HR: 11:35h
AN: B12C-06 [Abstracts]
TI: A Plant-Based Proxy for the Oxygen Isotope Ratio of Atmospheric Water Vapor
AU: * Helliker, B
EM: Helliker@sas.upenn.edu
AF: University of Pennsylvania, Dept. of Biology
433 S. University Ave, Philadelphia, PA 19104, United States
AB:
Atmospheric water vapor is a major component of the global hydrological cycle, but the isotopic balance of vapor
is largely unknown. It is shown here that the oxygen isotope ratio of leaf water in the epiphytic Crassulacean acid
metabolism (CAM) plant Tillandsia usneoides (Spanish Moss) is controlled by the oxygen isotope ratio of
atmospheric water vapor in both field and lab studies. Assuming that the leaf-water isotopic signature (and
hence the atmospheric water vapor signature) is recorded in plant organic material, the atmospheric water vapor
oxygen isotope ratios for Miami, Florida (USA) were reconstructed for several years from 1878 to 2005 using
contemporary and herbarium specimens. T. usneoides ranges from Virginia, USA southwards through the
tropics to Argentina, and the CAM epiphytic lifeform is widespread in other species. Therefore, epiphytes may be
used to reconstruct the isotope ratio of atmospheric water for spatial scales that span over 60° of latitude and
temporal scales that cover the last century of global temperature increase.
DE: 0315 Biosphere/atmosphere interactions (0426, 1610)
DE: 0424 Biosignatures and proxies
DE: 0454 Isotopic composition and chemistry (1041, 4870)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting