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Protease- and Acid-catalyzed Labeling Workflows Employing 18O-enriched Water
Published on: February 20, 2013
Isotope geochemistry. Biological signatures in clumped isotopes of O₂
Laurence Y Yeung1, Jeanine L Ash2, Edward D Young3
1Department of Earth, Planetary, and Space Sciences, University of California, Los Angeles, CA 90095, USA. Department of Earth Science, Rice University, Houston, TX 77005, USA. lyeung@rice.edu jlash@ucla.edu.
Abstract:
The abundances of molecules containing more than one rare isotope have been applied broadly to determine formation temperatures of natural materials. These applications of "clumped" isotopes rely on the assumption that isotope-exchange equilibrium is reached, or at least approached, during the formation of those materials. In a closed-system terrarium experiment, we demonstrate that biological oxygen (O2) cycling drives the clumped-isotope composition of O2 away from isotopic equilibrium. Our model of the system suggests that unique biological signatures are present in clumped isotopes of O2—and not formation temperatures. Photosynthetic O2 is depleted in (18)O(18)O and (17)O(18)O relative to a stochastic distribution of isotopes, unlike at equilibrium, where heavy-isotope pairs are enriched. Similar signatures may be widespread in nature, offering new tracers of biological and geochemical cycling.
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