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Oxygen isotope fractionations across individual leaf carbohydrates in grass and tree species
Authors:Marco M. Lehmann  Bruno Gamarra  Ansgar Kahmen  Rolf T.W. Siegwolf  Matthias Saurer
Affiliation:1. Laboratory of Atmospheric Chemistry, Paul Scherrer Institute (PSI), Villigen, Switzerland;2. Swiss Federal Institute for Forest, Snow and Landscape Research WSL, Birmensdorf, Switzerland;3. Institute of Agricultural Sciences, ETH Zurich, Zurich, Switzerland;4. Department of Environmental Sciences – Botany, University of Basel, Basel, Switzerland
Abstract:Almost no δ18O data are available for leaf carbohydrates, leaving a gap in the understanding of the δ18O relationship between leaf water and cellulose. We measured δ18O values of bulk leaf water (δ18OLW) and individual leaf carbohydrates (e.g. fructose, glucose and sucrose) in grass and tree species and δ18O of leaf cellulose in grasses. The grasses were grown under two relative humidity (rH) conditions. Sucrose was generally 18O‐enriched compared with hexoses across all species with an apparent biosynthetic fractionation factor (εbio) of more than 27‰ relative to δ18OLW, which might be explained by isotopic leaf water and sucrose synthesis gradients. δ18OLW and δ18O values of carbohydrates and cellulose in grasses were strongly related, indicating that the leaf water signal in carbohydrates was transferred to cellulose (εbio = 25.1‰). Interestingly, damping factor pexpx, which reflects oxygen isotope exchange with less enriched water during cellulose synthesis, responded to rH conditions if modelled from δ18OLW but not if modelled directly from δ18O of individual carbohydrates. We conclude that δ18OLW is not always a good substitute for δ18O of synthesis water due to isotopic leaf water gradients. Thus, compound‐specific δ18O analyses of individual carbohydrates are helpful to better constrain (post‐)photosynthetic isotope fractionation processes in plants.
Keywords:invertase  isomerization  non‐structural carbohydrates (NSC)  phosphoglucose isomerase  sucrose synthase  sugars  trioses
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