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跨组织层次的植物-传粉者群落稳定性:现状、差距与未来。

Stability in plant-pollinator communities across organizational levels: present, gaps, and future.

作者信息

Magrach Ainhoa, Montoya Daniel

机构信息

Basque Centre for Climate Change (BC3), 48940 Leioa, Spain.

Ikerbasque, Basque Foundation for Science, 48011 Bilbao, Spain.

出版信息

AoB Plants. 2024 May 20;16(3):plae026. doi: 10.1093/aobpla/plae026. eCollection 2024 Jun.

Abstract

. The study of ecological stability continues to fill the pages of scientific journals almost seven decades after the first ecologists initiated this line of research. The many advances in this field have focused on understanding the stability of populations, communities or functions within single guilds or trophic levels, with less research conducted across multiple trophic levels and considering the different interactions that relate species to each other. Here, we review the recent literature on the multiple dimensions of ecological stability specifically within plant-pollinator communities. We then focus on one of stability´s dimensions, temporal invariability, and adapt an existing partitioning framework that bridges invariability and synchrony measures across spatial scales and organizational levels to accommodate interactions between plants and their pollinators. Finally, we use this framework to analyse temporal invariability in plant reproductive success, partitioning it on invariability and synchrony components across plant and pollinator populations and communities, as well as their interactions, using a well-resolved dataset that encompasses data for two years. Our review of the literature points to several significant gaps in our current knowledge, with simulation studies clearly overrepresented in the literature as opposed to experimental or empirical approaches. Our quantitative approach to partitioning invariability shows similar patterns of decreasing temporal invariability across increasing organizational levels driven by asynchronous dynamics amongst populations and communities, which overall stabilize ecosystem functioning (plant reproductive success). This study represents a first step towards a better comprehension of temporal invariability in ecosystem functions defined by interactions between species and provides a blueprint for the type of spatially replicated multi-year data that needs to be collected in the future to further our understanding of ecological stability within multi-trophic communities.

摘要

自第一批生态学家开启这一研究领域至今,近七十年过去了,生态稳定性研究仍不断见诸科学期刊。该领域的诸多进展主要集中在理解单个群落或营养级内种群、群落或功能的稳定性,而跨多个营养级、考虑物种间不同相互作用的研究较少。在此,我们回顾近期关于生态稳定性多维度的文献,特别是植物 - 传粉者群落中的生态稳定性。然后,我们聚焦于稳定性的一个维度——时间不变性,并采用一个现有的划分框架,该框架在空间尺度和组织层次上架起了不变性和同步性度量的桥梁,以适应植物与其传粉者之间的相互作用。最后,我们使用这个框架来分析植物繁殖成功率的时间不变性,将其按照植物和传粉者种群及群落的不变性和同步性成分以及它们之间的相互作用进行划分,使用一个涵盖两年数据且分辨率高的数据集。我们对文献的综述指出了当前知识中的几个重大空白,与实验或实证方法相比,模拟研究在文献中明显占比过高。我们划分不变性的定量方法显示,随着种群和群落间异步动态导致组织层次增加,时间不变性呈现出类似的下降模式,总体上稳定了生态系统功能(植物繁殖成功率)。本研究是朝着更好地理解由物种间相互作用定义的生态系统功能中的时间不变性迈出的第一步,并为未来需要收集的空间重复多年数据类型提供了蓝图——此类数据有助于我们进一步理解多营养级群落中的生态稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4771/11151922/cec82327c32c/plae026_fig1.jpg

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