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植物-传粉者网络中跨空间的模块性、传粉系统及相互作用更替

Modularity, pollination systems, and interaction turnover in plant-pollinator networks across space.

作者信息

Carstensen Daniel W, Sabatino Malena, Morellato Leonor Patricia C

出版信息

Ecology. 2016 May;97(5):1298-306. doi: 10.1890/15-0830.1.

Abstract

Mutualistic interaction networks have been shown to be structurally conserved over space and time while pairwise interactions show high variability. In such networks, modularity is the division of species into compartments, or modules, where species within modules share more interactions with each other than they do with species from other modules. Such a modular structure is common in mutualistic networks and several evolutionary and ecological mechanisms have been proposed as underlying drivers. One prominent explanation is the existence of pollination syndromes where flowers tend to attract certain pollinators as determined by a set of traits. We investigate the modularity of seven community level plant-pollinator networks sampled in rupestrian grasslands, or campos rupestres, in SE Brazil. Defining pollination systems as corresponding groups of flower syndromes and pollinator functional groups, we test the two hypotheses that (1) interacting species from the same pollination system are more often assigned to the same module than interacting species from different pollination systems and; that (2) interactions between species from the same pollination system are more consistent across space than interactions between species from different pollination systems. Specifically we ask (1) whether networks are consistently modular across space; (2) whether interactions among species of the same pollination system occur more often inside modules, compared to interactions among species of different pollination systems, and finally; (3) whether the spatial variation in interaction identity, i.e., spatial interaction rewiring, is affected by trait complementarity among species as indicated by pollination systems. We confirm that networks are consistently modular across space and that interactions within pollination systems principally occur inside modules. Despite a strong tendency, we did not find a significant effect of pollination systems on the spatial consistency of pairwise interactions. These results indicate that the spatial rewiring of interactions could be constrained by pollination systems, resulting in conserved network structures in spite of high variation in pairwise interactions. Our findings suggest a relevant role of pollination systems in structuring plant-pollinator networks and we argue that structural patterns at the sub-network level can help us to fully understand how and why interactions vary across space and time.

摘要

互利共生相互作用网络已被证明在空间和时间上结构保守,而成对相互作用则表现出高度变异性。在这类网络中,模块性是指将物种划分为不同的部分或模块,模块内的物种相互之间的相互作用比它们与其他模块中的物种的相互作用更多。这种模块化结构在互利共生网络中很常见,并且已经提出了几种进化和生态机制作为潜在驱动因素。一个突出的解释是授粉综合征的存在,即花朵倾向于吸引由一组特征决定的特定传粉者。我们研究了在巴西东南部的岩石草原或岩质草原中采样的七个群落水平的植物-传粉者网络的模块性。将授粉系统定义为相应的花综合征组和传粉者功能组,我们检验两个假设:(1)来自同一授粉系统的相互作用物种比来自不同授粉系统的相互作用物种更常被分配到同一模块;以及(2)来自同一授粉系统的物种之间的相互作用在空间上比来自不同授粉系统的物种之间的相互作用更一致。具体来说,我们问:(1)网络在空间上是否始终具有模块化;(2)与不同授粉系统的物种之间的相互作用相比,同一授粉系统的物种之间的相互作用是否更频繁地发生在模块内部,最后;(3)相互作用身份的空间变化,即空间相互作用重新布线,是否受授粉系统所表明的物种间性状互补性的影响。我们证实网络在空间上始终具有模块化,并且授粉系统内的相互作用主要发生在模块内部。尽管有很强的趋势,但我们没有发现授粉系统对成对相互作用的空间一致性有显著影响。这些结果表明,相互作用的空间重新布线可能受到授粉系统的限制,尽管成对相互作用存在高度变异性,但仍导致网络结构保守。我们的研究结果表明授粉系统在构建植物-传粉者网络中具有重要作用,并且我们认为子网络水平的结构模式可以帮助我们全面理解相互作用如何以及为何在空间和时间上变化。

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