Literature DB >> 12804831

Ozone sensitivity of Fagus sylvatica and Fraxinus excelsior young trees in relation to leaf structure and foliar ozone uptake.

Giacomo Gerosa1, Riccardo Marzuoli, Filippo Bussotti, Marica Pancrazi, Antonio Ballarin-Denti.   

Abstract

During the summer of 2001, 2-year-old Fraxinus excelsior and Fagus sylvatica plants were subjected to ozone-rich environmental conditions at the Regional Forest Nursery at Curno (Northern Italy). Atmospheric ozone concentrations and stomatal conductance were measured, in order to calculate the foliar fluxes by means of a one-dimensional model. The foliar structure of both species was examined (thickness of the lamina and of the individual tissues, leaf mass per area, leaf density) and chlorophyll a fluorescence was determined as a response parameter. Stomatal conductance was always greater in Fraxinus excelsior, as was ozone uptake, although the highest absorption peaks did not match the peaks of ozone concentration in the atmosphere. The foliar structure can help explain this phenomenon: Fraxinus excelsior has a thicker mesophyll than Fagus sylvatica (indicating a greater photosynthesis potential) and a reduced foliar density. This last parameter, related to the apoplastic fraction, suggests a greater ability to disseminate the gases within the leaf as well as a greater potential detoxifying capacity. As foliar symptoms spread, the parameters relating to chlorophyll a fluorescence also change. PI (Performance Index, Strasser, A., Srivastava, A., Tsimilli-Michael, M., 2000. The fluorescence transient as a tool to characterize and screen photosynthetic samples. In: Yunus, M., Pathre, U., Mohanty, P., (Eds.) Probing Photosynthesis: Mechanisms, Regulation and Adaptation. Taylor & Francis, London, UK, pp. 445-483.) has proved to be a more suitable index than Fv/Fm (Quantum Yield Efficiency) to record the onset of stress conditions.

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Year:  2003        PMID: 12804831     DOI: 10.1016/s0269-7491(03)00094-0

Source DB:  PubMed          Journal:  Environ Pollut        ISSN: 0269-7491            Impact factor:   8.071


  3 in total

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2.  Phenylpropanoids are key players in the antioxidant defense to ozone of European ash, Fraxinus excelsior.

Authors:  Lorenzo Cotrozzi; Alessandra Campanella; Elisa Pellegrini; Giacomo Lorenzini; Cristina Nali; Elena Paoletti
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Authors:  Mohamed Chtouki; Fatima Laaziz; Rachida Naciri; Sarah Garré; Frederic Nguyen; Abdallah Oukarroum
Journal:  Sci Rep       Date:  2022-04-23       Impact factor: 4.996

  3 in total

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