The quandary of sources and sinks of CO2 efflux in tree stems—new insights and future directions

Author:

Salomón Roberto L123,Helm Juliane45,Gessler Arthur67,Grams Thorsten E E8,Hilman Boaz4,Muhr Jan910,Steppe Kathy23ORCID,Wittmann Christiane1112,Hartmann Henrik413ORCID

Affiliation:

1. Universidad Politécnica de Madrid (UPM), Departamento de Sistemas y Recursos Naturales, Research Group FORESCENT , Antonio Novais 10, 28040, Madrid , Spain

2. Department of Plants and Crops , Laboratory of Plant Ecology, , Coupure Links 653, 9000 Ghent , Belgium

3. Ghent University, Faculty of Bioscience Engineering , Laboratory of Plant Ecology, , Coupure Links 653, 9000 Ghent , Belgium

4. Max-Planck-Institute for Biogeochemistry, Biogeochemical Processes , Hans-Knöll-Str. 10, 07743 Jena , Germany

5. Department of Environmental Sciences – Botany, Basel University , Schönbeinstr. 6, Basel CH-4056 , Switzerland

6. Swiss Federal Institute for Forest, Snow and Landscape Research WSL , Zurcherstrasse 111, 8903 Birmensdorf , Switzerland

7. Institute of Terrestrial Ecosystems , ETH Zürich, Rämistrasse 101, 8902 Zurich , Switzerland

8. Technical University of Munich, Ecophysiology of Plants, Land Surface – Atmosphere Interactions , Von-Carlowitz-Platz 2, 85354 Freising , Germany

9. Department of Forest Botany and Tree Physiology , Laboratory for Radioisotopes, , Büsgenweg 2, 37077 Göttingen , Germany

10. Georg-August Universität Göttingen , Laboratory for Radioisotopes, , Büsgenweg 2, 37077 Göttingen , Germany

11. Faculty of Biology , Botanical Garden, , Universitätsstrasse 5, 45117 Essen , Germany

12. University of Duisburg-Essen , Botanical Garden, , Universitätsstrasse 5, 45117 Essen , Germany

13. Institute for Forest Protection, Julius Kühn Institute Federal Research Centre for Cultivated Plants , Erwin-Baur-Straße 27, 06484 Quedlinburg , Germany

Abstract

Abstract Stem respiration (RS) substantially contributes to the return of photo assimilated carbon to the atmosphere and, thus, to the tree and ecosystem carbon balance. Stem CO2 efflux (ECO2) is often used as a proxy for RS. However, this metric has often been challenged because of the uncertain origin of CO2 emitted from the stem due to post-respiratory processes. In this Insight, we (i) describe processes affecting the quantification of RS, (ii) review common methodological approaches to quantify and model RS and (iii) develop a research agenda to fill the most relevant knowledge gaps that we identified. Dissolution, transport and accumulation of respired CO2 away from its production site, reassimilation of respired CO2 via stem photosynthesis and the enzyme phosphoenolpyruvate carboxylase, axial CO2 diffusion in the gas phase, shifts in the respiratory substrate and non-respiratory oxygen (O2) consumption are the most relevant processes causing divergence between RS and measured stem gas exchange (ECO2 or O2 influx, IO2). Two common methodological approaches to estimate RS, namely the CO2 mass balance approach and the O2 consumption technique, circumvent some of these processes but have yielded inconsistent results regarding the fate of respired CO2. Stem respiration modelling has recently progressed at the organ and tree levels. However, its implementation in large-scale models, commonly operated from a source-driven perspective, is unlikely to reflect adequate mechanisms. Finally, we propose hypotheses and approaches to advance the knowledge of the stem carbon balance, the role of sap pH on RS, the reassimilation of respired CO2, RS upscaling procedures, large-scale RS modelling and shifts in respiratory metabolism during environmental stress.

Publisher

Oxford University Press (OUP)

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