Dispersal–niche continuum index: a new quantitative metric for assessing the relative importance of dispersal versus niche processes in community assembly

Patterns in community composition are scale‐dependent and generally difficult to distinguish. Therefore, quantifying the main assembly processes in various systems and across different datasets has remained challenging. Building on the PER‐SIMPER method, we propose a new metric, the dispersal–niche...

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Published inEcography (Copenhagen) Vol. 44; no. 3; pp. 370 - 379
Main Authors Vilmi, Annika, Gibert, Corentin, Escarguel, Gilles, Happonen, Konsta, Heino, Jani, Jamoneau, Aurélien, Passy, Sophia I., Picazo, Félix, Soininen, Janne, Tison‐Rosebery, Juliette, Wang, Jianjun
Format Journal Article
LanguageEnglish
Published Oxford, UK Blackwell Publishing Ltd 01.03.2021
John Wiley & Sons, Inc
Wiley
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Abstract Patterns in community composition are scale‐dependent and generally difficult to distinguish. Therefore, quantifying the main assembly processes in various systems and across different datasets has remained challenging. Building on the PER‐SIMPER method, we propose a new metric, the dispersal–niche continuum index (DNCI), which estimates whether dispersal or niche processes dominate community assembly and facilitates the comparisons of processes among datasets. The DNCI was tested for robustness using simulations and applied to observational datasets comprising organismal groups with different trophic level and dispersal potential. Based on the robustness tests, the DNCI discriminated the respective contribution of niche and dispersal processes in pairwise comparisons of site groups with less than 40% and 30% differences in their taxa and site numbers, respectively. In the observational datasets, the DNCI suggested that dispersal rather than niche assembly was the dominant assembly process which, however, varied in intensity among organismal groups and study contexts, including spatial scale and ecosystem types. The proposed DNCI measures the relative strength of community assembly processes in a way that is simple, easily quantifiable and comparable across datasets. We discuss the strengths and weaknesses of the DNCI and provide perspectives for future research.
AbstractList Patterns in community composition are scale‐dependent and generally difficult to distinguish. Therefore, quantifying the main assembly processes in various systems and across different datasets has remained challenging. Building on the PER‐SIMPER method, we propose a new metric, the dispersal–niche continuum index (DNCI), which estimates whether dispersal or niche processes dominate community assembly and facilitates the comparisons of processes among datasets. The DNCI was tested for robustness using simulations and applied to observational datasets comprising organismal groups with different trophic level and dispersal potential. Based on the robustness tests, the DNCI discriminated the respective contribution of niche and dispersal processes in pairwise comparisons of site groups with less than 40% and 30% differences in their taxa and site numbers, respectively. In the observational datasets, the DNCI suggested that dispersal rather than niche assembly was the dominant assembly process which, however, varied in intensity among organismal groups and study contexts, including spatial scale and ecosystem types. The proposed DNCI measures the relative strength of community assembly processes in a way that is simple, easily quantifiable and comparable across datasets. We discuss the strengths and weaknesses of the DNCI and provide perspectives for future research.
Audience Academic
Author Soininen, Janne
Jamoneau, Aurélien
Happonen, Konsta
Wang, Jianjun
Gibert, Corentin
Tison‐Rosebery, Juliette
Vilmi, Annika
Escarguel, Gilles
Heino, Jani
Picazo, Félix
Passy, Sophia I.
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  organization: Dept of Geosciences and Geography, Univ. of Helsinki
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  surname: Wang
  fullname: Wang, Jianjun
  email: jjwang@niglas.ac.cn
  organization: State Key Laboratory of Lake Science and Environment, Nanjing Inst. of Geography and Limnology, Chinese Academy of Sciences
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Copyright 2020 The Authors. Ecography published by John Wiley & Sons Ltd on behalf of Nordic Society Oikos
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Issue 3
Keywords null models
environmental filtering
dispersal
stochasticity
determinism
niche processes
assembly processes
PER-SIMPER
Language English
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Snippet Patterns in community composition are scale‐dependent and generally difficult to distinguish. Therefore, quantifying the main assembly processes in various...
Patterns in community composition are scale-dependent and generally difficult to distinguish. Therefore, quantifying the main assembly processes in various...
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SubjectTerms Analysis
Assembly
assembly processes
Biodiversity and Ecology
Community composition
Datasets
determinism
Dispersal
Dispersion
Ecosystems
environmental filtering
Environmental Sciences
niche processes
Niches
null models
PER-SIMPER
Robustness
stochasticity
Trophic levels
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Title Dispersal–niche continuum index: a new quantitative metric for assessing the relative importance of dispersal versus niche processes in community assembly
URI https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fecog.05356
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Volume 44
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