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  4. Edge influence on understorey plant communities depends on forest management
 
research article

Edge influence on understorey plant communities depends on forest management

Govaert, Sanne
•
Meeussen, Camille
•
Vanneste, Thomas
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February 5, 2020
Journal Of Vegetation Science

Questions Does the influence of forest edges on plant species richness and composition depend on forest management? Do forest specialists and generalists show contrasting patterns?

Location Mesic, deciduous forests across Europe.

Methods Vegetation surveys were performed in forests with three management types (unthinned, thinned 5-10 years ago and recently thinned) along a macroclimatic gradient from Italy to Norway. In each of 45 forests, we established five vegetation plots along a south-facing edge-to-interior gradient (n = 225). Forest specialist, generalist and total species richness, as well as evenness and proportion of specialists, were tested as a function of the management type and distance to the edge while accounting for several environmental variables (e.g. landscape composition and soil characteristics). Magnitude and distance of edge influence were estimated for species richness per management type.

Results Greatest total species richness was found in thinned forests. Edge influence on generalist plant species richness was contingent on the management type, with the smallest decrease in species richness from the edge-to-interior in unthinned forests. In addition, generalist richness increased with the proportion of forests in the surrounding landscape and decreased in forests dominated by tree species that cast more shade. Forest specialist species richness, however, was not affected by management type or distance to the edge, and only increased with pH and increasing proportion of forests in the landscape.

Conclusions Forest thinning affects the plant community composition along edge-to-interior transects of European forests, with richness of forest specialists and generalists responding differently. Therefore, future studies should take the forest management into account when interpreting edge-to-interior because both modify the microclimate, soil processes and deposition of polluting aerosols. This interaction is key to predict the effects of global change on forest plants in landscapes characterized by the mosaic of forest patches and agricultural land that is typical for Europe.

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Type
research article
DOI
10.1111/jvs.12844
Web of Science ID

WOS:000511160800001

Author(s)
Govaert, Sanne
Meeussen, Camille
Vanneste, Thomas
Bollmann, Kurt
Brunet, Jorg
Cousins, Sara A. O.
Diekmann, Martin
Graae, Bente J.
Hedwall, Per-Ola
Heinken, Thilo
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Date Issued

2020-02-05

Publisher

WILEY

Published in
Journal Of Vegetation Science
Volume

31

Issue

2

Start page

281

End page

292

Subjects

Plant Sciences

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Ecology

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Forestry

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Environmental Sciences & Ecology

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edge effects

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edge influence

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forest specialists

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generalists

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herbaceous layer

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patch contrast

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plant biodiversity

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species richness

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thinning

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understorey

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temperate deciduous forest

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herb-layer vegetation

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hardwood forests

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oak forests

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soil

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woodland

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microclimate

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diversity

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fragmentation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
RIVER  
Available on Infoscience
March 3, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/166908
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