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首页> 外文期刊>The Journal of Experimental Biology >Bee and floral traits affect the characteristics of the vibrations experienced by flowers during buzz pollination
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Bee and floral traits affect the characteristics of the vibrations experienced by flowers during buzz pollination

机译:蜜蜂和花卉特征影响嗡嗡声授粉期间花卉所经历的振动特征

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摘要

During buzz pollination, bees use their indirect flight muscles to produce vibrations that are transmitted to the flowers and result in pollen release. Although buzz pollination has been known for &100 years, we are still in the early stages of understanding how bee and floral characteristics affect the production and transmission of floral vibrations. Here, we analysed floral vibrations produced by four closely related bumblebee taxa (Bombus spp.) on two buzz-pollinated plants species (Solanum spp.). We measured floral vibrations transmitted to the flower to establish the extent to which the mechanical properties of floral vibrations depend on bee and plant characteristics. By comparing four bee taxa visiting the same plant species, we found that peak acceleration, root mean-squared acceleration (RMS) and frequency vary between bee taxa, but that neither bee size (intertegular distance) nor flower biomass (dry mass) affects peak acceleration, RMS or frequency. A comparison of floral vibrations of two bee taxa visiting flowers of two plant species showed that, while bee species affects peak acceleration, RMS and frequency, plant species only affects acceleration ( peak acceleration and RMS), not frequency. When accounting for differences in the transmission of vibrations across the two types of flower, using a species-specific 'coupling factor', we found that RMS acceleration and peak displacement do not differ between plant species. This suggests that bees produce the same initial acceleration in different plants but that transmission of these vibrations through the flower is affected by floral characteristics.
机译:在嗡嗡声中,蜜蜂使用其间接飞行肌肉来产生传递给花的振动并导致花粉释放。虽然Buzz授粉是& 100年来,我们仍然处于了解Bee和花卉特性如何影响花卉振动的生产和传播的早期阶段。在这里,我们分析了四个嗡嗡声授粉的四个嗡嗡声植物(Solanum SPP)的四个密切相关的大黄蜂分类群(Bombus SPP)产生的花卉振动。我们测量传递到花的花卉振动,以确定花卉振动的机械性能取决于蜜蜂和植物特征。通过比较四个蜜蜂出租动物访问同一植物物种,我们发现峰加速度,根均匀平方加速度(RMS)和频率在蜜蜂分类群之间变化,但既不是养蜂尺寸(层间距离)也不会影响峰值(干肿块)加速,rms或频率。两种植物物种的两只蜜蜂分类赛的花卉振动的比较表明,蜂蜜种影响峰值加速度,rms和频率,植物物种仅影响加速度(峰值加速度和rms),而不是频率。当算用于两种类型的花振动的差异时,使用特定于特异性的“耦合因子”,我们发现植物物种之间的RMS加速度和峰位不差异。这表明蜜蜂在不同的植物中产生相同的初始加速,但通过花的这些振动传递受花香特性的影响。

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