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Quantifying species contributions to ecosystem processes: a global assessment of functional trait and phylogenetic metrics across avian seed-dispersal networks

机译:量化物种对生态系统过程的贡献:通过禽类种子传播网络对功能性状和系统发育指标进行全球评估

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摘要

Quantifying the role of biodiversity in ecosystems not only requires understanding the links between species and the ecological functions and services they provide, but also how these factors relate to measurable indices, such as functional traits and phylogenetic diversity. However, these relationships remain poorly understood, especially for heterotrophic organisms within complex ecological networks. Here, we assemble data on avian traits across a global sample of mutualistic plant–frugivore networks to critically assess how the functional roles of frugivores are associated with their intrinsic traits, as well as their evolutionary and functional distinctiveness. We find strong evidence for niche complementarity, with phenotypically and phylogenetically distinct birds interacting with more unique sets of plants. However, interaction strengths—the number of plant species dependent on a frugivore—were unrelated to evolutionary or functional distinctiveness, largely because distinct frugivores tend to be locally rare, and thus have fewer connections across the network. Instead, interaction strengths were better predicted by intrinsic traits, including body size, gape width and dietary specialization. Our analysis provides general support for the use of traits in quantifying species ecological functions, but also highlights the need to go beyond simple metrics of functional or phylogenetic diversity to consider the multiple pathways through which traits may determine ecological processes.
机译:量化生物多样性在生态系统中的作用不仅需要了解物种及其所提供的生态功能和服务之间的联系,还需要了解这些因素与可衡量指标(例如功能性状和系统发育多样性)之间的关系。但是,这些关系仍然知之甚少,尤其是对于复杂生态网络中的异养生物而言。在这里,我们将在全球互惠的植物-节食动物网络样本中收集有关禽性状的数据,以批判性地评估节食动物的功能角色如何与其内在特征相关联,以及它们的进化和功能独特性。我们找到了利基互补的有力证据,表型和系统发育上独特的鸟类与更多独特的植物相互作用。但是,交互强度(取决于果蝇的植物种类的数量)与进化或功能的独特性无关,主要是因为不同的果蝇往往在当地较为稀少,因此在整个网络中的连接较少。相反,可以通过内在特征更好地预测相互作用强度,这些内在特征包括体型,口径宽度和饮食专长。我们的分析为特征在量化物种生态功能中的使用提供了一般性支持,但同时也强调了超越功能或系统发育多样性的简单指标来考虑特征决定生态过程的多种途径的需求。

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