Extreme triple oxygen isotope fractionation in <i>Equisetum</i>
Abstract
Triple oxygen isotope values of xylem water were measured along the length of smooth horsetail stems ( Equisetum laevigatum ). Extreme isotope enrichment is observed moving from base to stem tip. δ 18 O values range from −8.3‰ at the base to 82.6‰ at the tip. Δ′ 17 O values range from 0 to −1,797 per meg. The δ 18 O and Δ′ 17 O values are the most extreme measured for any terrestrial material and expand the known range of Δ′ 17 O values by fivefold for mass-dependent fractionation on Earth. The extreme isotope enrichments are explained using a hybrid evaporation/chain-of-lakes model, allowing us to refine the leaf respiration coefficient to θ k = 0.511 ± 0.001. This new value is required to explain the low Δ′ 17 O values previously measured in desert plants and animals and is critical when using fossil samples for paleoclimate reconstruction. Coexisting phytoliths and stem water were also measured. The 1000 ln 18 α silica-water value at the plant base (35.89‰) appears to be in isotopic equilibrium, with far smaller fractionations of 10.3‰ near the tip. The smaller fractionations at higher levels are explained by continual silica deposition as the plant elongates and the δ 18 O values of each segment become higher. The overall integrated phytolith value is a combination of early and late silica growth. The Δ′ 17 O silica − Δ′ 17 O water values are not in equilibrium, explained by a kinetic isotope effect, with a λ value of 0.5205 vs. 0.5244 for equilibrium. Phytolith isotope values may lead to erroneous interpretations for paleoclimate reconstruction.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (25)
Zachary Sharp
Department of Earth and Planetary Sciences, University of New Mexico
Jordan Wostbrock
Earth and Planetary Sciences, Yale University
Anthony Gargano
Lunar and Planetary Institute
Vincent Hare
Department of Archaeology, University of Cape Town
Jessica Johnson
Thure Cerling
Geology and Geophysics, University of Utah
Payal Banerjee
Department of Earth and Planetary Sciences, University of New Mexico
Catherine Peshek
Department of Earth and Planetary Sciences, University of New Mexico
Cloe Knutson
Department of Earth and Planetary Sciences, University of New Mexico
Lauren Hartzell
Department of Earth and Planetary Sciences, University of New Mexico
Erick Cano
University of California Santa Cruz Stable Isotope Lab, University of California Santa Cruz
Elena Stiles
Department of Biology, University of Washington
Kelley R. Bassett
Kira Holland
Earth and Atmospheric Sciences, University of Alberta
Michael H. Dowd
Department of Oceanography, University of Hawaii at Mānoa
Jarunetr (Nadia) Sae-Lim
Department of Earth System Science, University of California at Irvine
Teresa Dominguez
Department of Geological Sciences, The University of Alabama
Dalton Bryant
Department of Geological Sciences, The University of Alabama
Eduardo Di Marcantonio
Department of Earth Sciences, University of Rome
Jensen Wainwright
Department of Anthropology, University of Oregon
Maxwell Horsford
Department of Chemistry, SUNY College of Environmental Science and Forestry
Paul Botté
Centre for Research and Teaching in Environmental Geoscience, French National Centre for Scientific Research
Catherine Gagnon
Department of Earth, Environmental, and Planetary Sciences, Brown University
Paula J. Rudall
Royal Botanic Gardens, Kew
James Ehleringer
School of Biological Sciences, University of Utah