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首页> 外文期刊>Ecology and Evolution >Does body size predict the buzz‐pollination frequencies used by bees?
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Does body size predict the buzz‐pollination frequencies used by bees?

机译:体型是否可以预测蜜蜂使用的嗡嗡声授粉频率?

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Body size is an important trait linking pollinators and plants. Morphological matching between pollinators and plants is thought to reinforce pollinator fidelity, as the correct fit ensures that both parties benefit from the interaction. We investigated the influence of body size in a specialized pollination system (buzz‐pollination) where bees vibrate flowers to release pollen concealed within poricidal stamens. Specifically, we explored how body size influences the frequency of buzz‐pollination vibrations. Body size is expected to affect frequency as a result of the physical constraints it places on the indirect flight muscles that control the production of floral vibrations. Larger insects beat their wings less rapidly than smaller‐bodied insects when flying, but whether similar scaling relationships exist with floral vibrations has not been widely explored. This is important because the amount of pollen ejected is determined by the frequency of the vibration and the displacement of a bee's thorax. We conducted a field study in three ecogeographic regions (alpine, desert, grassland) and recorded flight and floral vibrations from freely foraging bees from 27 species across four families. We found that floral vibration frequencies were significantly higher than flight frequencies, but never exceeded 400?Hz. Also, only flight frequencies were negatively correlated with body size. As a bee's size increased, its buzz ratio (floral frequency/flight frequency) increased such that only the largest bees were capable of generating floral vibration frequencies that exceeded double that of their flight vibrations. These results indicate size affects the capacity of bees to raise floral vibration frequencies substantially above flight frequencies. This may put smaller bees at a competitive disadvantage because even at the maximum floral vibration frequency of 400?Hz, their inability to achieve comparable thoracic displacements as larger bees would result in generating vibrations with lower amplitudes, and thus less total pollen ejected for the same foraging effort.
机译:体型是连接授粉媒介和植物的重要特征。传粉媒介与植物之间的形态匹配被认为可以增强传粉媒介的保真度,因为正确的配合可以确保双方都受益于相互作用。我们在专门的授粉系统(蜂鸣授粉)中调查了体型的影响,蜜蜂在蜂鸣下振动花朵释放出隐藏在杀虫剂雄蕊中的花粉。具体来说,我们探索了身体大小如何影响蜂鸣花授粉振动的频率。由于身体大小会限制在间接飞行的肌肉上,从而控制频率,而间接飞行的肌肉会控制花朵振动的产生,因此身体大小会受到影响。较大的昆虫在飞行时拍打翅膀的速度不及较小的昆虫快,但尚未广泛探讨是否存在与花振动有关的相似缩放关系。这很重要,因为所喷出的花粉量取决于振动频率和蜜蜂胸部的位移。我们在三个生态地理区域(高山,沙漠,草原)进行了实地研究,并记录了来自四个科的27种物种的自由觅食蜜蜂的飞行和花朵振动。我们发现花的振动频率显着高于飞行频率,但从未超过400?Hz。同样,只有飞行频率与身体大小负相关。随着蜜蜂大小的增加,其蜂鸣比率(花频率/飞行频率)也随之增加,因此只有最大的蜜蜂才能够产生超过其飞行振动频率两倍的花振动频率。这些结果表明大小影响蜜蜂提高花卉振动频率实质上高于飞行频率的能力。这可能会使较小的蜜蜂处于竞争劣势,因为即使在最大花卉振动频率为400?Hz的情况下,它们也无法实现可比的胸部位移,因为较大的蜜蜂会产生较低振幅的振动,因此在相同频率下射出的总花粉较少觅食的努力。

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