Hydrogen isotope fractionation in plants with C3, C4, and CAM CO2 fixation

Journal Publication ResearchOnline@JCU
Schuler, Philipp;Rehmann, Oliver;Vitali, Valentina;Saurer, Matthias;Oettli, Manuela;Cernusak, Lucas A.;Gessler, Arthur;Buchmann, Nina;Lehmann, Marco
Abstract

Measurements of stable isotope ratios in organic compounds are widely used tools for plant ecophysiological studies. However, the complexity of the processes involved in shaping hydrogen isotope values (δ2H) in plant carbohydrates has limited its broader application. To investigate the underlying biochemical processes responsible for 2H fractionation among water, sugars, and cellulose in leaves, we studied the three main CO2 fixation pathways (C3, C4, and CAM) and their response to changes in temperature and vapor pressure deficit (VPD). We show significant differences in autotrophic 2H fractionation (εA) from water to sugar among the pathways and their response to changes in air temperature and VPD. The strong 2H depleting εA in C3 plants is likely driven by the photosynthetic H+ production within the thylakoids, a reaction that is spatially separated in C4 and strongly reduced in CAM plants, leading to the absence of 2H depletion in the latter two types. By contrast, we found that the heterotrophic 2H-fractionation (εH) from sugar to cellulose was very similar among the three pathways and is likely driven by the plant's metabolism, rather than by isotopic exchange with leaf water. Our study offers new insights into the biochemical drivers of 2H fractionation in plant carbohydrates.

Journal

New Phytologist

Publication Name

New Phytologist

Volume

244

ISBN/ISSN

1469-8137

Edition

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Issue

2

Pages Count

19

Location

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Publisher

Cambridge University Press

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Publish Date

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Date

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EISSN

N/A

DOI

10.1111/nph.20057