Forest biodiversity increases productivity via complementarity from greater canopy structural complexity

X Xianglu Deng (State Key Laboratory of Forage Breeding-by-Design and Utilization, Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences) B Bernhard Schmid H Helge Bruelheide (Institute of Biology/Geobotany and Botanical Garden, Martin Luther University Halle-Wittenberg) C Chen Chen Y Yi Li S Shan Li (Institute of Solid State Chemistry, Department of Physical Chemistry, Beijing Advanced Innovation Center for Materials Genome Engineering) F Felix Morsdorf (Remote Sensing Laboratories, Department of Geography, University of Zurich) T Tama Ray (Institute of Biology/Geobotany and Botanical Garden, Martin Luther University Halle-Wittenberg) M Meredith C. Schuman (Remote Sensing Laboratories, Department of Geography, University of Zurich) T Ting Tang G Goddert von Oheimb (Institute of General Ecology and Environmental Protection, Technische Universität Dresden) K Keping Ma X Xiaojuan Liu (Spin-X Institute, School of Chemistry and Chemical Engineering, State Key Laboratory of Luminescent Materials and Devices)

Abstract

The horizontal distribution and vertical stratification of tree crowns can affect light interception and tree growth, thus driving forest productivity and carbon storage. However, how canopy structure is affected by tree diversity and thus can mediate its effects on productivity remains unclear. Using 4-y consecutive unmanned aerial vehicle-borne light detection and ranging and ground-based growth measurements from 482 plots and 38,088 trees, 11 to 15 y after planting, within a large-scale forest biodiversity experiment in southeast China, we found that increased canopy structural complexity consistently explains the positive effects of tree diversity on productivity. Species complementarity was the main mediator of diversity-enhanced productivity, with the positive complementarity effects strengthening over time. Our study underscores the importance of establishing multispecies forest communities with complex canopy structure to maximize productivity and carbon sequestration in forest ecosystems.

Article Details

Volume / Issue Vol. 122, Issue 40
Published October 07, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

X

Xianglu Deng

State Key Laboratory of Forage Breeding-by-Design and Utilization, Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences

B

Bernhard Schmid

H

Helge Bruelheide

Institute of Biology/Geobotany and Botanical Garden, Martin Luther University Halle-Wittenberg

C

Chen Chen

Y

Yi Li

S

Shan Li

Institute of Solid State Chemistry, Department of Physical Chemistry, Beijing Advanced Innovation Center for Materials Genome Engineering

F

Felix Morsdorf

Remote Sensing Laboratories, Department of Geography, University of Zurich

T

Tama Ray

Institute of Biology/Geobotany and Botanical Garden, Martin Luther University Halle-Wittenberg

M

Meredith C. Schuman

Remote Sensing Laboratories, Department of Geography, University of Zurich

T

Ting Tang

G

Goddert von Oheimb

Institute of General Ecology and Environmental Protection, Technische Universität Dresden

K

Keping Ma

X

Xiaojuan Liu

Spin-X Institute, School of Chemistry and Chemical Engineering, State Key Laboratory of Luminescent Materials and Devices