Cargando…

Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine

Sucrose has a unique role in recording environmental and physiological signals during photosynthesis in its carbon isotope composition (δ(13)C) and transport of the signal to tree rings. Yet, instead of sucrose, total organic matter (TOM) or water-soluble carbohydrates (WSC) are typically analysed i...

Descripción completa

Detalles Bibliográficos
Autores principales: Tang, Yu, Schiestl-Aalto, Paulina, Lehmann, Marco M, Saurer, Matthias, Sahlstedt, Elina, Kolari, Pasi, Leppä, Kersti, Bäck, Jaana, Rinne-Garmston, Katja T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786842/
https://www.ncbi.nlm.nih.gov/pubmed/36255219
http://dx.doi.org/10.1093/jxb/erac413
_version_ 1784858384092102656
author Tang, Yu
Schiestl-Aalto, Paulina
Lehmann, Marco M
Saurer, Matthias
Sahlstedt, Elina
Kolari, Pasi
Leppä, Kersti
Bäck, Jaana
Rinne-Garmston, Katja T
author_facet Tang, Yu
Schiestl-Aalto, Paulina
Lehmann, Marco M
Saurer, Matthias
Sahlstedt, Elina
Kolari, Pasi
Leppä, Kersti
Bäck, Jaana
Rinne-Garmston, Katja T
author_sort Tang, Yu
collection PubMed
description Sucrose has a unique role in recording environmental and physiological signals during photosynthesis in its carbon isotope composition (δ(13)C) and transport of the signal to tree rings. Yet, instead of sucrose, total organic matter (TOM) or water-soluble carbohydrates (WSC) are typically analysed in studies that follow δ(13)C signals within trees. To study how the choice of organic material may bias the interpretation of δ(13)C records, we used mature field-grown Scots pine (Pinus sylvestris) to compare for the first time δ(13)C of different leaf carbon pools with δ(13)C of assimilates estimated by a chamber-Picarro system (δ(13)C(A_Picarro)), and a photosynthetic discrimination model (δ(13)C(A_model)). Compared with sucrose, the other tested carbon pools, such as TOM and WSC, poorly recorded the seasonal trends or absolute values of δ(13)C(A_Picarro) and δ(13)C(A_model). Consequently, in comparison with the other carbon pools, sucrose δ(13)C was superior for reconstructing changes in intrinsic water use efficiency (iWUE), agreeing in both absolute values and intra-seasonal variations with iWUE estimated from gas exchange. Thus, deriving iWUE and environmental signals from δ(13)C of bulk organic matter can lead to misinterpretation. Our findings underscore the advantage of using sucrose δ(13)C to understand plant physiological responses in depth.
format Online
Article
Text
id pubmed-9786842
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-97868422022-12-27 Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine Tang, Yu Schiestl-Aalto, Paulina Lehmann, Marco M Saurer, Matthias Sahlstedt, Elina Kolari, Pasi Leppä, Kersti Bäck, Jaana Rinne-Garmston, Katja T J Exp Bot Research Papers Sucrose has a unique role in recording environmental and physiological signals during photosynthesis in its carbon isotope composition (δ(13)C) and transport of the signal to tree rings. Yet, instead of sucrose, total organic matter (TOM) or water-soluble carbohydrates (WSC) are typically analysed in studies that follow δ(13)C signals within trees. To study how the choice of organic material may bias the interpretation of δ(13)C records, we used mature field-grown Scots pine (Pinus sylvestris) to compare for the first time δ(13)C of different leaf carbon pools with δ(13)C of assimilates estimated by a chamber-Picarro system (δ(13)C(A_Picarro)), and a photosynthetic discrimination model (δ(13)C(A_model)). Compared with sucrose, the other tested carbon pools, such as TOM and WSC, poorly recorded the seasonal trends or absolute values of δ(13)C(A_Picarro) and δ(13)C(A_model). Consequently, in comparison with the other carbon pools, sucrose δ(13)C was superior for reconstructing changes in intrinsic water use efficiency (iWUE), agreeing in both absolute values and intra-seasonal variations with iWUE estimated from gas exchange. Thus, deriving iWUE and environmental signals from δ(13)C of bulk organic matter can lead to misinterpretation. Our findings underscore the advantage of using sucrose δ(13)C to understand plant physiological responses in depth. Oxford University Press 2022-10-18 /pmc/articles/PMC9786842/ /pubmed/36255219 http://dx.doi.org/10.1093/jxb/erac413 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the Society for Experimental Biology. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Tang, Yu
Schiestl-Aalto, Paulina
Lehmann, Marco M
Saurer, Matthias
Sahlstedt, Elina
Kolari, Pasi
Leppä, Kersti
Bäck, Jaana
Rinne-Garmston, Katja T
Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine
title Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine
title_full Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine
title_fullStr Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine
title_full_unstemmed Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine
title_short Estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)C of leaf sucrose in Scots pine
title_sort estimating intra-seasonal photosynthetic discrimination and water use efficiency using δ(13)c of leaf sucrose in scots pine
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786842/
https://www.ncbi.nlm.nih.gov/pubmed/36255219
http://dx.doi.org/10.1093/jxb/erac413
work_keys_str_mv AT tangyu estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT schiestlaaltopaulina estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT lehmannmarcom estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT saurermatthias estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT sahlstedtelina estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT kolaripasi estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT leppakersti estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT backjaana estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine
AT rinnegarmstonkatjat estimatingintraseasonalphotosyntheticdiscriminationandwateruseefficiencyusingd13cofleafsucroseinscotspine