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昆虫功能性状揭示了塑造生态位分化模式的过程。

Insect functional traits reveal processes that shape niche differentiation patterns.

作者信息

Grosdidier Robert, Crandall Raelene M, Silverman Emma, Hahn Philip G

机构信息

Entomology and Nematology Department, University of Florida, Gainesville, FL, USA.

Department of Entomology, Purdue University, West Lafayette, IN, USA.

出版信息

Oecologia. 2025 Aug 21;207(9):147. doi: 10.1007/s00442-025-05783-4.

Abstract

Functional traits allow ecologists to infer processes that structure ecological communities and quantify interactions between trophic levels. Insects are a ubiquitous group that exhibits a variety of functional traits, and studying these traits could prove useful for understanding insect community assembly. We use insect trait measurements, community sampling along a disturbance gradient, and a cafeteria-style feeding assay to elucidate the mechanisms that govern insect herbivore community assembly processes. Using a trait principal component analysis, we first identified life history trade-offs between herbivore feeding and nutrition based on 3 traits measured on 14 grasshopper species collected across 30 pine savanna field sites. In the field, we tested hypotheses regarding how competition or environmental filtering might structure communities by examining dispersion patterns of functional traits. We found that grasshopper incisor strength and C:N ratio were consistently under-dispersed, patterns that indicate trait-clustering resulting from environmental filtering. Using mesocosms, we tested the hypothesis that grasshopper species should exhibit differentiation in their feeding niches based on the traits of the plants they consume and that feeding traits should correlate with traits of consumed plants. We demonstrated that grasshopper species strongly differentiated their feeding niche based on the traits of plants incorporated into their diets. We also found linkages between herbivore incisor strength and plant leaf dry matter content, and between grasshopper C:N ratio or body size and plant C:N ratio. This study revealed likely mechanisms that govern the interactions between insect herbivores, the plants they feed on, and how they partition resources to coexist.

摘要

功能性状使生态学家能够推断构建生态群落的过程,并量化营养级之间的相互作用。昆虫是一个无处不在的类群,具有各种各样的功能性状,研究这些性状可能有助于理解昆虫群落的组装。我们使用昆虫性状测量、沿干扰梯度的群落采样以及自助餐式取食试验,来阐明控制昆虫食草动物群落组装过程的机制。通过性状主成分分析,我们首先基于对从30个松树稀树草原野外地点收集的14种草蜢物种测量的3个性状,确定了食草动物取食与营养之间的生活史权衡。在野外,我们通过检查功能性状的分布模式,检验了关于竞争或环境过滤如何构建群落的假设。我们发现,草蜢的门齿强度和碳氮比始终呈欠分散状态,这些模式表明环境过滤导致了性状聚类。使用中型生态箱,我们检验了以下假设:草蜢物种应根据它们所消耗植物的性状,在取食生态位上表现出分化,并且取食性状应与所消耗植物的性状相关。我们证明,草蜢物种根据纳入其食谱的植物性状,强烈分化了它们的取食生态位。我们还发现了食草动物门齿强度与植物叶片干物质含量之间,以及草蜢碳氮比或体型与植物碳氮比之间的联系。这项研究揭示了控制昆虫食草动物、它们所取食的植物之间相互作用的可能机制,以及它们如何分配资源以共存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7030/12370786/fb1cf591083c/442_2025_5783_Fig1_HTML.jpg

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