Related Experiment Video
Updated: Jul 15, 2026

Assessing Structural Traits in Triticum aestivum and Zea mays for C3 and C4 Photosynthetic Differentiation Using Free-hand and Semi-thin Sections
Published on: July 12, 2024
Isoprene synthase expression and protein levels are reduced under elevated O3 but not under elevated CO2 (FACE) in
Carlo Calfapietra1, Amy E Wiberley, Tanya G Falbel
1Department of Forest Environment and Resources (DISAFRI), University of Tuscia, Via S.Camillo de Lellis snc, 01100 Viterbo, Italy. carlocalf@unitus.it
Abstract:
Emission of hydrocarbons by trees has a crucial role in the oxidizing potential of the atmosphere. In particular, isoprene oxidation leads to the formation of tropospheric ozone and other secondary pollutants. It is expected that changes in the composition of the atmosphere will influence the emission rate of isoprene, which may in turn feedback on the accumulation of pollutants and greenhouse gases. We investigated the isoprene synthase (ISPS) gene expression and the ISPS protein levels in aspen trees exposed to elevated ozone (O(3)) and/or elevated carbon dioxide (CO(2)) in field-grown trees at the Aspen Free-Air Carbon Dioxide Enrichment (FACE) experimental site. Elevated O(3) reduced ISPS mRNA and the amount of ISPS protein in aspen leaves, whereas elevated CO(2) had no significant effect. Aspen clones with different O(3) sensitivity showed different levels of inhibition under elevated O(3) conditions. The drop in ISPS protein levels induced a drop in the isoprene emission rate under elevated O(3). However, the data indicated that other mechanisms also contributed to the observed strong inhibition of isoprene emission under elevated O(3).
Related Concept Videos
The Calvin Benson Cycle
Carbon-dioxide Fixation
Regulation of Transpiration by Stomata
Chemical Factors Affecting Respiration Centers
CO2 has a potent influence on respiration and is strictly regulated. Under...
Inorganic Nitrogen Assimilation
Oxygenic Photosynthesis

