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  4. Effects of ozone exposure on 'Golden' papaya fruit by photoacoustic phase-resolved method
 
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2011
Journal Article
Title

Effects of ozone exposure on 'Golden' papaya fruit by photoacoustic phase-resolved method

Title Supplement
Physiological changes associated with carbon dioxide and ethylene emission rates during ripening
Abstract
This work addresses the effects of ozone activity on the physiology of Golden' papaya fruit. Depth profile analysis of double-layer biological samples was accomplished using the phase-resolved photoacoustic spectroscopy. The feasibility of the method was demonstrated by singling out the spectra of the cuticle and the pigment layers of papaya fruit. The same approach was used to monitor changes occurring on the fruit during ripening when exposed to ozone. In addition, one has performed real time studies of fluorescence parameters and the emission rates of carbon dioxide and ethylene. Finally, the amount of pigments and the changes in waxy cuticle have been monitored. Results indicate that a fruit deliberately subjected to ozone at a level of 6 ppmv underwent ripening sooner (at least 24-48 h) than a fruit stored at ambient conditions. Moreover, ozone caused a reduction in the maximum quantum yield of photosynthetic apparatus located within the skin of papaya fruit.
Author(s)
Figueira Corrêa, Savio
UENF, Laboratório de Ciências Físicas, Rio de Janeiro
Mota, Leonardo
Fraunhofer-Institut für Bauphysik IBP  
Paiva, Luisa Brito
UENF, Laboratório de Ciências Físicas, Rio de Janeiro
Couto, Flávio Mota do
UENF, Laboratório de Ciências Físicas, Rio de Janeiro
Silva, Marcelo Gomes da
UENF, Laboratório de Ciências Físicas, Rio de Janeiro
Oliveira, Jurandi Gonçalves de
UENF, Laboratório de Melhoramento Genético Vegetal, Rio de Janeiro
Sthel, Marcelo Silva
UENF, Laboratório de Ciências Físicas, Rio de Janeiro
Vargas, Helion
UENF, Laboratório de Ciências Físicas, Rio de Janeiro
Miklos, András
Fraunhofer-Institut für Bauphysik IBP  
Journal
Journal of applied physics  
DOI
10.1063/1.3592353
Language
English
Fraunhofer-Institut für Bauphysik IBP  
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