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Data from: Emergence of a resource acquisition tradeoff at the community scale during environmental change

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Datum der Erstveröffentlichung

2025

Autor:innen

Pranger, Anton
Wagner, Nathalie
Diehl, Sebastian

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Repositorium der Erstveröffentlichung

DRYAD

Version des Datensatzes

Angaben zur Forschungsförderung

Deutsche Forschungsgemeinschaft (DFG): 298726046

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Core Facility der Universität Konstanz
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Publikationsstatus
Published

Zusammenfassung

TBiomass-weighted mean traits of a community’s constituent species are a useful tool to assess environmental filtering in community function in response to environmental change. We show that annually averaged phytoplankton community function, expressed by the community mean traits phosphate and light affinity, responded strongly and reversibly to long-term changes in nutrient supply over a 42-year period of eutrophication and re-oligotrophication of Lake Constance. Within the lake’s species pool, phosphate and light affinities were weakly negatively correlated, suggesting a weak physiological tradeoff. Yet, a strong tradeoff between these traits emerged when species were weighted by their biomass, suggesting species sorting along the tradeoff line across years of shifting nutrient status. Emergent tradeoffs, i.e. tradeoffs that become apparent first when trait combinations are weighted by the contributions of the trait-bearing organisms to community biomass, may be a useful, novel concept in trait-based ecology of potentially similar importance as commonly considered physiological tradeoffs.

Zusammenfassung in einer weiteren Sprache

Fachgebiet (DDC)
570 Biowissenschaften, Biologie

Schlagwörter

FOS: Biological sciences, FOS: Biological sciences, Lake Constance, Phytoplankton, trait-based ecology, trait tradeoffs

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ISO 690PRANGER, Anton, Frank PEETERS, Nathalie WAGNER, Sebastian DIEHL, Dietmar STRAILE, 2025. Data from: Emergence of a resource acquisition tradeoff at the community scale during environmental change
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    <dcterms:abstract>TBiomass-weighted mean traits of a community’s constituent species are a useful tool to assess environmental filtering in community function in response to environmental change. We show that annually averaged phytoplankton community function, expressed by the community mean traits phosphate and light affinity, responded strongly and reversibly to long-term changes in nutrient supply over a 42-year period of eutrophication and re-oligotrophication of Lake Constance. Within the lake’s species pool, phosphate and light affinities were weakly negatively correlated, suggesting a weak physiological tradeoff. Yet, a strong tradeoff between these traits emerged when species were weighted by their biomass, suggesting species sorting along the tradeoff line across years of shifting nutrient status. Emergent tradeoffs, i.e. tradeoffs that become apparent first when trait combinations are weighted by the contributions of the trait-bearing organisms to community biomass, may be a useful, novel concept in trait-based ecology of potentially similar importance as commonly considered physiological tradeoffs.</dcterms:abstract>
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