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Taxonomic, phylogenetic and functional diversity of understorey plants respond differently to environmental conditions in European forest edges
De Pauw, Karen
ORCID-id:
0000-0001-8369-2679
Meeussen, Camille
ORCID-id:
0000-0002-5869-4936
Govaert, Sanne
Sanczuk, Pieter
Vanneste, Thomas
Bernhardt-Romermann, Markus
ORCID-id:
0000-0002-2740-2304
Bollmann, Kurt
Brunet, Jorg
Calders, Kim
ORCID-id:
0000-0002-4562-2538
Cousins, Sara A. O.
Stockholms universitet, Naturvetenskapliga fakulteten, Institutionen för naturgeografi.
ORCID-id:
0000-0003-2656-2645
Diekmann, Martin
Hedwall, Per-Ola
Iacopetti, Giovanni
Lenoir, Jonathan
Lindmo, Sigrid
Orczewska, Anna
Ponette, Quentin
Plue, Jan
Stockholms universitet, Naturvetenskapliga fakulteten, Institutionen för naturgeografi. IVL Swedish Environmental Institute, Sweden.
ORCID-id:
0000-0002-6999-669X
Selvi, Federico
Spicher, Fabien
Verbeeck, Hans
Vermeir, Pieter
Zellweger, Florian
Verheyen, Kris
Vangansbeke, Pieter
De Frenne, Pieter
Vise andre og tillknytning
Rekke forfattare: 26
2021 (engelsk)
Inngår i:
Journal of Ecology, ISSN 0022-0477, E-ISSN 1365-2745, Vol. 109, nr 7, s. 2629-2648
Artikkel i tidsskrift (Fagfellevurdert) Published
Abstract [en]
Forest biodiversity world-wide is affected by climate change, habitat loss and fragmentation, and today 20% of the forest area is located within 100 m of a forest edge. Still, forest edges harbour a substantial amount of terrestrial biodiversity, especially in the understorey. The functional and phylogenetic diversity of forest edges have never been studied simultaneously at a continental scale, in spite of their importance for the forests' functioning and for communities' resilience to future change.
We assessed nine metrics of taxonomic, phylogenetic and functional diversity of understorey plant communities in 225 plots spread along edge-to-interior gradients in deciduous forests across Europe. We then derived the relative effects and importance of edaphic, stand and landscape conditions on the diversity metrics.
Here, we show that taxonomic, phylogenetic and functional diversity metrics respond differently to environmental conditions. We report an increase in functional diversity in plots with stronger microclimatic buffering, in spite of their lower taxonomic species richness. Additionally, we found increased taxonomic species richness at the forest edge, but in forests with intermediate and high openness, these communities had decreased phylogenetic diversity.
Functional and phylogenetic diversity revealed complementary and important insights in community assembly mechanisms. Several environmental filters were identified as potential drivers of the patterns, such as a colder macroclimate and less buffered microclimate for functional diversity. For phylogenetic diversity, edaphic conditions were more important. Interestingly, plots with lower soil pH had decreased taxonomic species richness, but led to increased phylogenetic diversity, challenging the phylogenetic niche conservatism concept.
Synthesis
. Taxonomic, phylogenetic and functional diversity of understorey communities in forest edges respond differently to environmental conditions, providing insight into different community assembly mechanisms and their interactions. Therefore, it is important to look beyond species richness with phylogenetic and functional diversity approaches when focusing on forest understorey biodiversity.
sted, utgiver, år, opplag, sider
2021. Vol. 109, nr 7, s. 2629-2648
Emneord [en]
biodiversity, forest edge, forest understorey, functional diversity, microclimate, phylogenetic diversity, species richness
HSV kategori
Identifikatorer
URN:
urn:nbn:se:su:diva-193988
DOI:
10.1111/1365-2745.13671
ISI:
000649471600001
OAI: oai:DiVA.org:su-193988
DiVA, id:
diva2:1565692
Tilgjengelig fra:
2021-06-14
Laget:
2021-06-14
Sist oppdatert:
2022-02-25
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De Pauw, Karen
Meeussen, Camille
Bernhardt-Romermann, Markus
Calders, Kim
Cousins, Sara A. O.
Plue, Jan
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Meeussen, Camille
Bernhardt-Romermann, Markus
Calders, Kim
Cousins, Sara A. O.
Plue, Jan
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