Extreme triple oxygen isotope fractionation in Equisetum.
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sharp-et-al-2025-extreme-triple-oxygen-isotope-fractionation-in-equisetum.pdf
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2.27 MB
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Resource type
Journal article
Creator (person)
Sharp, Zachary
Wostbrock, Jordan
Gargano, Anthony
Hare, Vincent
Johnson, Jessica
Cerling, Thure
Banerjee, Payal
Peshek, Catherine
Knutson, Cloe
Hartzell, Lauren
Cano, Erick
Stiles, Elena
Bassett, Kelley R.
Holland, Kira
Dowd, Michael H.
Sae-Lim, Jarunetr (Nadia)
Dominguez, Teresa
Bryant, Dalton
Di Marcantonio, Eduardo
Wainwright, Jensen
Horsford, Maxwell
Botté, Paul
Gagnon, Catherine
Rudall, Paula J.
Ehleringer, James
Date published
October 28, 2025
Abstract
Triple oxygen isotope values of xylem water were measured along the length of smoothhorsetail stems (Equisetum laevigatum). Extreme isotope enrichment is observed mov-ing from base to stem tip. δ18O values range from −8.3‰ at the base to 82.6‰ at thetip. Δ′17O values range from 0 to −1,797 per meg. The δ18O and Δ′17O values are themost extreme measured for any terrestrial material and expand the known range ofΔ′17O values by fivefold for mass-dependent fractionation on Earth. The extreme isotopeenrichments are explained using a hybrid evaporation/chain-of-lakes model, allowing usto refine the leaf respiration coefficient to θk = 0.511 ± 0.001. This new value is requiredto explain the low Δ′17O values previously measured in desert plants and animals andis critical when using fossil samples for paleoclimate reconstruction. Coexisting phy-toliths and stem water were also measured. The 1000ln18αsilica-water value at the plantbase (35.89‰) appears to be in isotopic equilibrium, with far smaller fractionationsof 10.3‰ near the tip. The smaller fractionations at higher levels are explained bycontinual silica deposition as the plant elongates and the δ18O values of each segmentbecome higher. The overall integrated phytolith value is a combination of early and latesilica growth. The Δ′17Osilica − Δ′17Owater values are not in equilibrium, explained by akinetic isotope effect, with a λ value of 0.5205 vs. 0.5244 for equilibrium. Phytolithisotope values may lead to erroneous interpretations for paleoclimate reconstruction.
Project(s)
Priority 2: Trait Diversity and Function
Funder
| Funder name | Awards |
State of New Mexico, United States | |
National Science Foundation, United States | |
National Aeronautics and Space Administration, United States | |
Journal title
Proceedings of the National Academy of Sciences
Volume
122
Issue
44
Article number
e2507455122
Publisher
Proceedings of the National Academy of Sciences
Place of publication
Washington, D.C., U.S.
ISSN
0027-8424
eISSN
1091-6490
Date accepted
September 30, 2025
Official URL
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In Copyright
Additional information
IF = 9.1 (2024)