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The Impact of the Invasive Alien Plant, Impatiens glandulifera, on Pollen Transfer Networks

机译:外来入侵植物凤仙花(Impatiens glandulifera)对花粉转移网络的影响

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摘要

Biological invasions are a threat to the maintenance of ecological processes, including pollination. Plant-flower visitor networks are traditionally used as a surrogated for pollination at the community level, despite they do not represent the pollination process, which takes place at the stigma of plants where pollen grains are deposited. Here we investigated whether the invasion of the alien plant Impatiens glandulifera (Balsaminaceae) affects pollen transfer at the community level. We asked whether more alien pollen is deposited on the stigmas of plants on invaded sites, whether deposition is affected by stigma type (dry, semidry and wet) and whether the invasion of I. glandulifera changes the structure of the resulting pollen transfer networks. We sampled stigmas of plants on 10 sites invaded by I. glandulifera (hereafter, balsam) and 10 non-invaded control sites. All 20 networks had interactions with balsam pollen, although significantly more balsam pollen was found on plants with dry stigmas in invaded areas. Balsam pollen deposition was restricted to a small subset of plant species, which is surprising because pollinators are known to carry high loads of balsam pollen. Balsam invasion did not affect the loading of native pollen, nor did it affect pollen transfer network properties; networks were modular and poorly nested, both of which are likely to be related to the specificity of pollen transfer interactions. Our results indicate that pollination networks become more specialized when moving from the flower visitation to the level of pollen transfer networks. Therefore, caution is needed when inferring pollination from patterns of insect visitation or insect pollen loads as the relationship between these and pollen deposition is not straightforward.
机译:生物入侵对包括授粉在内的生态过程的维持构成威胁。传统上,植物花访客网络在社区一级被用作授粉的代名词,尽管它们并不代表授粉过程,该过程发生在沉积花粉粒的植物的柱头上。在这里,我们调查了外来植物凤仙花(Balsaminaceae)的入侵是否会影响社区一级的花粉转移。我们询问是否有更多的外来花粉沉积在入侵部位植物的柱头上,沉积是否受到柱头类型(干,半干和湿)的影响,以及I. glandulifera的入侵是否会改变所得花粉转移网络的结构。我们在I. glandulifera(以下称为香脂)侵袭的10个部位和10个非侵害的对照部位取样了植物的柱头。所有20个网络均与苦瓜花粉发生相互作用,尽管在受侵害地区具有干燥柱头的植物上发现了明显更多的苦瓜花粉。苦瓜花粉的沉积仅限于一小部分植物物种,这是令人惊讶的,因为已知传粉媒介会携带高含量的苦瓜花粉。苦瓜的入侵不会影响天然花粉的负载,也不会影响花粉转移网络的性质。网络是模块化的且嵌套不佳,这两者都可能与花粉转移相互作用的特异性有关。我们的结果表明,从花访到花粉转移网络的水平上,授粉网络变得更加专业。因此,当从昆虫的来访模式或昆虫花粉负荷的模式推断授粉时需要谨慎,因为这些与花粉沉积之间的关系并不直接。

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