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Insect-Flower Interaction Network Structure Is Resilient to a Temporary Pulse of Floral Resources from Invasive Rhododendron ponticum

机译:昆虫-花相互作用网络结构对入侵杜鹃杜鹃花资源的临时脉冲具有弹性。

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摘要

Invasive alien plants can compete with native plants for resources, and may ultimately decrease native plant diversity and/or abundance in invaded sites. This could have consequences for native mutualistic interactions, such as pollination. Although invasive plants often become highly connected in plant-pollinator interaction networks, in temperate climates they usually only flower for part of the season. Unless sufficient alternative plants flower outside this period, whole-season floral resources may be reduced by invasion. We hypothesized that the cessation of flowering of a dominant invasive plant would lead to dramatic, seasonal compositional changes in plant-pollinator communities, and subsequent changes in network structure. We investigated variation in floral resources, flower-visiting insect communities, and interaction networks during and after the flowering of invasive Rhododendron ponticum in four invaded Irish woodland sites. Floral resources decreased significantly after R. ponticum flowering, but the magnitude of the decrease varied among sites. Neither insect abundance nor richness varied between the two periods (during and after R. ponticum flowering), yet insect community composition was distinct, mostly due to a significant reduction in Bombus abundance after flowering. During flowering R. ponticum was frequently visited by Bombus; after flowering, these highly mobile pollinators presumably left to find alternative floral resources. Despite compositional changes, however, network structural properties remained stable after R. ponticum flowering ceased: generality increased, but quantitative connectance, interaction evenness, vulnerability, H’2 and network size did not change. This is likely because after R. ponticum flowering, two to three alternative plant species became prominent in networks and insects increased their diet breadth, as indicated by the increase in network-level generality. We conclude that network structure is robust to seasonal changes in floral abundance at sites invaded by alien, mass-flowering plant species, as long as alternative floral resources remain throughout the season to support the flower-visiting community.
机译:外来入侵植物可能会与本​​地植物争夺资源,并可能最终降低本地植物的多样性和/或入侵地区的丰度。这可能会对本地的相互影响产生影响,例如授粉。尽管外来入侵植物通常在植物与授粉媒介的相互作用网络中联系紧密,但在温带气候下,它们通常只在部分季节开花。除非在此期间以外开花足够的替代植物,否则入侵可能会减少整个季节的花卉资源。我们假设停止入侵性入侵植物的开花将导致植物授粉媒介群落的急剧的季节性组成变化,以及随后的网络结构变化。我们调查了入侵的爱尔兰林地中入侵杜鹃花开花期间和之后的花卉资源,访花昆虫群落以及相互作用网络中的花卉资源变化。 ponticum开花后,花卉资源显着减少,但减少的幅度因部位而异。在这两个时期(R. ponticum开花期间和之后),昆虫的丰度和丰度都没有变化,但是昆虫群落的组成却是不同的,这主要是由于开花后Bombus的丰度大大降低了。在开花期间,熊蜂经常拜访庞氏古猿;开花后,这些高度易变的传粉媒介可能会离开寻找其他花卉资源。尽管成分发生了变化,但是在ponticum开花停止后,网络结构特性仍然保持稳定:普遍性增加,但是定量连接,交互均匀性,脆弱性,H'2和网络大小没有变化。这可能是因为在ponticum开花后,网络中的两到三种替代植物物种变得很显着,并且昆虫增加了它们的饮食宽度,这在网络水平的普遍性上有所提高。我们得出的结论是,只要在整个季节中仍保留其他花卉资源来支持访花社区,则网络结构对于外来,大量开花植物物种入侵的地点的花卉丰度的季节性变化具有鲁棒性。

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