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Edith Hammer. Photo.

Edith Hammer

Senior lecturer

Edith Hammer. Photo.

Aligning spatial ecological theory with the study of clonal organisms : the case of fungal coexistence

Author

  • Miloš Bielčik
  • Ulrike E. Schlägel
  • Merlin Schäfer
  • Carlos A. Aguilar-Trigueros
  • Milica Lakovic
  • Moisés A. Sosa-Hernández
  • Edith C. Hammer
  • Florian Jeltsch
  • Matthias C. Rillig

Summary, in English

Established ecological theory has focused on unitary organisms, and thus its concepts have matured into a form that often hinders rather than facilitates the ecological study of modular organisms. Here, we use the example of filamentous fungi to develop concepts that enable integration of non-unitary (modular) organisms into the established community ecology theory, with particular focus on its spatial aspects. In doing so, we provide a link between fungal community ecology and modern coexistence theory (MCT). We first show how community processes and predictions made by MCT can be used to define meaningful scales in fungal ecology. This leads to the novel concept of the unit of community interactions (UCI), a promising conceptual tool for applying MCT to communities of modular organisms with indeterminate clonal growth and hierarchical individuality. We outline plausible coexistence mechanisms structuring fungal communities, and show at what spatial scales and in what habitats they are most likely to act. We end by describing challenges and opportunities for empirical and theoretical research in fungal competitive coexistence.

Department/s

  • LTH Profile Area: Nanoscience and Semiconductor Technology
  • Functional Ecology
  • LU Profile Area: Nature-based future solutions
  • Microbial Ecology
  • Centre for Environmental and Climate Science (CEC)
  • BECC: Biodiversity and Ecosystem services in a Changing Climate

Publishing year

2024

Language

English

Pages

2211-2233

Publication/Series

Biological Reviews

Volume

99

Issue

6

Document type

Article

Publisher

John Wiley & Sons Inc.

Topic

  • Ecology (including Biodiversity Conservation)

Keywords

  • clonal growth
  • competition–colonisation trade-off
  • fungal community ecology
  • fungal competition
  • growth–density covariance
  • intransitive coexistence
  • metacommunity
  • modern coexistence theory
  • modular organisms
  • spatial storage effect

Status

Published

Research group

  • Microbial Ecology

ISBN/ISSN/Other

  • ISSN: 1464-7931