymenoptera:Apidae)工人产生的振动性质进行了三种情况:在飞行期间,在防御性嗡嗡声中,在两个嗡嗡声植物(Solanum,Solanaceae)的花粉觅食期间产生的花卉振动。 )。使用激光振动器,我们能够在三种行为中获得胸腔振动的频率和幅度的非接触式测量。尽管采用相同的动力飞行肌肉产生了所有三种类型的振动,但我们发现在不同背景下产生的振动的机械性能下发现了明显的差异。花卉和防御性嗡嗡声都具有比飞行期间产生的振动更高的频率和幅度速度,加速和位移。花卉振动具有所研究的所有行为的频率最高,幅度速度和加速度。已经提出了振动幅度,特别是加速,作为从嗡嗡声的花盆中除去花粉的关键性质。通过在振动花粉收集期间增加频率和振幅速度和加速度,觅食蜜蜂可能能够最大化从花的花粉去除,尽管它们的觅食决策可能受到产生花卉振动的最高成本的影响。

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