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Fluid Dynamics of Hydrophilous Pollination in Ruppia (widgeon grass)

机译:Ruppia中亲水授粉的流体动力学(Widgeon Grass)

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The aim of this work is to understand the physics underlying the mechanisms of two-dimensional aquatic pollen dispersal known as hydrophily. We observed two mechanisms by which the pollen released from male inflorescences of Ruppia is adsorbed on a water surface. Adsorbed pollen masses then combined under the action of capillary forces to form pollen rafts. This increases the probability of pollination since the capillary force on a pollen raft toward a stigma positioned at the water surface is much larger than on a single pollen grain.
机译:这项工作的目的是了解所谓的高级水生花粉分散机制的物理学。我们观察到两种机制,其中从Ruppia的雄性花序释放的花粉吸附在水面上。然后在毛细管力的作用下合并吸附的花粉质量以形成花粉筏。这增加了授粉的概率,因为花粉筏上的毛细管朝向位于水表面的柱头上的毛细管力远大于单个花粉晶粒。

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