Alessandra Campanella
University of Pisa
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Featured researches published by Alessandra Campanella.
Plant Physiology and Biochemistry | 2014
Anne Sarah Döring; Elisa Pellegrini; Alessandra Campanella; Alice Trivellini; Clizia Gennai; Maike Petersen; Cristina Nali; Giacomo Lorenzini
Lemon balm (Melissa officinalis, L.; Lamiaceae) was exposed to realistic ozone (O3) dosages (80 ppb for 5 h), because high background levels of O3 are considered to be as harmful as episodic O3 regimes. Temporal alterations of different ecophysiological, biochemical and structural parameters were investigated in order to test if this species can be considered as an O3-bioindicator regarding changes in background concentrations. At the end of ozone exposure, the plants did not exhibit any visible foliar symptoms, as only at microscopic level a small number of dead cells were found. Photosynthetic processes, however, were significantly affected. During and after the treatment, ozone induced a reduction in CO2 fixation capacity (up to 52% after 12 h from the beginning of the treatment) due to mesophyllic limitations. Intercellular CO2 concentration significantly increased in comparison to controls (+90% at the end of the post-fumigation period). Furthermore impairment of carboxylation efficiency (-71% at the end of the post-fumigation period compared to controls in filtered air) and membrane damage in terms of integrity (as demonstrated by a significant rise in solute leakage) were observed. A regulatory adjustment of photosynthetic processes was highlighted during the post-fumigation period by the higher values of qNP and (1-q(P)) and therefore suggests a tendency to reduce the light energy used in photochemistry at the expense of the capacity to dissipate the excess as excitation energy. In addition, the chlorophyll a/b ratio and the de-epoxidation index increased, showing a rearrangement of the pigment composition of the photosynthetic apparatus and a marked activation of photoprotective mechanisms.
PLOS ONE | 2015
Elisa Pellegrini; Alessandra Campanella; Marco Paolocci; Alice Trivellini; Clizia Gennai; Massimo Muganu; Cristina Nali; Giacomo Lorenzini
A comparative study on functional leaf treats and the diurnal dynamics of photosynthetic processes was conducted on 2-year-old potted plants of two grape (Vitis vinifera L.) varieties (Aleatico, ALE, and Trebbiano giallo, TRE), exposed under controlled conditions to realistic concentrations of the pollutant gas ozone (80 ppb for 5 h day-1, 8:00–13:00 h, + 40 ppb for 5 h day-1, 13:00–18:00 h). At constitutive levels, the morphological functional traits of TRE improved leaf resistance to gas exchange, suggesting that TRE is characterized by a potential high degree of tolerance to ozone. At the end of the treatment, both varieties showed typical visible injuries on fully expanded leaves and a marked alteration in the diurnal pattern of photosynthetic activity. This was mainly due to a decreased stomatal conductance (-27 and -29% in ALE and TRE, in terms of daily values in comparison to controls) and to a reduced mesophyllic functioning (+33 and +16% of the intercellular carbon dioxide concentration). Although the genotypic variability of grape regulates the response to oxidative stress, similar detoxification processes were activated, such as an increased content of total carotenoids (+64 and +30%, in ALE and TRE), enhanced efficiency of thermal energy dissipation within photosystem II (+32 and +20%) closely correlated with the increased de-epoxidation index (+26 and +22%) and variations in content of some osmolytes. In summary, we can conclude that: the daily photosynthetic performance of grapevine leaves was affected by a realistic exposure to ozone. In addition, the gas exchange and chlorophyll a fluorescence measurements revealed a different quali-quantitative response in the two varieties. The genotypic variability of V. vinifera and the functional leaf traits would seem to regulate the acclimatory response to oxidative stress and the degree of tolerance to ozone. Similar photoprotective mechanisms were activated in the two varieties, though to a different extent.
Plant Cell Reports | 2013
Elisa Pellegrini; Alice Trivellini; Alessandra Campanella; A. Francini; Giacomo Lorenzini; Cristina Nali; Paolo Vernieri
Environmental and Experimental Botany | 2011
Elisa Pellegrini; Maria Giovanna Carucci; Alessandra Campanella; Giacomo Lorenzini; Cristina Nali
Environmental Science and Pollution Research | 2018
Lorenzo Cotrozzi; Alessandra Campanella; Elisa Pellegrini; Giacomo Lorenzini; Cristina Nali; Elena Paoletti
Environmental Science and Pollution Research | 2018
Elisa Pellegrini; Alessandra Campanella; Lorenzo Cotrozzi; Mariagrazia Tonelli; Cristina Nali; Giacomo Lorenzini
Urban Forestry & Urban Greening | 2014
Elisa Pellegrini; Alessandra Campanella; Giacomo Lorenzini; Cristina Nali
Industrial Crops and Products | 2018
Elisa Pellegrini; Alessandra Campanella; Lorenzo Cotrozzi; Mariagrazia Tonelli; Cristina Nali; Giacomo Lorenzini
EPPN Plant Phenotyping Symposium: Next generation plant phenotyping for trait discovery, breeding and beyond: transnational access to European platforms | 2015
Alessandra Campanella; Lorenzo Cotrozzi; Giacomo Lorenzini; Cristina Nali; Romina Papini; Mariagrazia Tonelli; Elisa Pellegrini
28th Task Force Meeting ICP-Vegetation | 2015
Elisa Pellegrini; Alessandra Campanella; Mariagrazia Tonelli; Cristina Nali; Giacomo Lorenzini