Improving forest ecosystem functions by optimizing tree species spatial arrangement

R Rémy Beugnon G Georg Albert G Georg Hähn W Wentao Yu (Institute of Interdisciplinary Physical Sciences, School of Physics) S Sylvia Haider (Vegetation Ecology and Biodiversity Conservation Group, Institute of Ecology, Leuphana University of Lüneburg) S Stephan Hättenschwiler A Andréa Davrinche (Research Center for Ecological Change, Organismal and Evolutionary Research Programme, Faculty of Biological and Environmental Sciences) B Benjamin Rosenbaum B Benoit Gauzens N Nico Eisenhauer

Abstract

Abstract Reforestation and afforestation programs are promoted as strategies to mitigate rising atmospheric CO2 concentrations and enhance ecosystem services. Planting diverse forests is supposed to foster such benefits, but optimal tree planting techniques, especially regarding species spatial arrangement, are underexplored. Here, using field measurements from the subtropical BEF-China experiment, we simulate tree growth, leaf litterfall, and decomposition, as a function of various spatial arrangements of tree species, from clusters of species to random distributions. Our simulations suggest that increasing tree species spatial heterogeneity in forests composed of eight tree species leads to higher biomass production, more evenly distributed litterfall, increased litter decomposition, and associated nitrogen and carbon cycling. These effects on forest nutrient dynamics are amplified with increasing species richness. Our data show that the spatial arrangement of tree species is a critical component determining biodiversity-ecosystem functioning relationships. Therefore, we suggest the explicit consideration of spatial arrangements when planting trees for reforestation and afforestation projects.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 09, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

R

Rémy Beugnon

G

Georg Albert

G

Georg Hähn

W

Wentao Yu

Institute of Interdisciplinary Physical Sciences, School of Physics

S

Sylvia Haider

Vegetation Ecology and Biodiversity Conservation Group, Institute of Ecology, Leuphana University of Lüneburg

S

Stephan Hättenschwiler

A

Andréa Davrinche

Research Center for Ecological Change, Organismal and Evolutionary Research Programme, Faculty of Biological and Environmental Sciences

B

Benjamin Rosenbaum

B

Benoit Gauzens

N

Nico Eisenhauer