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鞘翅目步甲科甲虫群落的功能特征组成通过质量比和生态位互补机制来预测猎物抑制作用。

Functional trait composition of carabid beetle communities predicts prey suppression through both mass ratio and niche complementarity mechanisms.

机构信息

Université de Lorraine, INRAE, LAE, Nancy, F-54000, France.

UMR SELMET, CIRAD, INRAE, Institut Agro, Université de Montpellier, Montpellier, 34000, France.

出版信息

Insect Sci. 2024 Apr;31(2):562-574. doi: 10.1111/1744-7917.13261. Epub 2023 Aug 19.

Abstract

Several components of predator functional diversity have been hypothesized to influence prey suppression through either niche complementarity or mass ratio effects. Nevertheless, most studies have used a functional group approach when assessing the role of these predators in ecosystem functioning. By adopting a trait-based approach, we evaluated the relative contributions of carabid diversity components in predicting prey suppression. Our results highlight the importance of both taxonomic and functional diversity components of carabids as key drivers of prey suppression. Prey suppression was best predicted by carabid densities, with the dominance of Poecilus cupreus potentially driving the positive effect of community total abundance through the mass ratio effect. Prey suppression increased with increasing the density of large carabids. In addition, carabid eye diameter and antennal length were key functional traits for predicting prey suppression. Furthermore, prey suppression increased with increasing carabid functional richness following the niche complementarity effect. In contrast to functional richness, functional evenness and functional divergence of carabid communities were weakly correlated with prey suppression. By identifying which diversity components of carabid communities contribute the most to increase prey suppression, our results can guide efforts aiming to predict the relationship between diversity of these predators and ecosystem functioning.

摘要

几种捕食者功能多样性成分被假设通过生态位互补或质量比效应影响猎物的抑制。然而,大多数研究在评估这些捕食者在生态系统功能中的作用时,都采用了功能群的方法。通过采用基于特征的方法,我们评估了鞘翅目多样性成分在预测猎物抑制方面的相对贡献。我们的结果强调了鞘翅目物种多样性和功能多样性成分作为猎物抑制的关键驱动因素的重要性。猎物抑制受鞘翅目密度的影响最大,Poecilus cupreus 的优势可能通过质量比效应驱动群落总丰度的正效应。随着大型鞘翅目密度的增加,猎物抑制作用增加。此外,鞘翅目昆虫的眼直径和触角长度是预测猎物抑制的关键功能特征。此外,随着生态位互补效应的出现,鞘翅目功能丰富度的增加也会增加猎物抑制作用。与功能丰富度相反,鞘翅目群落的功能均匀度和功能发散度与猎物抑制作用的相关性较弱。通过确定鞘翅目群落的哪些多样性成分对增加猎物抑制作用的贡献最大,我们的研究结果可以指导旨在预测这些捕食者多样性与生态系统功能之间关系的努力。

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