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Changes in plant community structure and decrease in floral resource availability lead to a high temporal beta-diversity of plant-bee interactions

机译:植物群落结构的变化和花卉资源可用性降低导致植物蜜蜂相互作用的高颞β-多样性

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Biological communities are subject to spatiotemporal variations in community structure, i.e., species composition, richness, and abundance. Plant-pollinator interactions are affected by species composition and abundance, so that rapid changes in plant community structure can lead to critical impacts on plant-pollinator interactions at the community level. The extent of these impacts depends on how plants respond to different kinds of stressors, such as the disturbance caused by invading species. In this research, we conducted a before-and-after study to evaluate the potential effects of an invasive fast-growing alien grass species on the structure of a plant-pollinator interaction network. We described the changes in community structure and plant-pollinator interactions over two sampling periods, through the temporal beta-diversity of plant and bee species, plant-bee interactions, and plant functional traits. Our results showed that changes in plant community composition (especially the plants in the network core) and decrease in plant species richness, as well as in floral resources availability impacted plant-pollinator interactions of a grassland community after the growth of a fast-growing alien grass species. These changes were accompanied by a decrease in plant-bee interaction diversity, and a high beta-diversity of species interactions mainly due to interaction rewiring. However, we found no effect on the functional diversity of flowers. In conclusion, our study showed that a short-term change in plant species composition and floral resource abundance impacted plant-bee interactions, which markedly changed network structure and dynamics.
机译:生物群群受到群落结构的时空变化,即物种组成,丰富和丰富。植物 - 调用素相互作用受物种组成和丰度的影响,因此植物群落结构的快速变化可能导致对社区一级的植物传导者相互作用的关键影响。这些影响的程度取决于植物如何应对不同种类的压力源,例如通过入侵物种引起的扰动。在这项研究中,我们进行了一次前后研究,以评估侵入性快速生长的外来草种对植物 - 传导管相互作用网络结构的潜在影响。通过植物和蜜蜂种类,植物蜜蜂相互作用和植物功能性状,描述了两种采样期间群落结构和植物 - 粉丝师相互作用的变化。我们的研究结果表明,植物群落组成(特别是网络核心的植物)的变化和植物物种丰富的降低,以及花卉资源可用性受影响的植物 - 传植物在快速生长外国人的生长后的植物 - 传导士互动草种。这些变化伴随着植物 - 蜂相互作用的减少,并且物种相互作用的高β-多样性主要是由于相互作用重新兴奋。但是,我们发现没有对花的功能多样性的影响。总之,我们的研究表明,植物物种组成和花卉资源丰富的短期变化影响了植物 - 蜂相互作用,这显着改变了网络结构和动态。

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