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Patterns of phenotypic trait variation in two temperate forest herbs along a broad climatic gradient

  • Isgard Lemke
  • , Annette Kolb
  • , Bente J. Graae
  • , Pieter De Frenne
  • , Kamal Acharya
  • , Cristina Blandino
  • , Jörg Brunet
  • , Olivier Chabrerie
  • , Sara A. O. Cousins
  • , Guillaume Decocq
  • , Thilo Heinken
  • , Martin Hermy
  • , Jaan Liira
  • , Reto Schmucki
  • , Kris Verheyen
  • , Martin Diekmann
  • , Anna Shevtsova

Publication: Contribution to journalJournal articlepeer-review

Abstract

Phenotypic trait variation plays a major role in the response of plants to global environmental change, particularly in species with low migration capabilities and recruitment success. However, little is known about the variation of functional traits within populations and about differences in this variation on larger spatial scales. In a first approach, we therefore related trait expression to climate and local environmental conditions, studying two temperate forest herbs, Milium effusum and Stachys sylvatica, along a similar to 1800-2500 km latitudinal gradient. Within each of 9-10 regions in six European countries, we collected data from six populations of each species and recorded several variables in each region (temperature, precipitation) and population (light availability, soil parameters). For each plant, we measured height, leaf area, specific leaf area, seed mass and the number of seeds and examined environmental effects on within-population trait variation as well as on trait means. Most importantly, trait variation differed both between and within populations. Species, however, differed in their response. Intrapopulation variation in Milium was consistently positively affected by higher mean temperatures and precipitation as well as by more fertile local soil conditions, suggesting that more productive conditions may select for larger phenotypic variation. In Stachys, particularly light availability positively influenced trait variation, whereas local soil conditions had no consistent effects. Generally, our study emphasises that intra-population variation may differ considerably across larger scales-due to phenotypic plasticity and/or underlying genetic diversity-possibly affecting species response to global environmental change.
Original languageEnglish
Pages (from-to)1523-1536
Number of pages14
JournalPlant Ecology
Volume216
Issue number11
DOIs
Publication statusPublished - 2015

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 2 - Zero Hunger
    SDG 2 Zero Hunger

Keywords

  • Climate change
  • Global environmental change
  • Milium effusum
  • Phenotypic plasticity
  • Intraspecific variation
  • Stachys sylvatica

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