Differences between tree stem CO

CO2/O2 ratio carbon dioxide transport mature trees oxygen consumption temperate forest vertical stem gradient

Journal

Plant, cell & environment
ISSN: 1365-3040
Titre abrégé: Plant Cell Environ
Pays: United States
ID NLM: 9309004

Informations de publication

Date de publication:
09 2023
Historique:
revised: 28 04 2023
received: 13 02 2023
accepted: 06 05 2023
medline: 3 8 2023
pubmed: 23 5 2023
entrez: 23 5 2023
Statut: ppublish

Résumé

Tree stem respiration (R

Identifiants

pubmed: 37219237
doi: 10.1111/pce.14614
doi:

Substances chimiques

Carbon Dioxide 142M471B3J
Carbon 7440-44-0

Types de publication

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

Langues

eng

Sous-ensembles de citation

IM

Pagination

2680-2693

Informations de copyright

© 2023 The Authors. Plant, Cell & Environment published by John Wiley & Sons Ltd.

Références

Acosta, M., Pavelka, M., Pokorný, R., Janouš, D. & Marek, M.V. (2008) Seasonal variation in CO2 efflux of stems and branches of Norway spruce trees. Annals of Botany, 101(3), 469-477.
Angert, A., Muhr, J., Negron Juarez, R., Alegria Muñoz, W., Kraemer, G., Ramirez Santillan, J., Barkan, E., Mazeh, S., Chambers, J.Q. & Trumbore, S.E. (2012) Internal respiration of Amazon tree stems greatly exceeds external CO2 efflux. Biogeosciences, 9(12), 4979-4991.
Angert, A. & Sherer, Y. (2011) Determining the relationship between tree-stem respiration and CO2 efflux by δO2/Ar measurements. Rapid Communications in Mass Spectrometry, 25(12), 1752-1756.
Aubrey, D.P., Boyles, J.G., Krysinsky, L.S. & Teskey, R.O. (2011) Spatial and temporal patterns of xylem sap pH derived from stems and twigs of Populus deltoides L. Environmental and Experimental Botany, 71(3), 376-381.
Aubrey, D.P. & Teskey, R.O. (2009) Root-derived CO2 efflux via xylem stream rivals soil CO2 efflux. New Phytologist, 184(1), 35-40.
Aubrey, D.P. & Teskey, R.O. (2021) Xylem transport of root-derived CO2 caused a substantial underestimation of belowground respiration during a growing season. Global Change Biology, 27, 2991-3000.
Ávila, E., Herrera, A. & Tezara, W. (2014) Contribution of stem CO2 fixation to whole-plant carbon balance in nonsucculent species. Photosynthetica, 52(1), 3-15.
Bénard, C. & Gibon, Y. (2016) Measurement of enzyme activities and optimization of continuous and discontinuous assays. Current Protocols in Plant Biology, 1(2), 247-262.
Berveiller, D. & Damesin, C. (2008) Carbon assimilation by tree stems: potential involvement of phosphoenolpyruvate carboxylase. Trees, 22(2), 149-157.
Bloemen, J., McGuire, M.A., Aubrey, D.P., Teskey, R.O. & Steppe, K. (2013) Transport of root-respired CO2 via the transpiration stream affects aboveground carbon assimilation and CO2 efflux in trees. New Phytologist, 197(2), 555-565.
Bowman, W.P., Barbour, M.M., Turnbull, M.H., Tissue, D.T., Whitehead, D. & Griffin, K.L. (2005) Sap flow rates and sapwood density are critical factors in within-and between-tree variation in CO2 efflux from stems of mature Dacrydium cupressinum trees. New Phytologist, 167(3), 815-828.
Burgess, S.S., Adams, M.A., Turner, N.C., Beverly, C.R., Ong, C.K., Khan, A.A. et al. (2001) An improved heat pulse method to measure low and reverse rates of sap flow in woody plants. Tree Physiology, 21(9), 589-598.
Caburatan, L. & Park, J. (2021) Differential expression, tissue-specific distribution, and posttranslational controls of phosphoenolpyruvate carboxylase. Plants, 10(9), 1887.
Campioli, M., Malhi, Y., Vicca, S., Luyssaert, S., Papale, D., Peñuelas, J. et al. (2016) Evaluating the convergence between eddy-covariance and biometric methods for assessing carbon budgets of forests. Nature Communications, 7(1), 1-12.
