Partial asynchrony of coniferous forest carbon sources and sinks at the intra-annual time scale
J_ČLÁNEK
Date
2024Author
Silvestro, Roberto
Mencuccini, Maurizio
García-Valdés, Raúl
Antonucci, Serena
Arzac, Alberto
Biondi, Franco
Buttò, Valentina
Camarero, J. Julio
Campelo, Filipe
Cochard, Hervé
Čufar, Katarina
Cuny, Henri E.
de Luis, Martin
Deslauriers, Annie
Drolet, Guillaume
Fonti, Marina V.
Fonti, Patrick
Giovannelli, Alessio
Gričar, Jožica
Gruber, Andreas
Gryc, Vladimír
Kašpar, Jakub
Treml, Václav
Urban, Josef
Vavrčík, Hanuš
+ 48 Authors
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Show full item recordAbstract
As major terrestrial carbon sinks, forests play an important role in mitigating climate change. The relationship between the seasonal uptake of carbon and its allocation to woody biomass remains poorly understood, leaving a significant gap in our capacity to predict carbon sequestration by forests. Here, we compare the intra-annual dynamics of carbon fluxes and wood formation across the Northern hemisphere, from carbon assimilation and the formation of non-structural carbon compounds to their incorporation in woody tissues. We show temporally coupled seasonal peaks of carbon assimilation (GPP) and wood cell differentiation, while the two processes are substantially decoupled during off-peak periods. Peaks of cambial activity occur substantially earlier compared to GPP, suggesting the buffer role of non-structural carbohydrates between the processes of carbon assimilation and allocation to wood. Our findings suggest that high-resolution seasonal data of ecosystem carbon fluxes, wood formation and the associated physiological processes may reduce uncertainties in carbon source-sink relationships at different spatial scales, from stand to ecosystem levels.