Synthesis and future research directions linking tree diversity to growth, survival, and damage in a global network of tree diversity experiments

•TreeDivNet is a global network of 25 tree biodiversity experiments.•A review of 158 publications reveals diversity affects tree growth, survival, and damage.•Research addresses mechanisms of biodiversity-ecosystem functioning relationships.•Tree diversity experiments expand upon past grassland dive...

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Published in:Environmental and experimental botany Vol. 152; pp. 68 - 89
Main Authors: Grossman, Jake J., Vanhellemont, Margot, Barsoum, Nadia, Bauhus, Jürgen, Bruelheide, Helge, Castagneyrol, Bastien, Cavender-Bares, Jeannine, Eisenhauer, Nico, Ferlian, Olga, Gravel, Dominique, Hector, Andy, Jactel, Hervé, Kreft, Holger, Mereu, Simone, Messier, Christian, Muys, Bart, Nock, Charles, Paquette, Alain, Parker, John, Perring, Michael P., Ponette, Quentin, Reich, Peter B., Schuldt, Andreas, Staab, Michael, Weih, Martin, Zemp, Delphine Clara, Scherer-Lorenzen, Michael, Verheyen, Kris
Format: Journal Article
Language:English
Published: Elsevier B.V 01.08.2018
Elsevier
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ISSN:0098-8472, 1873-7307, 1873-7307
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Abstract •TreeDivNet is a global network of 25 tree biodiversity experiments.•A review of 158 publications reveals diversity affects tree growth, survival, and damage.•Research addresses mechanisms of biodiversity-ecosystem functioning relationships.•Tree diversity experiments expand upon past grassland diversity research. Despite considerable research demonstrating that biodiversity increases productivity in forests and regulates herbivory and pathogen damage, there remain gaps in our understanding of the shape, magnitude, and generality of these biodiversity-ecosystem functioning (BEF) relationships. Here, we review findings from TreeDivNet, a global network of 25 tree diversity experiments, on relationships between levels of biodiversity and (a) tree growth and survival and (b) damage to trees from pests and pathogens. Tree diversity often improved the survival and above- and belowground growth of young trees. The mechanistic bases of the diversity effects on tree growth and survival include both selection effects (i.e., an increasing impact of particular species in more species-rich communities) and complementary effects (e.g. related to resource differentiation and facilitation). Plant traits and abiotic stressors may mediate these relationships. Studies of the responses of invertebrate and vertebrate herbivory and pathogen damage have demonstrated that trees in more diverse experimental plots may experience more, less, or similar damage compared to conspecific trees in less diverse plots. Documented mechanisms producing these patterns include changes in concentration, frequency, and apparency of hosts; herbivore and pathogen diet breadth; the spatial scale of interactions; and herbivore and pathogen regulation by natural enemies. Our review of findings from TreeDivNet indicates that tree diversity experiments are extending BEF research across systems and scales, complementing previous BEF work in grasslands by providing opportunities to use remote sensing and spectral approaches to study BEF dynamics, integrate belowground and aboveground approaches, and trace the consequences of tree physiology for ecosystem functioning. This extension of BEF research into tree-dominated systems is improving ecologists’ capacity to understand the mechanistic bases behind BEF relationships. Tree diversity experiments also present opportunities for novel research. Since experimental tree diversity plantations enable measurements at tree, neighbourhood and plot level, they allow for explicit consideration of temporal and spatial scales in BEF dynamics. Presently, most TreeDivNet experiments have run for less than ten years. Given the longevity of trees, exciting results on BEF relationships are expected in the future.
