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植物-传粉者组合的稳健性:连接植物相互作用模式与对传粉者丧失的敏感性

The robustness of plant-pollinator assemblages: linking plant interaction patterns and sensitivity to pollinator loss.

作者信息

Astegiano Julia, Massol François, Vidal Mariana Morais, Cheptou Pierre-Olivier, Guimarães Paulo R

机构信息

CEFE UMR 5175, CNRS-Université de Montpellier-Université Paul-Valéry Montpellier-EPHE campus CNRS, Montpellier, France; Departamento de Ecologia, Instituto de Biociências, Universidade de São Paulo, São Paulo, Brazil.

CEFE UMR 5175, CNRS-Université de Montpellier-Université Paul-Valéry Montpellier-EPHE campus CNRS, Montpellier, France; Laboratoire GEPV, CNRS UMR 8198, Université Lille 1, Villeneuve d'Ascq, France.

出版信息

PLoS One. 2015 Feb 3;10(2):e0117243. doi: 10.1371/journal.pone.0117243. eCollection 2015.

Abstract

Most flowering plants depend on pollinators to reproduce. Thus, evaluating the robustness of plant-pollinator assemblages to species loss is a major concern. How species interaction patterns are related to species sensitivity to partner loss may influence the robustness of plant-pollinator assemblages. In plants, both reproductive dependence on pollinators (breeding system) and dispersal ability may modulate plant sensitivity to pollinator loss. For instance, species with strong dependence (e.g. dioecious species) and low dispersal (e.g. seeds dispersed by gravity) may be the most sensitive to pollinator loss. We compared the interaction patterns of plants differing in dependence on pollinators and dispersal ability in a meta-dataset comprising 192 plant species from 13 plant-pollinator networks. In addition, network robustness was compared under different scenarios representing sequences of plant extinctions associated with plant sensitivity to pollinator loss. Species with different dependence on pollinators and dispersal ability showed similar levels of generalization. Although plants with low dispersal ability interacted with more generalized pollinators, low-dispersal plants with strong dependence on pollinators (i.e. the most sensitive to pollinator loss) interacted with more particular sets of pollinators (i.e. shared a low proportion of pollinators with other plants). Only two assemblages showed lower robustness under the scenario considering plant generalization, dependence on pollinators and dispersal ability than under the scenario where extinction sequences only depended on plant generalization (i.e. where higher generalization level was associated with lower probability of extinction). Overall, our results support the idea that species generalization and network topology may be good predictors of assemblage robustness to species loss, independently of plant dispersal ability and breeding system. In contrast, since ecological specialization among partners may increase the probability of disruption of interactions, the fact that the plants most sensitive to pollinator loss interacted with more particular pollinator assemblages suggest that the persistence of these plants and their pollinators might be highly compromised.

摘要

大多数开花植物依靠传粉者进行繁殖。因此,评估植物 - 传粉者组合对物种丧失的稳健性是一个主要关注点。物种相互作用模式与物种对伙伴丧失的敏感性之间的关系可能会影响植物 - 传粉者组合的稳健性。在植物中,对传粉者的生殖依赖性(繁殖系统)和扩散能力都可能调节植物对传粉者丧失的敏感性。例如,依赖性强的物种(如雌雄异株物种)和扩散能力低的物种(如靠重力传播种子的物种)可能对传粉者丧失最为敏感。我们在一个包含来自13个植物 - 传粉者网络的192种植物的元数据集中,比较了在对传粉者和扩散能力的依赖性上存在差异的植物的相互作用模式。此外,还比较了在代表与植物对传粉者丧失的敏感性相关的植物灭绝序列的不同情景下网络的稳健性。对传粉者和扩散能力依赖性不同的物种表现出相似程度的泛化。尽管扩散能力低的植物与更具泛化性的传粉者相互作用,但对传粉者依赖性强的低扩散植物(即对传粉者丧失最敏感的植物)与更特定的传粉者组合相互作用(即与其他植物共享的传粉者比例较低)。在考虑植物泛化、对传粉者的依赖性和扩散能力的情景下,只有两个组合的稳健性低于在灭绝序列仅取决于植物泛化的情景下(即泛化水平越高,灭绝概率越低)。总体而言,我们的结果支持这样一种观点,即物种泛化和网络拓扑结构可能是组合对物种丧失的稳健性的良好预测指标,与植物扩散能力和繁殖系统无关。相比之下,由于伙伴之间的生态特化可能会增加相互作用中断的可能性,对传粉者丧失最敏感的植物与更特定的传粉者组合相互作用这一事实表明,这些植物及其传粉者的持久性可能会受到严重影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3347/4315602/ad5765099c63/pone.0117243.g001.jpg

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