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May 18, 2026Journal of Animal Ecology0 citations

A new approach to quantify isotopic (co)variation across levels of biological organization using double‐hierarchical generalized linear models

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FLFederico Garrido‐de LeónJMJulien G. A. MartinRCRaul Costa‐Pereira

Key Points

  • The aim is to showcase the effectiveness of double-hierarchical generalized linear models (DHGLMs) in analyzing ecological data, particularly isotopic data across different biological levels.
  • Utilized double-hierarchical generalized linear models (DHGLMs) to analyze isotopic variation.
  • Applied models across three levels of biological organization: individuals, populations, and communities.
  • Illustrated the decomposition of (co)variance components to uncover dietary and interaction patterns.
  • DHGLMs effectively estimated variance components related to isotopic (co)variation.
  • Significant patterns of diet variation and ecological interactions were identified across biological units.
  • Demonstrated applications of DHGLMs enhance the understanding of biodiversity patterns.

Abstract

Abstract Double‐hierarchical generalized linear models (DHGLMs) offer a powerful yet overlooked quantitative approach for analysing ecological data with hierarchical structures. DHGLMs account for unit‐specific residual variances, allowing the estimation of variance components that expand our ability to quantify biodiversity patterns across levels of biological organization—from individuals to communities. A particularly promising application of these models lies in isotopic ecology, where stable isotopes of carbon (𝛿 13 C) and nitrogen (𝛿 15 N) are used to quantify continuous trophic (co)variation across individuals, populations and communities. Here, we show how DHGLMs can be a powerful tool for ecologists interested in trophic patterns and demonstrate the application of these models to isotopic data, showcasing study systems across three levels of biological organization. These examples illustrate how DHGLMs decompose (co)variance components within and across biological units of interest, uncover patterns of diet variation and ecological interactions. We also discuss the advantages, limitations and potential of DHGLMs for advancing research on different questions related to variation in diet and specialization at different biological levels.

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Cite This Study

León et al. (2026) studied this question.

synapsesocial.com/papers/6a0aace55ba8ef6d83b7046ehttps://doi.org/10.1111/1365-2656.70277
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