AbstractList Despite considerable research demonstrating that biodiversity increases productivity in forests and regulates herbivory and pathogen damage, there remain gaps in our understanding of the shape, magnitude, and generality of these biodiversity-ecosystem functioning (BEF) relationships. Here, we review findings from TreeDivNet, a global network of 25 tree diversity experiments, on relationships between levels of biodiversity and (a) tree growth and survival and (b) damage to trees from pests and pathogens. Tree diversity often improved the survival and above- and belowground growth of young trees. The mechanistic bases of the diversity effects on tree growth and survival include both selection effects (i.e., an increasing impact of particular species in more species-rich communities) and complementary effects (e.g. related to resource differentiation and facilitation). Plant traits and abiotic stressors may mediate these relationships. Studies of the responses of invertebrate and vertebrate herbivory and pathogen damage have demonstrated that trees in more diverse experimental plots may experience more, less, or similar damage compared to conspecific trees in less diverse plots. Documented mechanisms producing these patterns include changes in concentration, frequency, and apparency of hosts; herbivore and pathogen diet breadth; the spatial scale of interactions; and herbivore and pathogen regulation by natural enemies. Our review of findings from TreeDivNet indicates that tree diversity experiments are extending BEF research across systems and scales, complementing previous BEF work in grasslands by providing opportunities to use remote sensing and spectral approaches to study BEF dynamics, integrate belowground and aboveground approaches, and trace the consequences of tree physiology for ecosystem functioning. This extension of BEF research into tree-dominated systems is improving ecologists’ capacity to understand the mechanistic bases behind BEF relationships. Tree diversity experiments also present opportunities for novel research. Since experimental tree diversity plantations enable measurements at tree, neighbourhood and plot level, they allow for explicit consideration of temporal and spatial scales in BEF dynamics. Presently, most TreeDivNet experiments have run for less than ten years. Given the longevity of trees, exciting results on BEF relationships are expected in the future.
•TreeDivNet is a global network of 25 tree biodiversity experiments.•A review of 158 publications reveals diversity affects tree growth, survival, and damage.•Research addresses mechanisms of biodiversity-ecosystem functioning relationships.•Tree diversity experiments expand upon past grassland diversity research. Despite considerable research demonstrating that biodiversity increases productivity in forests and regulates herbivory and pathogen damage, there remain gaps in our understanding of the shape, magnitude, and generality of these biodiversity-ecosystem functioning (BEF) relationships. Here, we review findings from TreeDivNet, a global network of 25 tree diversity experiments, on relationships between levels of biodiversity and (a) tree growth and survival and (b) damage to trees from pests and pathogens. Tree diversity often improved the survival and above- and belowground growth of young trees. The mechanistic bases of the diversity effects on tree growth and survival include both selection effects (i.e., an increasing impact of particular species in more species-rich communities) and complementary effects (e.g. related to resource differentiation and facilitation). Plant traits and abiotic stressors may mediate these relationships. Studies of the responses of invertebrate and vertebrate herbivory and pathogen damage have demonstrated that trees in more diverse experimental plots may experience more, less, or similar damage compared to conspecific trees in less diverse plots. Documented mechanisms producing these patterns include changes in concentration, frequency, and apparency of hosts; herbivore and pathogen diet breadth; the spatial scale of interactions; and herbivore and pathogen regulation by natural enemies. Our review of findings from TreeDivNet indicates that tree diversity experiments are extending BEF research across systems and scales, complementing previous BEF work in grasslands by providing opportunities to use remote sensing and spectral approaches to study BEF dynamics, integrate belowground and aboveground approaches, and trace the consequences of tree physiology for ecosystem functioning. This extension of BEF research into tree-dominated systems is improving ecologists’ capacity to understand the mechanistic bases behind BEF relationships. Tree diversity experiments also present opportunities for novel research. Since experimental tree diversity plantations enable measurements at tree, neighbourhood and plot level, they allow for explicit consideration of temporal and spatial scales in BEF dynamics. Presently, most TreeDivNet experiments have run for less than ten years. Given the longevity of trees, exciting results on BEF relationships are expected in the future.
Author Mereu, Simone
Nock, Charles
Parker, John
Bauhus, Jürgen
Vanhellemont, Margot
Messier, Christian
Muys, Bart
Staab, Michael
Verheyen, Kris
Grossman, Jake J.
