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传粉蜂通过周期性的啃咬将胸部的振动传递给花朵。

Buzz-pollinating bees deliver thoracic vibrations to flowers through periodic biting.

机构信息

Department of Ecology and Genetics, Uppsala University, Evolutionary Biology Centre, Norbyvägen 18 D, 752 36 Uppsala, Sweden.

Department of Electrical and Computer Engineering, University of Massachusetts, Lowell, MA 01854, USA.

出版信息

Curr Biol. 2024 Sep 23;34(18):4104-4113.e3. doi: 10.1016/j.cub.2024.07.044. Epub 2024 Aug 16.

Abstract

Pollinator behavior is vital to plant-pollinator interactions, affecting the acquisition of floral rewards, patterns of pollen transfer, and plant reproductive success. During buzz pollination, bees produce vibrations with their indirect flight muscles to extract pollen from tube-like flowers. Vibrations can be transmitted to the flower via the mandibles, abdomen, legs, or thorax directly. Vibration amplitude at the flower determines the rate of pollen release and should vary with the coupling of bee and flower. This coupling often occurs through anther biting, but no studies have quantified how biting affects flower vibration. Here, we used high-speed filmography to investigate how flower vibration amplitude changes during biting in Bombus terrestris visiting two species of buzz-pollinated flowering plants: Solanum dulcamara and Solanum rostratum (Solanaceae). We found that floral buzzing drives head vibrations up to 3 times greater than those of the thorax, which doubles the vibration amplitude of the anther during biting compared with indirect vibration transmission when not biting. However, the efficiency of this vibration transmission depends on the angle at which the bee bites the anther. Variation in transmission mechanisms, combined with the diversity of vibrations across bee species, yields a rich assortment of potential strategies that bees could employ to access rewards from buzz-pollinated flowers.

摘要

传粉者行为对于植物-传粉者相互作用至关重要,影响着花的奖赏的获取、花粉转移的模式以及植物的繁殖成功率。在嗡嗡传粉过程中,蜜蜂通过间接飞行肌肉产生振动,以从管状花朵中提取花粉。振动可以通过口器、腹部、腿部或胸部直接传递到花朵上。花朵上的振动幅度决定了花粉释放的速度,并且应该随着蜜蜂和花朵的耦合而变化。这种耦合通常通过花药咬合并发生,但尚未有研究量化咬合并对花振动的影响。在这里,我们使用高速摄影来研究在访问两种嗡嗡传粉开花植物(茄科的 Solanum dulcamara 和 Solanum rostratum)时,Bombus terrestris 咬花药期间花振动幅度如何变化。我们发现,花的嗡嗡声会导致头部振动比胸部振动大 3 倍,与不咬花药时的间接振动传递相比,在咬花药时,花药的振动幅度增加了一倍。然而,这种振动传递的效率取决于蜜蜂咬花药的角度。不同的传力机制,加上不同的蜜蜂种类的振动,产生了一系列蜜蜂可能用来从嗡嗡传粉花中获取奖赏的潜在策略。

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