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Warming counteracts defoliation‐induced mismatch by increasing herbivore‐plant phenological synchrony

Ren Ping, Néron Valérie, Rossi Sergio, Liang Eryuan, Bouchard Mathieu et Deslauriers Annie. (2020). Warming counteracts defoliation‐induced mismatch by increasing herbivore‐plant phenological synchrony. Global Change Biology, 26, (4), p. 2072-2080.

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URL officielle: http://dx.doi.org/doi:10.1111/gcb.14991

Résumé

Climate change is altering phenology; however, the magnitude of this change varies among taxa. Compared with phenological mismatch between plants and herbivores, synchronization due to climate has been less explored, despite its potential implications for trophic interactions. The earlier budburst induced by defoliation is a phenological strategy for plants against herbivores. Here, we tested whether warming can counteract defoliation-induced mismatch by increasing herbivore-plant phenological synchrony. We compared the larval phenology of spruce budworm and budburst in balsam fir, black spruce, and white spruce saplings subjected to defoliation in a controlled environment at temperatures of 12, 17, and 22°C. Budburst in defoliated saplings occurred 6–24 days earlier than in the controls, thus mismatching needle development from larval feeding. This mismatch decreased to only 3–7 days, however, when temperatures warmed by 5 and 10°C, leading to a resynchronization of the host with spruce budworm larvae. The increasing synchrony under warming counteracts the defoliation-induced mismatch, disrupting trophic interactions and energy flow between forest ecosystem and insect populations. Our results suggest that the predicted warming may improve food quality and provide better growth conditions for larval development, thus promoting longer or more intense insect outbreaks in the future.

Type de document:Article publié dans une revue avec comité d'évaluation
ISSN:1354-1013
Volume:26
Numéro:4
Pages:p. 2072-2080
Version évaluée par les pairs:Oui
Date:2020
Identifiant unique:10.1111/gcb.14991
Sujets:Sciences naturelles et génie > Sciences appliquées > Climatologie et météorologie
Sciences naturelles et génie > Sciences appliquées > Foresterie et sciences du bois
Sciences naturelles et génie > Sciences naturelles > Biologie et autres sciences connexes
Département, module, service et unité de recherche:Départements et modules > Département des sciences fondamentales
Unités de recherche > Centre de recherche sur la Boréalie (CREB)
Mots-clés:boreal forest, budburst, Choristoneura fumiferana, global warming, outbreak, phenology
Déposé le:25 mai 2023 14:48
Dernière modification:25 mai 2023 14:48
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