Plant diversity influences plant volatile emission with varying effects at the species and community levels
Abstract
Studies have investigated the interactions between plants through competition and resource sharing to understand the mechanisms behind the positive effects of plant diversity on productivity. Volatile organic compounds (VOCs) are important info-chemicals in plant–plant interactions, but they have so far rarely been considered in this context. Here, we measured VOC emissions at the community scale and for one species ( Plantago lanceolata ) in experimental plant communities of varying diversity (The Jena Experiment) to understand the role of VOCs in driving biodiversity-ecosystem functioning relationships. We show that plant diversity determines the release of plant VOCs at both scales. At the community level, plant species richness directly enhanced VOC emission and increased VOC richness both directly and indirectly by altering leaf area index. At the species level, plant diversity did not directly affect the VOC emissions of P. lanceolata but indirectly affected it by influencing the VOC emissions from the surrounding community. P. lanceolata individuals in communities with high concentrations of green leaf volatiles decreased their VOC emission, while those in communities with high concentrations of terpenoids increased their VOC diversity. Our results provide evidence that plant diversity shapes community-level plant VOC emission and thus influences focal plant VOC emission inside the community.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (16)
Pamela Medina-van Berkum
Department of Biochemistry, Max Planck Institute for Chemical Ecology
Cynthia Albracht
Biosystems Data Analysis, Swammerdam Institute for Life Sciences, University of Amsterdam
Maximilian Bröcher
Population Ecology Group, Institute of Biodiversity, Ecology and Evolution, University of Jena
Marcel Dominik Solbach
Terrestrial Ecology Group, Institute of Zoology, University of Cologne
Gideon Stein
Computer Vision Group, Faculty of Mathematics and Computer Science, University of Jena
Michael Bonkowski
Terrestrial Ecology Group, Institute of Zoology, University of Cologne
François Buscot
Anna Heintz-Buschart
Biosystems Data Analysis, Swammerdam Institute for Life Sciences, University of Amsterdam
Anne Ebeling
Population Ecology Group, Institute of Biodiversity, Ecology and Evolution, University of Jena
Nico Eisenhauer
Tarek S. El-Madany
Field experiments and instrumentation, Max Planck Institute for Biogeochemistry
Yuanyuan Huang
German Centre for Integrative Biodiversity Research (iDiv), Halle-Jena-Leipzig
Karl Kuebler
Field experiments and instrumentation, Max Planck Institute for Biogeochemistry
Sebastian T. Meyer
Terrestrial Ecology Research Group, Department of Ecology and Ecosystem Management, School of Life Sciences Weihenstephan, Technical University of Munich
Jonathan Gershenzon
Department of Biochemistry
Sybille B. Unsicker
Department of Biochemistry, Max Planck Institute for Chemical Ecology