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  5. Stand Diversity Does Not Mitigate Increased Herbivory on Climate‐Matched Oaks in an Assisted Migration Experiment.

Stand Diversity Does Not Mitigate Increased Herbivory on Climate‐Matched Oaks in an Assisted Migration Experiment.

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Resource type
Journal article
Creator (person)
Felix, Juri A.
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Stevenson, Philip C.
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Barsoum, Nadia
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Koricheva, Julia
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Date published
January 13, 2025
Abstract

Assisted migration is a tree‐planting method where tree species or populations are translocated with the aim of establishing more climate‐resilient forests. However, this might potentially increase the susceptibility of translocated trees to herbivory. Stand diversification through planting trees in species or genotypic mixtures may reduce the amount of damage by insect pests, but its effectiveness in mitigation of excess herbivory on climate‐matched trees has seldom been explored. Using the Climate Match Experiment which manipulates both tree climatic provenance and stand diversity, we compared growth, insect herbivory and leaf traits of pedunculate oaks ( ) of local and Italian provenances in monocultures, provenance mixtures or species mixtures. Additionally, we investigated whether tree apparency and light availability cause variation in leaf traits and herbivory and tested whether these factors were influenced by stand diversity. We found that Italian oaks were subject to greater herbivore damage than those of local English provenance regardless of stand diversity and that insect herbivory in Italian oaks was higher on more apparent trees. Italian oaks also had lower concentrations of hydrolysable tannins than English oaks, but tannin concentrations were poor predictors of herbivory. Additionally, we show that leaf trait variation is strongly associated with differences in light availability. This study explores the interactive effects of assisted migration and stand diversification on leaf traits and herbivory using a tree diversity experiment in Southern England. Oaks of Italian provenance received more herbivory than oaks of the local provenance, revealing a potential downside of assisted migration. Increasing neighbourhood diversity did not mitigate higher herbivory. Additionally, light availability significantly affected oak leaf traits; however, this did not explain variation in herbivory.

Organisational unit
Science
Project(s)
Priority 2: Trait Diversity and Function
Funder
Funder nameISNIAwards
Forestry Commission, United Kingdom / European Regional Development Fund, European Union
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European INTERREG IV A 2 Mers Seas Zeeën Cross‐border Cooperation Programme 2007–2013 (Project 090316 016‐FR MULTIFOR: Management of Multi‐FunctionalForests)
Biotechnology and Biological Sciences Research Council, United Kingdom
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BB/M011178/1
Journal title
Plant, Cell & Environment
Article number
pce.15383
Publisher
John Wiley & Sons Ltd.
Place of publication
UK
ISSN
0140-7791
eISSN
1365-3040
Date accepted
December 31, 2024
Official URL
https://doi.org/10.1111/pce.15383
Rights statement
In Copyright
Licence
CC BY 4.0
DOI
10.1111/pce.15383
Alternate identifier
pce.15383
Keywords
Assisted migration
Climate matching
Monoculture
Quercus
Tree diversity
Oak
Chemical defences
Species mixture
Plant–herbivore interactions
Additional information
IF = 7.947 (2024-2025)
Managed by the British Library and supported by the AHRC

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