Carbon Isotope Composition, Macronutrient Concentrations, and Carboxylating Enzymes in Relation to the Growth of Pinus halepensis Mill. When Subject to Ozone Stress

Author:

Inclán Rosa,Gimeno Benjamín S.,Peñuelas Josep,Gerant Dominique,Quejido Alberto

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modelling,Environmental Chemistry,Environmental Engineering

Reference61 articles.

1. Alonso, R., Elvira, S., Inclán, R., Bermejo, V., Castillo, F. J., & Gimeno, B. S. (2003). Responses of Aleppo pine to ozone. In D. F. Karnosky, K. E. Percy, A. H. Chappelka, C. Simpson, & J. Pikkarainen (Eds.), Air pollution, global change and forests in the new millenium (pp. 359–374). Oxford: Elsevier.

2. Andersen, C. P. (2003). Source-sink balance and carbon allocation below ground in plants exposed to ozone. New Phytolosist, 157, 213–228.

3. Anttonen, S., Kittilä, M., & Kärenlampi, L. (1998). Impacts of ozone on Aleppo pine needles: Visible symptoms, starch concentrations and stomatal responses. Chemosphere, 36, 663–668.

4. Baker, T. R., Allen, H. L., Schoeneberger, M. M., & Kress, L. W. (1994). Nutritional response of loblolly pine exposed to ozone and simulated acid rain. Canadian Journal of Forest Research, 24, 453–461.

5. Barnes, J., Gimeno, B., Davison, A., Dizengremel, P., Gerant, D., Bussotti, F., et al. (2000). Air pollution impacts on pine forests in the Mediterranean Basin. In G. Ne‘emana & L. Trabaud (Eds.), Ecology, biogeography and management of Pinus halepensis and P. brutia forest ecosystems in the Mediterranean Basin (pp. 391–404). Leiden: Backhuys Publishers.

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