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共生进化信号在跨生态尺度的传粉相互作用中是可检测的。

Cophylogenetic signal is detectable in pollination interactions across ecological scales.

机构信息

Center for Integrative Ecology, School of Biological Sciences, University of Canterbury, Private Bag 4800, Christchurch, New Zealand.

Department of Ecology and Evolutionary Biology, Princeton University, 106A Guyot Hall, Princeton, New Jersey, 08540, USA.

出版信息

Ecology. 2017 Oct;98(10):2640-2652. doi: 10.1002/ecy.1955. Epub 2017 Aug 24.

Abstract

That evolutionary history can influence the way that species interact is a basic tenet of evolutionary ecology. However, when the role of evolution in determining ecological interactions is investigated, focus typically centers on just one side of the interaction. A cophylogenetic signal, the congruence of evolutionary history across both sides of an ecological interaction, extends these previous explorations and provides a more complete picture of how evolutionary patterns influence the way species interact. To date, cophylogenetic signal has most typically been studied in interactions that occur between fine taxonomic clades that show high intimacy. In this study, we took an alternative approach and made an exhaustive assessment of cophylogeny in pollination interactions. To do so, we assessed the strength of cophylogenetic signal at four distinct scales of pollination interaction: (1) across plant-pollinator associations globally, (2) in local pollination communities, (3) within the modular structure of those communities, and (4) in individual modules. We did so using a globally distributed dataset comprised of 54 pollination networks, over 4000 species, and over 12,000 interactions. Within these data, we detected cophylogenetic signal at all four scales. Cophylogenetic signal was found at the level of plant-pollinator interactions on a global scale and in the majority of pollination communities. At the scale defined by the modular structure within those communities, however, we observed a much weaker cophylogenetic signal. Cophylogenetic signal was detectable in a significant proportion of individual modules and most typically when within-module phylogenetic diversity was low. In sum, the detection of cophylogenetic signal in pollination interactions across scales provides a new dimension to the story of how past evolution shapes extant pollinator-angiosperm interactions.

摘要

进化历史可以影响物种之间的相互作用方式,这是进化生态学的一个基本原理。然而,当研究进化在决定生态相互作用中的作用时,焦点通常集中在相互作用的一方。共进化信号,即生态相互作用双方进化历史的一致性,扩展了这些先前的探索,并更全面地描述了进化模式如何影响物种相互作用的方式。迄今为止,共进化信号最典型地应用于发生在具有高度亲密性的精细分类群之间的相互作用中。在这项研究中,我们采取了一种替代方法,对授粉相互作用中的共进化进行了详尽的评估。为此,我们在四个不同的授粉相互作用尺度上评估了共进化信号的强度:(1)全球范围内的植物-传粉者关联,(2)局部授粉群落,(3)这些群落的模块化结构内,以及(4)单个模块。我们使用了一个由全球分布的数据集来完成这项工作,该数据集包括 54 个授粉网络,超过 4000 个物种和超过 12000 个相互作用。在这些数据中,我们在所有四个尺度上都检测到了共进化信号。在全球范围内的植物-传粉者相互作用和大多数授粉群落中都发现了共进化信号。然而,在由这些群落中的模块化结构定义的尺度上,我们观察到的共进化信号要弱得多。在相当一部分单个模块中可以检测到共进化信号,并且最典型的情况是模块内的系统发育多样性较低时。总之,在跨尺度的授粉相互作用中检测到共进化信号,为过去的进化如何塑造现存的传粉者-被子植物相互作用提供了一个新的视角。

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