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Vertical stratification of plant–pollinator interactions in a temperate grassland

机译:温带草原植物-授粉媒介相互作用的垂直分层

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摘要

Visitation of plants by different pollinators depends on individual plant traits, spatial context, and other factors. A neglected aspect of small-scale variation of plant–pollinator interactions is the role of vertical position of flowers. We conducted a series of experiments to study vertical stratification of plant–pollinator interactions in a dry grassland. We observed flower visitors on cut inflorescences of Centaurea scabiosa and Inula salicina placed at different heights above ground in two types of surrounding vegetation: short and tall. Even at such a small-scale, we detected significant shift in total visitation rate of inflorescences in response to their vertical position. In short vegetation, inflorescences close to the ground were visited more frequently, while in tall vegetation, inflorescences placed higher received more visits. Moreover, we found major differences in the composition of the pollinator community on flowers at different heights. In a second experiment, we measured flower visitation rate in inflorescences of Salvia verticillata of variable height. Total flower visitation rate increased markedly with inflorescence height in this case. Data on seed set of individual plants provide evidence for a corresponding positive pollinator-mediated selection on increased inflorescence height. Overall, our results demonstrate strong vertical stratification of plant–pollinator interactions at the scale of mere decimetres. This may have important ecological as well as evolutionary implications.
机译:不同传粉媒介对植物的造访取决于单个植物的性状,空间背景和其他因素。植物-授粉媒介相互作用的小范围变化的一个被忽略的方面是花的垂直位置的作用。我们进行了一系列实验来研究干旱草地上植物与授粉媒介相互作用的垂直分层。我们在两个类型的周围植被中(矮矮和高大)观察到访客在切花的Centaurea scabiosa和Inula salicina的花序上的高度。即使在如此小的规模下,我们也检测到花序的总访问速度响应于其垂直位置而发生了显着变化。在矮小的植被中,接近地面的花序被更频繁地访问,而在高大的植被中,处于较高位置的花序被更多的访问。此外,我们在不同高度的花朵上发现了传粉媒介群落组成的主要差异。在第二个实验中,我们测量了可变高度的丹参花序中花的访花率。在这种情况下,总花访花率随花序高度显着增加。单个植物种子集的数据为花序高度增加上相应的正传粉媒介介导的选择提供了证据。总体而言,我们的结果表明,植物与授粉媒介相互作用的垂直分层很强,仅为十亿分之一。这可能具有重要的生态和进化意义。

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