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植物-食果者相互作用的周转率沿植物分布范围的扩展:对自然殖民化过程的影响。

The turnover of plant-frugivore interactions along plant range expansion: consequences for natural colonization processes.

机构信息

Estación Biológica de Doñana, CSIC, Av. Americo Vespucio 26, 41092 Sevilla, Spain.

CONACYT-Centro del Cambio Global y la Sustentabilidad, 86080 Villahermosa, Tabasco, México.

出版信息

Proc Biol Sci. 2023 May 31;290(1999):20222547. doi: 10.1098/rspb.2022.2547. Epub 2023 May 24.

Abstract

Plant-animal mutualisms such as seed dispersal are key interactions for sustaining plant range shifts. It remains elusive whether the organization of interactions with seed dispersers is reconfigured along the expansion landscape template and, if so, whether its effects accelerate or slow colonization. Here we analyse plant-frugivore interactions in a scenario of rapid population expansion of a Mediterranean juniper. We combined network analyses with field surveys, sampling interactions between individual plants and frugivores by DNA-barcoding and phototrapping over two seasons. We assess the role of intrinsic and extrinsic intraspecific variability in shaping interactions and we estimate the individual plant contributions to the seed rain. The whole interaction network was highly structured, with a distinct set of modules including individual plants and frugivore species arranged concordantly along the expansion gradient. The modular configuration was partially shaped by individual neighbourhood context (density and fecundity) and phenotypic traits (cone size). Interaction reconfiguration resulted in a higher and more uneven propagule contribution, with most effective dispersers having a prominent role at the colonization front stand, where a distinct subset of early arriving plants dominated the seed rain. Our study offers new insights into the key role of mutualistic interactions in colonization scenarios by promoting fast plant expansion processes.

摘要

植物与动物的互惠共生关系,如种子传播,是维持植物分布范围转移的关键相互作用。目前仍不清楚与种子传播者的相互作用组织是否沿着扩展景观模板进行重新配置,如果是这样,其影响是加速还是减缓了殖民化进程。在这里,我们分析了地中海刺柏种群快速扩张背景下的植物与食果者的相互作用。我们结合了网络分析和实地调查,通过 DNA 条形码和光陷阱在两个季节中对个体植物和食果者之间的相互作用进行了采样。我们评估了内在和外在种内变异性在塑造相互作用中的作用,并估计了个体植物对种子雨的贡献。整个相互作用网络高度结构化,具有一组独特的模块,包括个体植物和食果者物种,沿着扩展梯度排列一致。模块配置部分由个体的邻域环境(密度和繁殖力)和表型特征(松果大小)塑造。相互作用的重新配置导致更高和更不均匀的传播体贡献,大多数有效的传播者在殖民前沿的站位中起着重要作用,那里的一组早期到达的植物主导着种子雨。我们的研究提供了新的见解,即互惠共生关系在促进快速植物扩张过程中的关键作用,从而促进了殖民化场景的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3494/10206477/e2ebb00c39e5/rspb20222547f01.jpg

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