4.6 Article

Forest understorey communities respond strongly to light in interaction with forest structure, but not to microclimate warming

Journal

NEW PHYTOLOGIST
Volume 233, Issue 1, Pages 219-235

Publisher

WILEY
DOI: 10.1111/nph.17803

Keywords

climate change experiment; forest specialists; forest structure; forest understorey; functional traits; generalists; light; microclimate

Categories

Funding

  1. Research Foundation Flanders (FWO) [ASP03519, G0H1517N]
  2. European Research Council (ERC) [FORMICA 757833]
  3. FWO Scientific research network FLEUR

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The study found that understorey plant communities did not show significant responses to warming treatment, but had stronger impacts from light treatment, especially from fast-colonizing generalists. Forest structure played a crucial role in mediating the response to light addition and had clear impacts on functional traits and total plant cover. Short-term experimental warming had minimal effects, suggesting a time-lag in understorey species' response to climate change.
Forests harbour large spatiotemporal heterogeneity in canopy structure. This variation drives the microclimate and light availability at the forest floor. So far, we do not know how light availability and sub-canopy temperature interactively mediate the impact of macroclimate warming on understorey communities. We therefore assessed the functional response of understorey plant communities to warming and light addition in a full factorial experiment installed in temperate deciduous forests across Europe along natural microclimate, light and macroclimate gradients. Furthermore, we related these functional responses to the species' life-history syndromes and thermal niches. We found no significant community responses to the warming treatment. The light treatment, however, had a stronger impact on communities, mainly due to responses by fast-colonizing generalists and not by slow-colonizing forest specialists. The forest structure strongly mediated the response to light addition and also had a clear impact on functional traits and total plant cover. The effects of short-term experimental warming were small and suggest a time-lag in the response of understorey species to climate change. Canopy disturbance, for instance due to drought, pests or logging, has a strong and immediate impact and particularly favours generalists in the understorey in structurally complex forests.

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