The optimal harvest date (OHD) for the long-term storage of apple fruits is of the utmost importance, not only for maintaining high quality levels, but also because the ripening stage, regulated by the autocatalytic activity of the internal ethylene concentration, greatly affects the VOCs’ synthesis. During apple ripening, chemical compounds undergo changes that affect the fruit’s overall quality, particularly its aromatic profile. Three main classes of organic molecules—aldehydes, alcohols, and esters—play a key role in these modifications. This study investigated the potential of proton transfer reaction time-off light mass spectrometry (PTR-ToF-MS) for the rapid, non-destructive monitoring of VOC profiles in ‘Red Delicious’ and ‘Granny Smith’ apples over a 7-week shelf-life period across three harvest dates with different ripening stages. More than 300 mass peaks in the PTR-ToF-MS spectra of the apple headspace were detected. A total of 127 of them were considered to be relevant for further analysis. Furthermore, respiration rate and IAD index were used for the non-destructive assessment of the ripening progress during the 7 weeks of shelf-life and for integrating the VOC results

Panarese, A.; Farneti, B.; Zanella, A.; Khomenko, I. (2025). Non-destructive PTR-ToF-MS profiling of red delicious and granny smith apple volatilomes during ripening. AGRICULTURE, 15: 638. doi: 10.3390/agriculture15060638 handle: https://hdl.handle.net/10449/89656

Non-destructive PTR-ToF-MS profiling of red delicious and granny smith apple volatilomes during ripening

Farneti, B.;Khomenko, I.
Ultimo
2025-01-01

Abstract

The optimal harvest date (OHD) for the long-term storage of apple fruits is of the utmost importance, not only for maintaining high quality levels, but also because the ripening stage, regulated by the autocatalytic activity of the internal ethylene concentration, greatly affects the VOCs’ synthesis. During apple ripening, chemical compounds undergo changes that affect the fruit’s overall quality, particularly its aromatic profile. Three main classes of organic molecules—aldehydes, alcohols, and esters—play a key role in these modifications. This study investigated the potential of proton transfer reaction time-off light mass spectrometry (PTR-ToF-MS) for the rapid, non-destructive monitoring of VOC profiles in ‘Red Delicious’ and ‘Granny Smith’ apples over a 7-week shelf-life period across three harvest dates with different ripening stages. More than 300 mass peaks in the PTR-ToF-MS spectra of the apple headspace were detected. A total of 127 of them were considered to be relevant for further analysis. Furthermore, respiration rate and IAD index were used for the non-destructive assessment of the ripening progress during the 7 weeks of shelf-life and for integrating the VOC results
Apple ripening
Proton Transfer Reaction Time-of-Flight Mass Spectrometry
Volatile Organic Compounds
DA-meter
CO2 production
Settore CHEM-01/A - Chimica analitica
2025
Panarese, A.; Farneti, B.; Zanella, A.; Khomenko, I. (2025). Non-destructive PTR-ToF-MS profiling of red delicious and granny smith apple volatilomes during ripening. AGRICULTURE, 15: 638. doi: 10.3390/agriculture15060638 handle: https://hdl.handle.net/10449/89656
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