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年降水量预测了新热带地区蝙蝠-果实相互作用网络中的系统发育信号。

Annual precipitation predicts the phylogenetic signal in bat-fruit interaction networks across the Neotropics.

机构信息

Red de Ecoetología, Instituto de Ecología A.C., Xalapa, CP 91073, Veracruz, Mexico.

Facultad de Ciencias Biológicas y Agropecuarias, Universidad Veracruzana, Córdoba, CP 94500, Veracruz, Mexico.

出版信息

Biol Lett. 2021 Dec;17(12):20210478. doi: 10.1098/rsbl.2021.0478. Epub 2021 Dec 1.

Abstract

Closely related species tend to be more similar than randomly selected species from the same phylogenetic tree. This pattern, known as a phylogenetic signal, has been extensively studied for intrinsic (e.g. morphology), as well as extrinsic (e.g. climatic preferences), properties but less so for ecological interactions. Phylogenetic signals of species interactions (i.e. resource use) can vary across time and space, but the causes behind such variations across broader spatial extents remain elusive. Here, we evaluated how current and historical climates influence phylogenetic signals of bat-fruit interaction networks across the Neotropics. We performed a model selection relating the phylogenetic signals of each trophic level (bats and plants) with a set of current and historical climatic factors deemed ecologically important in shaping biotic interactions. Bat and plant phylogenetic signals in bat-fruit interaction networks varied little with climatic factors, although bat phylogenetic signals positively covaried with annual precipitation. These findings indicated that water availability could increase resource availability, favouring higher niche partitioning of trophic resources among bat species and hence bat phylogenetic signals across bat-fruit interaction networks. Overall, our study advances our understanding of the spatial dynamics of bat-fruit interactions by highlighting the association of current climatic factors with phylogenetic patterns of biotic interactions.

摘要

密切相关的物种往往比从同一系统发育树上随机选择的物种更相似。这种模式被称为系统发育信号,已经广泛研究了内在(例如形态)和外在(例如气候偏好)特性,但对生态相互作用的研究较少。物种相互作用(例如资源利用)的系统发育信号会随时间和空间而变化,但在更广泛的空间范围内导致这种变化的原因仍不清楚。在这里,我们评估了当前和历史气候如何影响新热带地区蝙蝠-果实相互作用网络的系统发育信号。我们进行了模型选择,将每个营养级(蝙蝠和植物)的系统发育信号与一组当前和历史气候因素相关联,这些因素被认为在塑造生物相互作用方面具有生态重要性。蝙蝠-果实相互作用网络中蝙蝠和植物的系统发育信号与气候因素变化不大,尽管蝙蝠的系统发育信号与年降水量呈正相关。这些发现表明,水分可用性可以增加资源可用性,有利于不同蝙蝠物种之间的营养资源的更高生态位分离,从而提高蝙蝠-果实相互作用网络中蝙蝠的系统发育信号。总的来说,我们的研究通过强调当前气候因素与生物相互作用的系统发育模式之间的关联,推进了我们对蝙蝠-果实相互作用空间动态的理解。

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