Plant responses to volcanically elevated CO<sub>2</sub> in two Costa Rican forests
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Published:2019-04-01
Issue:6
Volume:16
Page:1343-1360
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ISSN:1726-4189
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Container-title:Biogeosciences
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language:en
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Short-container-title:Biogeosciences
Author:
Bogue Robert R., Schwandner Florian M.ORCID, Fisher Joshua B.ORCID, Pavlick Ryan, Magney Troy S., Famiglietti Caroline A., Cawse-Nicholson Kerry, Yadav Vineet, Linick Justin P., North Gretchen B.ORCID, Duarte Eliecer
Abstract
Abstract. We explore the use of active volcanoes to determine the short- and
long-term effects of elevated CO2 on tropical trees. Active
volcanoes continuously but variably emit CO2 through diffuse
emissions on their flanks, exposing the overlying ecosystems to elevated
levels of atmospheric CO2. We found tight correlations
(r2=0.86 and r2=0.74) between wood stable carbon isotopic
composition and co-located volcanogenic CO2 emissions for two of
three investigated species (Oreopanax xalapensis and
Buddleja nitida), which documents the long-term photosynthetic
incorporation of isotopically heavy volcanogenic carbon into wood biomass.
Measurements of leaf fluorescence and chlorophyll concentration suggest that
volcanic CO2 also has measurable short-term functional impacts on
select species of tropical trees. Our findings indicate significant potential
for future studies to utilize ecosystems located on active volcanoes as
natural experiments to examine the ecological impacts of elevated atmospheric
CO2 in the tropics and elsewhere. Results also point the way toward
a possible future utilization of ecosystems exposed to volcanically elevated
CO2 to detect changes in deep volcanic degassing by using selected
species of trees as sensors.
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference99 articles.
1. Abrams, M., Tsu, H., Hulley, G., Iwao, K., Pieri, D., Cudahy, T., and Kargel,
J.: 2015. The advanced spaceborne thermal emission and reflection radiometer
(ASTER) after fifteen years: review of global products, Int. J. Appl. Earth
Obs., 38, 292–301, https://doi.org/10.1016/j.jag.2015.01.013, 2015. 2. Ainsworth, E. A. and Long, S. P.: What have we learned from 15 years of
free-air CO2 enrichment (FACE)? A meta-analytic review of the
responses of photosynthesis, canopy properties and plant production to rising
CO2, New Phytol., 165, 351–372,
https://doi.org/10.1111/j.1469-8137.2004.01224.x, 2005. 3. Aiuppa, A., Caleca, A., Federico, C., Gurrieri, S., and Valenza, M.: Diffuse
degassing of carbon dioxide at Somma–Vesuvius volcanic complex (Southern
Italy) and its relation with regional tectonics, J. Volcanol. Geotherm. Res.,
133, 55–79, https://doi.org/10.1016/S0377-0273(03)00391-3, 2004. 4. Alvarado, G. E., Carr, M. J., Turrin, B. D., Swisher, C. C., Schmincke,
H.-U., and Hudnut, K. W.: Recent volcanic history of Irazú volcano, Costa
Rica: Alternation and mixing of two magma batches, and pervasive mixing, in:
Special Paper 412, Volcanic Hazards in Central America, vol. 412, Geological
Society of America, 259–276, 2006. 5. Baker, N. R. and Oxborough, K.: Chlorophyll Fluorescence as a Probe of
Photosynthetic Productivity, in: Chlorophyll a Fluorescence, Springer,
Dordrecht, 65–82, 2004.
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