Monitoring of freezing dynamics in trees: a simple phase shift causes complexity
CHARRIER, Guillaume
Ecophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
Biodiversité, Gènes & Communautés [BioGeCo]
Department of Botany and Department of Ecology
Ecophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
Biodiversité, Gènes & Communautés [BioGeCo]
Department of Botany and Department of Ecology
NOLF, Markus
Department of Botany and Department of Ecology
Hawkesbury Institute for the Environment [Richmond] [HIE]
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Department of Botany and Department of Ecology
Hawkesbury Institute for the Environment [Richmond] [HIE]
CHARRIER, Guillaume
Ecophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
Biodiversité, Gènes & Communautés [BioGeCo]
Department of Botany and Department of Ecology
Ecophysiologie et Génomique Fonctionnelle de la Vigne [UMR EGFV]
Biodiversité, Gènes & Communautés [BioGeCo]
Department of Botany and Department of Ecology
NOLF, Markus
Department of Botany and Department of Ecology
Hawkesbury Institute for the Environment [Richmond] [HIE]
Department of Botany and Department of Ecology
Hawkesbury Institute for the Environment [Richmond] [HIE]
CHARRA-VASKOU, Katline
Laboratoire de Physique et Physiologie Intégratives de l’Arbre en environnement Fluctuant [PIAF]
Laboratoire de Physique et Physiologie Intégratives de l’Arbre en environnement Fluctuant [PIAF]
TAPPEINER, Ulrike
Department of Botany and Department of Ecology
Institute for Alpine Environment, Eurac Research
Department of Botany and Department of Ecology
Institute for Alpine Environment, Eurac Research
AMEGLIO, Thierry
Laboratoire de Physique et Physiologie Intégratives de l’Arbre en environnement Fluctuant [PIAF]
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Laboratoire de Physique et Physiologie Intégratives de l’Arbre en environnement Fluctuant [PIAF]
Language
en
Article de revue
This item was published in
Plant Physiology. 2017, vol. 173, n° 4, p. 2196-2207
Oxford University Press ; American Society of Plant Biologists
English Abstract
During winter, trees have to cope with harsh conditions, including extreme freeze-thaw stress. This study focused on ice nucleation and propagation, related water shifts and xylem cavitation, as well as cell damage and was ...Read more >
During winter, trees have to cope with harsh conditions, including extreme freeze-thaw stress. This study focused on ice nucleation and propagation, related water shifts and xylem cavitation, as well as cell damage and was based on in situ monitoring of xylem (thermocouples) and surface temperatures (infrared imaging), ultrasonic emissions, and dendrometer analysis. Field experiments during late winter on Picea abies growing at the alpine timberline revealed three distinct freezing patterns: (1) from the top of the tree toward the base, (2) from thin branches toward the main stem's top and base, and (3) from the base toward the top. Infrared imaging showed freezing within branches from their base toward distal parts. Such complex freezing causes dynamic and heterogenous patterns in water potential and probably in cavitation. This study highlights the interaction between environmental conditions upon freezing and thawing and demonstrates the enormous complexity of freezing processes in trees. Diameter shrinkage, which indicated water fluxes within the stem, and acoustic emission analysis, which indicated cavitation events near the ice front upon freezing, were both related to minimum temperature and, upon thawing, related to vapor pressure deficit and soil temperature. These complex patterns, emphasizing the common mechanisms between frost and drought stress, shed new light on winter tree physiology.Read less <
Keywords
stress thermique
cavitation
période hivernale
arbre forestier
camera infrarouge
dendromètre
English Keywords
heat stress
forest tree
European Project
AgreenSkills+
Origin
Hal imported