Ceschia, É., Damesin, C., Lebaube, S., Pontailler, J.-Y. & Dufrêne, É. (2002) Spatial and seasonal variations in stem respiration of beech trees (Fagus sylvatica). Annals of Forest Science, 59(8), 801-812.
Dejours, P. (1981) Control of respiration. Principles of Comparative Respiratory Physiology, 28, 185-220.
De Roo, L., Bloemen, J., Dupon, Y., Salomón, R.L. & Steppe, K. (2019) Axial diffusion of respired CO2 confounds stem respiration estimates during the dormant season. Annals of Forest Science, 76(2), 1-11.
De Roo, L., Salomón, R.L. & Steppe, K. (2020) Woody tissue photosynthesis reduces stem CO2 efflux by half and remains unaffected by drought stress in young Populus tremula trees. Plant, Cell & Environment, 43(4), 981-991.
De Schepper, V., Van Dusschoten, D., Copini, P., Jahnke, S. & Steppe, K. (2012) MRI links stem water content to stem diameter variations in transpiring trees. Journal of Experimental Botany, 63(7), 2645-2653.
Erda, F.G., Bloemen, J. & Steppe, K. (2014) Quantifying the impact of daily and seasonal variation in sap pH on xylem dissolved inorganic carbon estimates in plum trees. Plant Biology, 16(1), 43-48.
Fan, H., McGuire, M.A. & Teskey, R.O. (2017) Effects of stem size on stem respiration and its flux components in yellow-poplar (Liriodendron tulipifera L.) trees. Tree Physiology, 37(11), 1536-1545.
Fischer, S., Hanf, S., Frosch, T., Gleixner, G., Popp, J., Trumbore, S. et al. (2015) Pinus sylvestris switches respiration substrates under shading but not during drought. New Phytologist, 207(3), 542-550.
Gartner, B.L., Moore, J.R. & Gardiner, B.A. (2004) Gas in stems: abundance and potential consequences for tree biomechanics. Tree Physiology, 24(11), 1239-1250.
Gessler, A., Tcherkez, G., Karyanto, O., Keitel, C., Ferrio, J.P., Ghashghaie, J. et al. (2009) On the metabolic origin of the carbon isotope composition of CO2 evolved from darkened light-acclimated leaves in Ricinus communis. New Phytologist, 181(2), 374-386.
Goldstein, G., Andrade, J., Meinzer, F., Holbrook, N., Cavelier, J., Jackson, P. et al. (1998) Stem water storage and diurnal patterns of water use in tropical forest canopy trees. Plant, Cell & Environment, 21(4), 397-406.
Hanf, S., Fischer, S., Hartmann, H., Keiner, R., Trumbore, S., Popp, J. et al. (2015) Online investigation of respiratory quotients in Pinus sylvestris and Picea abies during drought and shading by means of cavity-enhanced Raman multi-gas spectrometry. Analyst, 140(13), 4473-4481.
Helm, J., Hartmann, H., Göbel, M., Hilman, B., Herrera, D.A. & Muhr, J. (2021) Low-cost chamber design for simultaneous CO2 and O2 flux measurements between tree stems and the atmosphere. Tree Physiology, 41(9), 1767-1780.
Hibberd, J.M. & Quick, W.P. (2002) Characteristics of C4 photosynthesis in stems and petioles of C3 flowering plants. Nature, 415(6870), 451-454.
Hilman, B. & Angert, A. (2016) Measuring the ratio of CO2 efflux to O2 influx in tree stem respiration. Tree Physiology, 36(11), 1422-1431.
Hilman, B., Muhr, J., Trumbore, S.E., Kunert, N., Carbone, M.S., Yuval, P. et al. (2019) Comparison of CO2 and O2 fluxes demonstrate retention of respired CO2 in tree stems from a range of tree species. Biogeosciences, 16(1), 177-191.
Hoch, G., Richter, A. & Körner, C. (2003) Non-structural carbon compounds in temperate forest trees. Plant, Cell & Environment, 26(7), 1067-1081.
Hoffland, E., van den Boogaard, R., Nelemans, J. & Findenegg, G. (1992) Biosynthesis and root exudation of citric and malic acids in phosphate-starved rape plants. New Phytologist, 122(4), 675-680.
Höll, W. (1974) Dark CO2 fixation by cell-free preparations of the wood of Robinia pseudoacacia. Canadian Journal of Botany, 52(4), 727-734.
Ivanov, A.G., Krol, M., Sveshnikov, D., Malmberg, G., Gardeström, P., Hurry, V. et al. (2006) Characterization of the photosynthetic apparatus in cortical bark chlorenchyma of Scots pine. Planta, 223, 1165-1177.
