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Linking species-level network metrics to flower traits and plant fitness

机译:将物种级网络指标链接到花卉特性和植物健身

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Theoretical models indicate that the structure of plant-pollinator networks has important implications for the reproduction and survival of species. However, despite the growing information on the mechanisms underlying such a structure, it is still difficult to predict the functional consequences of species' structural positions in these networks. From the plant perspective, species position and roles in pollination networks might be related to traits describing flower attractiveness, availability and dependence on pollinators. In turn, both network metrics and plant traits might influence plant species fitness. During two field seasons, we collected data from the 23 most abundant plant species in a rich coastal community, to evaluate the association between population and floral traits (floral abundance at population level and flowers per individual, flower shape and size, flowering length, nectar volume, pollinator dependence), species-level network metrics (linkage level, specialization -d '-, weighted closeness centrality, network roles related to modularity) and plant fitness (seeds/flower, seed weight). Flowering length, flower size, flower abundance and pollinator dependence were positively related to greater generalization, as measured by various indices. More abundant species and those with larger flowers showed higher linkage levels (i.e. higher number of pollinator species), whereas longer flowering periods were negatively related to d ' and positively related to closeness centrality and important roles in the network. Likewise, plants species more dependent on pollinators occupied more central positions in the network. Furthermore, centrality in the networks was significantly associated with plant fitness. Specifically, central species in the network produced more and heavier seeds than the others. However, other plant traits, such as flower size and pollinator dependence had additional direct effects on seed production. Synthesis. Our study highlights how population and floral traits define the positions and roles of species structuring the pollination communities. Moreover, the relationships between network metrics and plant reproduction indicate, for the first time, the functional implications of these structural positions at the interspecific level of community assembly.
机译:理论模型表明,植物 - 传毒网络的结构对物种的繁殖和生存具有重要意义。然而,尽管有关于这种结构的基础的机制的信息不断增长,但仍然难以预测这些网络中物种结构位置的功能后果。从工厂的角度来看,授粉网络中的物种位置和角色可能与描述花吸引力,可用性和依赖性的特征有关。反过来,网络指标和植物特征都可能影响植物物种的健身。在两个场地,我们在丰富的沿海社区中收集了23种最丰富的植物物种的数据,以评估人口和花卉特征之间的关联(人口水平花卉,花卉形状和大小,花卉长度,花卉长度,花卉长度体积,粉丝依赖性),物种级网络指标(连杆水平,专业化 - ),加权接近中心,与模块化相关的网络角色)和植物健身(种子/花,种子重)。花卉长度,花大小和花粉依赖性与各种指标测量的呈态度正相关。更丰富的物种和具有较大花的人表现出更高的联系水平(即,较高的花粉剂种类),而较长的开花期与D'呈负相关,并且与网络中的密闭中心和重要作用呈呈呈呈负相关。同样地,植物物种更依赖于传粉机的占据网络中的更多中心位置。此外,网络中的中心性与植物健身有显着相关。具体而言,网络中的中央物种产生的种子比其他种子更多和更重。然而,其他植物特征,如花尺寸和粉碎机依赖性对种子生产具有额外的直接影响。合成。我们的研究突出了人口和花卉特质如何定义物种结构化授粉社区的职位和角色。此外,网络度量与工厂再现之间的关系首次表示这些结构位置在社区组装的间隙中的功能影响。

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