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Exotic Plant Infestation Is Associated with Decreased Modularity and Increased Numbers of Connectors in Mixed-Grass Prairie Pollination Networks

机译:外来植物侵染与混合草草原授粉网络中模块化程度的降低和连接器数量的增加有关

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摘要

The majority of pollinating insects are generalists whose lifetimes overlap flowering periods of many potentially suitable plant species. Such generality is instrumental in allowing exotic plant species to invade pollination networks. The particulars of how existing networks change in response to an invasive plant over the course of its phenology are not well characterized, but may shed light on the probability of long-term effects on plant-pollinator interactions and the stability of network structure. Here we describe changes in network topology and modular structure of infested and non-infested networks during the flowering season of the generalist non-native flowering plant, Cirsium arvense in mixed-grass prairie at Badlands National Park, South Dakota, USA. Objectives were to compare network-level effects of infestation as they propagate over the season in infested and non-infested (with respect to C. arvense) networks. We characterized plant-pollinator networks on 5 non-infested and 7 infested 1-ha plots during 4 sample periods that collectively covered the length of C. arvense flowering period. Two other abundantly-flowering invasive plants were present during this time: Melilotus officinalis had highly variable floral abundance in both C. arvense-infested and non-infested plots and Convolvulus arvensis, which occurred almost exclusively in infested plots and peaked early in the season. Modularity, including roles of individual species, and network topology were assessed for each sample period as well as in pooled infested and non-infested networks. Differences in modularity and network metrics between infested and non-infested networks were limited to the third and fourth sample periods, during flower senescence of C. arvense and the other invasive species; generality of pollinators rose concurrently, suggesting rewiring of the network and a lag effect of earlier floral abundance. Modularity was lower and number of connectors higher in infested networks, whether they were assessed in individual sample periods or pooled into infested and non-infested networks over the entire blooming period of C. arvense. Connectors typically did not reside within the same modules as C. arvense, suggesting that effects of the other invasive plants may also influence the modularity results, and that effects of infestation extend to co-flowering native plants. We conclude that the presence of abundantly flowering invasive species is associated with greater network stability due to decreased modularity, but whether this is advantageous for the associated native plant-pollinator communities depends on the nature of perturbations they experience.
机译:大多数授粉昆虫是通才,其寿命与许多潜在合适植物的开花期重叠。这种普遍性有助于使外来植物物种入侵授粉网络。现有网络如何在其物候变化过程中响应入侵植物而发生变化的细节尚未得到很好的描述,但可能揭示了对植物-授粉媒介相互作用长期影响的可能性以及网络结构的稳定性。在这里,我们描述了在美国南达科他州Badlands国家公园的杂草大草原上,由普通非本地开花植物Cirsium arvense开花的季节中,受侵染和未受侵染的网络的网络拓扑结构和模块结构的变化。目的是比较当侵染和非侵染(就C. arvense)网络在整个季节传播时,侵染的网络级影响。我们在5个未受侵染和7个受侵害的1公顷样地上的植物传粉媒介网络表征了4个采样期间,这些区域共同覆盖了C. arvense开花期的长度。在此期间,还出现了另外两种开花程度很高的外来入侵植物:ilo草(Colillotus officinalis)在被侵染衣藻和未被侵染的田间以及空心菜旋花中均具有高度可变的花丰度,而旋叶空心菜几乎只在被侵染的田间发生并在季节初达到高峰。在每个采样期间以及在受感染和未受感染的网络中,评估模块性(包括单个物种的作用)和网络拓扑。受侵染和未侵染的网络之间模块性和网络指标的差异仅限于第三个和第四个采样期,即C. arvense和其他入侵物种的花衰老过程。传粉媒介的普遍性同时上升,表明该网络的重新布线和较早的花丰度的滞后效应。感染网络中的模块性较低,连接器的数量较高,无论它们是在单个采样期内进行评估的,还是在整个C. arvense开花时期内合并到受感染和未受感染的网络中。连接器通常不存在于与拟南芥相同的模块中,这表明其他入侵植物的影响也可能影响模块化结果,侵染的影响扩展到共同开花的天然植物。我们得出的结论是,由于降低了模块性,大量开花的入侵物种与更高的网络稳定性相关联,但是这是否对相关的本地植物授粉媒介群落有利,取决于他们所经历的干扰的性质。

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