Photosynthetic and defensive responses of two Mediterranean oaks to insect leaf herbivory.

Lymantria dispar Quercus coccifera Quercus pubescens chemical defenses light response curves physical defenses

Journal

Tree physiology
ISSN: 1758-4469
Titre abrégé: Tree Physiol
Pays: Canada
ID NLM: 100955338

Informations de publication

Date de publication:
08 11 2022
Historique:
received: 29 12 2021
accepted: 11 06 2022
pubmed: 30 6 2022
medline: 16 11 2022
entrez: 29 6 2022
Statut: ppublish

Résumé

Insect herbivory is a dominant interaction across virtually all ecosystems globally and has dramatic effects on plant function such as reduced photosynthesis activity and increased levels of defenses. However, most previous work assessing the link between insect herbivory, photosynthesis and plant defenses has been performed on cultivated model plant species, neglecting a full understanding of patterns in natural systems. In this study, we performed a field experiment to investigate the effects of herbivory by a generalist foliar feeding insect (Lymantria dispar) and leaf mechanical damage on multiple leaf traits associated with defense against herbivory and photosynthesis activity on two sympatric oak species with contrasting leaf habit (the evergreen Quercus coccifera L. and the deciduous Quercus pubescens Willd). Our results showed that, although herbivory treatments and oak species did not strongly affect photosynthesis and dark respiration, these two factors exerted interactive effects. Insect herbivory and mechanical damage (vs control) decreased photosynthesis activity for Q. coccifera but not for Q. pubescens. Insect herbivory and mechanical damage tended to increase chemical (increased flavonoid and lignin concentration) defenses, but these effects were stronger for Q. pubescens. Overall, this study shows that two congeneric oak species with contrasting leaf habit differ in their photosynthetic and defensive responses to insect herbivory. While the evergreen oak species followed a more conservative strategy (reduced photosynthesis and higher physical defenses), the deciduous oak species followed a more acquisitive strategy (maintained photosynthesis and higher chemical defenses).

Identifiants

pubmed: 35766868
pii: 6619485
doi: 10.1093/treephys/tpac067
pmc: PMC9832970
doi:

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

2282-2293

Informations de copyright

© The Author(s) 2022. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

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Auteurs

Nikolaos M Fyllas (NM)

Biodiversity Conservation Lab, Department of Environment, University of the Aegean, Mytilene 81100, Greece.

Despina Chrysafi (D)

Biodiversity Conservation Lab, Department of Environment, University of the Aegean, Mytilene 81100, Greece.

Dimitrios N Avtzis (DN)

Forest Research Institute, Hellenic Agricultural Organization, Thessaloniki 57006, Greece.

Xoaquín Moreira (X)

Misión Biológica de Galicia (MBG-CSIC), Apartado de Correos 28, Pontevedra, Galicia 36080, Spain.

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