Influence of Ozone on the Stable Carbon Isotope Composition, δ13C, of Leaves and Grain of Spring Wheat (Triticum aestivum L.)
Author(s) -
Matthias Saurer,
Jürg Fuhrer,
U. Siegenthaler
Publication year - 1991
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.97.1.313
Subject(s) - photosynthesis , isotopes of carbon , carboxylation , fumigation , chemistry , ozone , stable isotope ratio , isotope , horticulture , botany , environmental chemistry , biology , total organic carbon , physics , organic chemistry , biochemistry , quantum mechanics , catalysis
The relative composition of stable carbon isotopes, delta(13)C, was determined in flag leaves and grain of spring wheat (Triticum aestivum L. cv Albis) grown in open-top field fumigation chambers and exposed to different O(3) levels during the growing season. The aim of the study was to establish exposure-response relationships for the radiation-weighted seasonal mean O(3) concentration and delta(13)C (relative deviation of the (13)C/(12)C ratio) values of the two plant parts. Samples were collected at harvest in 1986, 1987, and 1988. With increasing O(3) concentration, delta(13)C values increased (became less negative) proportionally. Year to year delta(13)C differences at equivalent O(3) concentrations were small. The shift in delta(13)C caused by O(3) was more pronounced in grain than in leaves. According to models of (13)C discrimination in C(3) plants, these results indicate increasing limitation of photosynthesis by CO(2) diffusion relative to limitation by carboxylation with increasing O(3) exposure. This conclusion is not in agreement with results from gas exchange analysis. Water use efficiency in green flag leaves tended to decrease with increasing O(3), indicating a dominating effect of O(3) on CO(2) carboxylation.
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