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尺度、传粉生态位和花的吸引力对密度依赖型植物-传粉者相互作用的相互影响。

The interplay between scale, pollination niche and floral attractiveness on density-dependent plant-pollinator interactions.

作者信息

Ye Zhong-Ming, Jin Xiao-Fang, He Yong-Deng, Cao Yu, Zou Yi, Wang Qing-Feng, Traveset Anna, Bergamo Pedro J, Yang Chun-Feng

机构信息

CAS Key Laboratory of Aquatic Botany and Watershed Ecology, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, 430074, China.

Center of Conservation Biology, Core Botanical Gardens, Chinese Academy of Sciences, Wuhan, 430074, China.

出版信息

Oecologia. 2023 Oct;203(1-2):193-204. doi: 10.1007/s00442-023-05461-3. Epub 2023 Oct 12.

Abstract

Pollinators mediate interspecific and intraspecific plant-plant indirect interactions (competition vs. facilitation) via density-dependent processes, potentially shaping the dynamics of plant communities. However, it is still unclear which ecological drivers regulate density-dependent patterns, including scale, pollination niches (i.e., the main pollinator functional group) and floral attractiveness to pollinators. In this study, we conducted three-year field observations in Hengduan Mountains of southwest China. By gathering data for more than 100 animal-pollinated plant species, we quantified the effect (positive vs. negative) of conspecific and heterospecific flower density on pollination at two scales: plot-level (4 m) and site-level (100-5000 m). Then, we investigated how pollination niches and floral attractiveness to pollinators (estimated here as average per-flower visitation rates) modulated density-dependent pollination interactions. Pollinator visitation depended on conspecific and heterospecific flower density, with rare plants subjected to interspecific competition at the plot-level and interspecific facilitation at the site-level. Such interspecific competition at the plot-level was stronger for plants pollinated by diverse insects, while interspecific facilitation at the site-level was stronger for bee-pollinated plants. Moreover, we also found stronger positive conspecific density-dependence for plants with lower floral attractiveness at the site-level, meaning that they become more frequently visited when abundant. Our study indicates that the role of pollination in maintaining rare plants and plant diversity depends on the balance of density-dependent processes in species-rich communities. We show here that such balance is modulated by scale, pollination niches and floral attractiveness to pollinators, indicating the context-dependency of diversity maintenance mechanisms.

摘要

传粉者通过密度依赖过程介导种间和种内植物 - 植物间接相互作用(竞争与促进),这可能会塑造植物群落的动态。然而,目前仍不清楚哪些生态驱动因素调节密度依赖模式,包括尺度、传粉生态位(即主要传粉者功能群)以及花朵对传粉者的吸引力。在本研究中,我们在中国西南部的横断山脉进行了为期三年的实地观察。通过收集100多种动物传粉植物物种的数据,我们在两个尺度上量化了同种和异种花朵密度对传粉的影响(正向与负向):样地水平(4米)和地点水平(100 - 5000米)。然后,我们研究了传粉生态位和花朵对传粉者的吸引力(在此估计为每朵花的平均访花率)如何调节密度依赖的传粉相互作用。传粉者的访花情况取决于同种和异种花朵密度,稀有植物在样地水平受到种间竞争,而在地点水平受到种间促进。对于由多种昆虫传粉的植物,这种样地水平的种间竞争更强,而对于蜜蜂传粉的植物,地点水平的种间促进更强。此外,我们还发现,在地点水平上,花朵吸引力较低的植物具有更强的同种密度正依赖性,这意味着当它们数量丰富时,被访花的频率更高。我们的研究表明,传粉在维持稀有植物和植物多样性中的作用取决于物种丰富群落中密度依赖过程的平衡。我们在此表明,这种平衡受到尺度、传粉生态位和花朵对传粉者吸引力的调节,这表明多样性维持机制具有背景依赖性。

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