Schuldt, Andreas
Ponette, Quentin
Cavender-Bares, Jeannine
Gravel, Dominique
Reich, Peter B.
Paquette, Alain
Barsoum, Nadia
Jactel, Hervé
Bruelheide, Helge
Ferlian, Olga
Zemp, Delphine Clara
Kreft, Holger
Perring, Michael P.
Weih, Martin
Scherer-Lorenzen, Michael
Castagneyrol, Bastien
Eisenhauer, Nico
Hector, Andy
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  surname: Grossman
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  email: gross679@umn.edu
  organization: Department of Ecology, Evolution, and Behavior, University of Minnesota, Twin Cities, 1479 Gortner Avenue, St. Paul, MN 55108, USA
– sequence: 2
  givenname: Margot
  surname: Vanhellemont
  fullname: Vanhellemont, Margot
  organization: Forest & Nature Lab, Department of Environment, Ghent University, Geraardsbergsesteenweg 267, 9090 Melle-Gontrode, Belgium
– sequence: 3
  givenname: Nadia
  surname: Barsoum
  fullname: Barsoum, Nadia
  organization: Centre for Ecosystems, Society, and Biosecurity, Forest Research, Alice Holt Lodge, Farnham, Surrey GU10 4LH, UK
– sequence: 4
  givenname: Jürgen
  surname: Bauhus
  fullname: Bauhus, Jürgen
  organization: Chair of Silviculture, Faculty of Environment and Natural Resources, Freiburg University, Tennenbacherstr. 4, 79108 Freiburg, Germany
– sequence: 5
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  surname: Bruelheide
  fullname: Bruelheide, Helge
  organization: Institute of Biology/Geobotany and Botanical Garden, Martin Luther University Halle-Wittenberg, Am Kirchtor 1, 06108 Halle (Saale), Germany
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  givenname: Bastien
  surname: Castagneyrol
  fullname: Castagneyrol, Bastien
  organization: BIOGECO, INRA, Univ. Bordeaux, 33610 Cestas, France
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  givenname: Jeannine
  surname: Cavender-Bares
  fullname: Cavender-Bares, Jeannine
  organization: Department of Ecology, Evolution, and Behavior, University of Minnesota, Twin Cities, 1479 Gortner Avenue, St. Paul, MN 55108, USA
– sequence: 8
  givenname: Nico
  surname: Eisenhauer
  fullname: Eisenhauer, Nico
  organization: German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany
– sequence: 9
  givenname: Olga
  surname: Ferlian
  fullname: Ferlian, Olga
  organization: German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany
– sequence: 10
  givenname: Dominique
  surname: Gravel
  fullname: Gravel, Dominique
  organization: Département de biologie, Faculté des sciences, Université de Sherbrooke, 2500 Boulevard Université, Sherbrooke J1K 2R1, Canada
– sequence: 11
  givenname: Andy
  surname: Hector
  fullname: Hector, Andy
  organization: Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK
– sequence: 12
  givenname: Hervé
  surname: Jactel
  fullname: Jactel, Hervé
  organization: BIOGECO, INRA, Univ. Bordeaux, 33610 Cestas, France
– sequence: 13
  givenname: Holger
  surname: Kreft
  fullname: Kreft, Holger
  organization: Biodiversity, Macroecology & Biogeography, University of Goettingen, Büsgenweg 1, 37077 Göttingen, Germany
– sequence: 14
  givenname: Simone
  surname: Mereu
  fullname: Mereu, Simone
  organization: Département de biologie, Faculté des sciences, Université de Sherbrooke, 2500 Boulevard Université, Sherbrooke J1K 2R1, Canada
– sequence: 15
  givenname: Christian
  surname: Messier
  fullname: Messier, Christian
  organization: Institute for the Study of Temperate Forests (ISFORT), University of Québec in Outaouais, 58 Rue Principale, Ripon, Québec J0 V 1V0, Canada
– sequence: 16
  givenname: Bart
  surname: Muys
  fullname: Muys, Bart
  organization: Division of Forest, Nature and Landscape, University of Leuven, Celestijnenlaan 200e—Box 2411, 3001 Leuven, Belgium
– sequence: 17
  givenname: Charles
  surname: Nock
  fullname: Nock, Charles
  organization: Chair of Silviculture, Faculty of Environment and Natural Resources, Freiburg University, Tennenbacherstr. 4, 79108 Freiburg, Germany
– sequence: 18
  givenname: Alain
  surname: Paquette
  fullname: Paquette, Alain
  organization: Centre for Forest Research, Département des sciences biologiques, Université du Québec à Montréal, Montreal, P.O. Box 8888, Centre-ville Station, H3C 3P8 Quebec, Canada
– sequence: 19
  givenname: John
  surname: Parker
  fullname: Parker, John
  organization: Smithsonian Environmental Research Center, 647 Contees Wharf Road, Edgewater, MD 21037, USA
– sequence: 20
  givenname: Michael P.