Junker, B.H., Lonien, J., Heady, L.E., Rogers, A. & Schwender, J. (2007) Parallel determination of enzyme activities and in vivo fluxes in Brassica napus embryos grown on organic or inorganic nitrogen source. Phytochemistry, 68(16-18), 2232-2242.
Kruse, J. & Adams, M.A. (2008) Integrating two physiological approaches helps relate respiration to growth of Pinus radiata. New Phytologist, 180(4), 841-852.
Landhäusser, S.M., Chow, P.S., Dickman, L.T., Furze, M.E., Kuhlman, I., Schmid, S. et al. (2018) Standardized protocols and procedures can precisely and accurately quantify non-structural carbohydrates. Tree Physiology, 38(12), 1764-1778.
Lavigne, M., Franklin, S., Hunt, Jr. E. (1996) Estimating stem maintenance respiration rates of dissimilar balsam fir stands. Tree Physiology, 16(8), 687-695.
Levy, P., Meir, P., Allen, S. & Jarvis, P. (1999) The effect of aqueous transport of CO2 in xylem sap on gas exchange in woody plants. Tree Physiology, 19(1), 53-58.
Maier, C.A., Johnsen, K.H., Clinton, B.D. & Ludovici, K.H. (2010) Relationships between stem CO2 efflux, substrate supply, and growth in young loblolly pine trees. New Phytologist, 185(2), 502-513.
Masiello, C., Gallagher, M., Randerson, J., Deco, R. & Chadwick, O. (2008) Evaluating two experimental approaches for measuring ecosystem carbon oxidation state and oxidative ratio. Journal of Geophysical Research: Biogeosciences, 113, G03010.
McGuire, M., Cerasoli, S. & Teskey, R. (2007) CO2 fluxes and respiration of branch segments of sycamore (Platanus occidentalis L.) examined at different sap velocities, branch diameters, and temperatures. Journal of Experimental Botany, 58(8), 2159-2168.
McGuire, M. & Teskey, R. (2002) Microelectrode technique for in situ measurement of carbon dioxide concentrations in xylem sap of trees. Tree Physiology, 22(11), 807-811.
McGuire, M. & Teskey, R. (2004) Estimating stem respiration in trees by a mass balance approach that accounts for internal and external fluxes of CO2. Tree Physiology, 24(5), 571-578.
Nakagawa, S. & Schielzeth, H. (2013) A general and simple method for obtaining R2 from generalized linear mixed-effects models. Methods in ecology and evolution, 4(2), 133-142.
Nobel, P.S. (2009) Physicochemical & environmental plant physiology, 4th edition. Academic Press.
O'Leary, B.M., Asao, S., Millar, A.H. & Atkin, O.K. (2019) Core principles which explain variation in respiration across biological scales. New Phytologist, 222(2), 670-686.
Pfanz, H., Aschan, G., Langenfeld-Heyser, R., Wittmann, C. & Loose, M. (2002) Ecology and ecophysiology of tree stems: corticular and wood photosynthesis. Naturwissenschaften, 89(4), 147-162.
Pinheiro, J., Bates, D., DebRoy, S., Sarkar, D. & Van Heisterkamp, S. et al. (2017) Package ‘nlme’. Linear and nonlinear mixed effects models, version 3. 1-96.
R Development Core Team. 2019. R: A language and environment for statistical computing. R Foundation for Statistical Computing.
Rodríguez-Calcerrada, J., Martin-StPaul, N.K., Lempereur, M., Ourcival, J.-M., del Rey, M.dC., Joffre, R. et al. (2014) Stem CO2 efflux and its contribution to ecosystem CO2 efflux decrease with drought in a Mediterranean forest stand. Agricultural and Forest Meteorology, 195, 61-72.
Ryan, M.G., Gower, S.T., Hubbard, R.M., Waring, R.H., Gholz, H.L., Cropper, W.P. et al. (1995) Woody tissue maintenance respiration of four conifers in contrasting climates. Oecologia, 101(2), 133-140.
Salomón, R.L., Rodríguez-Calcerrada, J. & Staudt, M. (2017) Carbon losses from respiration and emission of volatile organic compounds-the overlooked side of tree carbon budgets. In: Gil-Pelegrín, E., Peguero-Pina, J. & Sancho-Knapik, D. (Eds.) Oaks Physiological Ecology. Exploring the Functional Diversity of Genus Quercus L., Tree Physiology, 7. Springer, pp. 327-359.
