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Combining multiple investigative approaches to unravel functional responses to global change in the understorey of temperate forests

  • Dries Landuyt
  • , Michael P. Perring
  • , Haben Blondeel
  • , Emiel De Lombaerde
  • , Leen Depauw
  • , Eline Lorer
  • , Sybryn L. Maes
  • , Lander Baeten
  • , Laurent Berges
  • , Markus Bernhardt-Roemermann
  • , Guntis Brumelis
  • , Joerg Brunet
  • , Marketa Chudomelova
  • , Janusz Czerepko
  • , Guillaume Decocq
  • , Jan den Ouden
  • , Pieter De Frenne
  • , Thomas Dirnboeck
  • , Tomasz Durak
  • , Andreas Fichtner
  • Radoslaw Gawrys, Werner Haerdtle, Radim Hedl, Steffi Heinrichs, Thilo Heinken, Bogdan Jaroszewicz, Keith Kirby, Martin Kopecky, Frantisek Malis, Martin Macek, Fraser J. G. Mitchell, Tobias Naaf, Petr Petrik, Kamila Reczynska, Wolfgang Schmidt, Tibor Standovar, Krzysztof Swierkosz, Simon M. Smart, Hans Van Calster, Ondrej Vild, Donald M. Waller, Monika Wulf, Kris Verheyen

Publication: Contribution to journalJournal articlepeer-review

Abstract

Plant communities are being exposed to changing environmental conditions all around the globe, leading to alterations in plant diversity, community composition, and ecosystem functioning. For herbaceous understorey communities in temperate forests, responses to global change are postulated to be complex, due to the presence of a tree layer that modulates understorey responses to external pressures such as climate change and changes in atmospheric nitrogen deposition rates. Multiple investigative approaches have been put forward as tools to detect, quantify and predict understorey responses to these global-change drivers, including, among others, distributed resurvey studies and manipulative experiments. These investigative approaches are generally designed and reported upon in isolation, while integration across investigative approaches is rarely considered. In this study, we integrate three investigative approaches (two complementary resurvey approaches and one experimental approach) to investigate how climate warming and changes in nitrogen deposition affect the functional composition of the understorey and how functional responses in the understorey are modulated by canopy disturbance, that is, changes in overstorey canopy openness over time. Our resurvey data reveal that most changes in understorey functional characteristics represent responses to changes in canopy openness with shifts in macroclimate temperature and aerial nitrogen deposition playing secondary roles. Contrary to expectations, we found little evidence that these drivers interact. In addition, experimental findings deviated from the observational findings, suggesting that the forces driving understorey change at the regional scale differ from those driving change at the forest floor (i.e., the experimental treatments). Our study demonstrates that different approaches need to be integrated to acquire a full picture of how understorey communities respond to global change.
Original languageEnglish
Article numbere17086
Number of pages14
JournalGlobal Change Biology
Volume30
Issue number1
DOIs
Publication statusPublished - 2024

Bibliographical note

Publisher Copyright:
© 2023 John Wiley & Sons Ltd.

UN SDGs

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

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • SLA
  • climate change
  • forest management
  • forestREplot
  • herbaceous layer
  • mesocosm experiment
  • nitrogen deposition
  • plant height
  • resurvey study

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