  surname: Perring
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  organization: Forest & Nature Lab, Department of Environment, Ghent University, Geraardsbergsesteenweg 267, 9090 Melle-Gontrode, Belgium
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  givenname: Quentin
  surname: Ponette
  fullname: Ponette, Quentin
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– sequence: 22
  givenname: Peter B.
  surname: Reich
  fullname: Reich, Peter B.
  organization: Department of Forest Resources, University of Minnesota, Twin Cities, 1530 Cleveland Ave. N., St. Paul, MN 55108, USA
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  givenname: Andreas
  surname: Schuldt
  fullname: Schuldt, Andreas
  organization: Institute of Biology/Geobotany and Botanical Garden, Martin Luther University Halle-Wittenberg, Am Kirchtor 1, 06108 Halle (Saale), Germany
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  surname: Staab
  fullname: Staab, Michael
  organization: Nature Conservation and Landscape Ecology, Faculty of Environment and Natural Resources, University of Freiburg, Tennenbacherstr. 4, 79106 Freiburg, Germany
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  surname: Scherer-Lorenzen
  fullname: Scherer-Lorenzen, Michael
  organization: Geobotany, Faculty of Biology, University of Freiburg, Schänzlestrasse 1, D-79104 Freiburg, Germany
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  givenname: Kris
  surname: Verheyen
  fullname: Verheyen, Kris
  organization: Forest & Nature Lab, Department of Environment, Ghent University, Geraardsbergsesteenweg 267, 9090 Melle-Gontrode, Belgium
BackLink https://hal.inrae.fr/hal-02624580$$DView record in HAL
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Keywords Research infrastructure
Pathogens
Plantation forest
Biodiversity experiment
Herbivory
Ecophysiology
herbivory
research infrastructure
pathogens
biodiversity experiment
ecophysiology
plantation forest
Language English
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Snippet •TreeDivNet is a global network of 25 tree biodiversity experiments.•A review of 158 publications reveals diversity affects tree growth, survival, and...
Despite considerable research demonstrating that biodiversity increases productivity in forests and regulates herbivory and pathogen damage, there remain gaps...
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SubjectTerms abiotic stress
Agricultural Science
biodiversity
Biodiversity experiment
Ecology
Ecophysiology
Ekologi
Environmental Sciences
foraging
forests
grasslands
herbivores
Herbivory
hosts
invertebrates
Jordbruksvetenskap
Life Sciences
longevity
Miljövetenskap
natural enemies
Pathogens
pests
Plantation forest
plantations
remote sensing
Research infrastructure
tree growth
trees
vertebrates
Title Synthesis and future research directions linking tree diversity to growth, survival, and damage in a global network of tree diversity experiments
URI https://dx.doi.org/10.1016/j.envexpbot.2017.12.015
https://www.proquest.com/docview/2237526472
https://hal.inrae.fr/hal-02624580
https://res.slu.se/id/publ/96008
Volume 152
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