Salomón, R.L., De Schepper, V., Valbuena-Carabaña, M., Gil, L. & Steppe, K. (2018) Daytime depression in temperature-normalised stem CO2 efflux in young poplar trees is dominated by low turgor pressure rather than by internal transport of respired CO2. New Phytologist, 217(2), 586-598.
Salomón, R., Valbuena-Carabaña, M., Teskey, R., McGuire, M.A., Aubrey, D., González-Doncel, I. et al. (2016) Seasonal and diel variation in xylem CO2 concentration and sap pH in sub-Mediterranean oak stems. Journal of Experimental Botany, 67(9), 2817-2827.
Saveyn, A., Steppe, K. & Lemeur, R. (2008) Report on non-temperature related variations in CO2 efflux rates from young tree stems in the dormant season. Trees, 22(2), 165-174.
Saveyn, A., Steppe, K., McGuire, M.A., Lemeur, R. & Teskey, R.O. (2008) Stem respiration and carbon dioxide efflux of young Populus deltoides trees in relation to temperature and xylem carbon dioxide concentration. Oecologia, 154(4), 637-649.
Schill, V., Hartung, W., Orthen, B. & Weisenseel, M.H. (1996) The xylem sap of maple (Acer platanoides) trees - sap obtained by a novel method shows changes with season and height. Journal of Experimental Botany, 47, 123-133.
Shane, M.W., Cramer, M.D., Funayama-Noguchi, S., Cawthray, G.R., Millar, A.H., Day, D.A. et al. (2004) Developmental physiology of cluster-root carboxylate synthesis and exudation in harsh hakea. Expression of phospho enol pyruvate carboxylase and the alternative oxidase. Plant Physiology, 135(1), 549-560.
Steppe, K., De Pauw, D.J., Doody, T.M. & Teskey, R.O. (2010) A comparison of sap flux density using thermal dissipation, heat pulse velocity and heat field deformation methods. Agricultural and Forest Meteorology, 150(7-8), 1046-1056.
Steppe, K., Saveyn, A., McGuire, M.A., Lemeur, R. & Teskey, R.O. (2007) Resistance to radial CO2 diffusion contributes to between-tree variation in CO2 efflux of Populus deltoides stems. Functional Plant Biology, 34(9), 785-792.
Steppe, K., Sterck, F. & Deslauriers, A. (2015) Diel growth dynamics in tree stems: linking anatomy and ecophysiology. Trends in Plant Science, 20(6), 335-343.
Sweetlove, L.J., Williams, T.C., Cheung, C.M. & Ratcliffe, R.G. (2013) Modelling metabolic CO2 evolution-a fresh perspective on respiration. Plant, Cell & Environment, 36(9), 1631-1640.
Tamrakar, R., Rayment, M.B., Moyano, F., Mund, M. & Knohl, A. (2018) Implications of structural diversity for seasonal and annual carbon dioxide fluxes in two temperate deciduous forests. Agricultural and Forest Meteorology, 263, 465-476.
Tarvainen, L., Henriksson, N., Näsholm, T. & Marshall, J.D. (2023) Among-species variation in sap pH affects the xylem CO2 transport potential in trees. New Phytologist, 238(3), 926-931.
Tcherkez, G., Boex-Fontvieille, E., Mahé, A. & Hodges, M. (2012) Respiratory carbon fluxes in leaves. Current Opinion in Plant Biology, 15(3), 308-314.
Teskey, R. & McGuire, M. (2007) Measurement of stem respiration of sycamore (Platanus occidentalis L.) trees involves internal and external fluxes of CO2 and possible transport of CO2 from roots. Plant, Cell & Environment, 30(5), 570-579.
Teskey, R.O., Saveyn, A., Steppe, K. & McGuire, M.A. (2008) Origin, fate and significance of CO2 in tree stems. New Phytologist, 177(1), 17-32.
Touraine, B., Muller, B. & Grignon, C. (1992) Effect of phloem-translocated malate on NO3− uptake by roots of intact soybean plants. Plant Physiology, 99(3), 1118-1123.
Trumbore, S.E., Angert, A., Kunert, N., Muhr, J. & Chambers, J.Q. (2013) What's the flux? Unraveling how CO2 fluxes from trees reflect underlying physiological processes. New Phytologist, 197(2), 353-355.
Yang, J., He, Y., Aubrey, D.P., Zhuang, Q. & Teskey, R.O. (2016) Global patterns and predictors of stem CO2 efflux in forest ecosystems. Global Change Biology, 22(4), 1433-1444.

