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Effects of leaf water evaporative 2H‐enrichment and biosynthetic fractionation on leaf wax n‐alkane δ2H values in C3 and C4 grasses
Authors:B. Gamarra  D. Sachse  A. Kahmen
Affiliation:1. Department of Environmental Systems Sciences, ETH Zürich, Zurich, Switzerland;2. Department of Environmental Sciences – Botany, University of Basel, Basel, Switzerland;3. Institut für Erd‐ und Umweltwissenschaften, Universit?t Potsdam, Potsdam, Germany;4. Section 5.1: Geomorphology, Helmholtz Centre Potsdam ‐ GFZ German Research Centre for Geosciences, Potsdam, Germany
Abstract:Leaf wax n‐alkane δ2H values carry important information about environmental and ecophysiological processes in plants. However, the physiological and biochemical drivers that shape leaf wax n‐alkane δ2H values are not completely understood. It is particularly unclear why n‐alkanes in grasses are typically 2H‐depleted compared with plants from other taxonomic groups such as dicotyledonous plants and why C3 grasses are 2H‐depleted compared with C4 grasses. To resolve these uncertainties, we quantified the effects of leaf water evaporative 2H‐enrichment and biosynthetic hydrogen isotope fractionation on n‐alkane δ2H values for a range of C3 and C4 grasses grown in climate‐controlled chambers. We found that only a fraction of leaf water evaporative 2H‐enrichment is imprinted on the leaf wax n‐alkane δ2H values in grasses. This is interesting, as previous studies have shown in dicotyledonous plants a nearly complete transfer of this 2H‐enrichment to the n‐alkane δ2H values. We thus infer that the typically observed 2H‐depletion of n‐alkanes in grasses (as opposed to dicots) is because only a fraction of the leaf water evaporative 2H‐enrichment is imprinted on the δ2H values. Our experiments also show that differences in n‐alkane δ2H values between C3 and C4 grasses are largely the result of systematic differences in biosynthetic fractionation between these two plant groups, which was on average ?198‰ and?159‰ for C3 and C4 grasses, respectively.
Keywords:biosynthetic fractionation  C3 and C4 grasses  deuterium  leaf water evaporative 2H‐enrichment  leaf wax n‐alkanes
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