Auteurs

Juliane Helm (J)

Department of Biogeochemical Processes, Max-Planck-Institute for Biogeochemistry, Jena, Germany.
Department of Environmental Sciences-Botany, Basel University, Basel, Switzerland.

Roberto L Salomón (RL)

Department of Natural Systems and Resources, Technical University of Madrid (UPM), Madrid, Spain.
Department of Plants and Crops, Laboratory of Plant Ecology, Faculty of Bioscience Engineering, Ghent University, Gent, Belgium.

Boaz Hilman (B)

Department of Biogeochemical Processes, Max-Planck-Institute for Biogeochemistry, Jena, Germany.

Jan Muhr (J)

Department of Biogeochemical Processes, Max-Planck-Institute for Biogeochemistry, Jena, Germany.
Department of Forest Botany and Tree Physiology, Laboratory for Radioisotopes, Georg-August University Göttingen, Göttingen, Germany.
Department of Bioclimatology, Georg-August University Göttingen, Göttingen, Germany.

Alexander Knohl (A)

Department of Bioclimatology, Georg-August University Göttingen, Göttingen, Germany.

Kathy Steppe (K)

Department of Plants and Crops, Laboratory of Plant Ecology, Faculty of Bioscience Engineering, Ghent University, Gent, Belgium.

Yves Gibon (Y)

UMR 1332 Biologie du Fruit et Pathologie, INRAE, University of Bordeaux, Villenave d'Ornon, France.

Cédric Cassan (C)

UMR 1332 Biologie du Fruit et Pathologie, INRAE, University of Bordeaux, Villenave d'Ornon, France.

Henrik Hartmann (H)

Department of Biogeochemical Processes, Max-Planck-Institute for Biogeochemistry, Jena, Germany.
Institute for Forest Protection, Julius Kühn-Institute, Federal Research Centre for Cultivated Plants, Quedlinburg, Germany.

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