Changes in processing tomato fruit quality in heirloom and modern varieties developed over the past decades.

Saved in:
Bibliographic Details
Title: Changes in processing tomato fruit quality in heirloom and modern varieties developed over the past decades.
Authors: Burato, Andrea1,2 (AUTHOR), Tava, Aldo3 (AUTHOR), Biazzi, Elisa3 (AUTHOR), Parisi, Mario2 (AUTHOR), Tripodi, Pasquale2 (AUTHOR), Lo Scalzo, Roberto1,4 (AUTHOR) roberto.loscalzo@crea.gov.it, Bianchi, Giulia4 (AUTHOR), Picchi, Valentina4 (AUTHOR), Ronga, Domenico1,5 (AUTHOR) dronga@unisa.it
Source: Journal of Food Composition & Analysis. Oct2025, Vol. 146, pN.PAG-N.PAG. 1p.
Subjects: Fruit quality, Bioactive compounds, Phylogeny, Agricultural productivity, Cultivars, Crop improvement, Tomato sauces
Abstract: Over the past century, the breeding programs for processing tomato (Solanum lycopersicum L.) have focused predominantly on yield optimization and mechanization compatibility, often overlooking critical aspects of fruit quality and flavor that are increasingly valued by consumers. This study investigated the temporal changes in key technological and nutritional traits – sugars, acids, amino acids, ascorbic acid, thiols, carotenoids, volatile fraction (VOCs) and phenolics – and phylogenetic relationships across ten widely cultivated processing tomato varieties released between the early 1900s and 2014. Field trials were carried out in northern Italy under uniform open-field conditions using a completely randomized design. Our analyses revealed significant genetic gains in marketable yield (+0.47 %/year) and in the concentration of guaiacol (+1.66 %/year), a key VOC. Conversely, we observed declines in ascorbic acid (−0.47 %/year), cysteine (−0.87 %/year), glutathione (−1.06 %/year), and seven VOCs (benzaldehyde, heptanal, hexanal, nonanal, 1-octen-3-one, octanal, and 2-pentyl-furan). Correlation analysis indicated inverse relationships between yield and both VOCs and cysteine content. Phylogenetic analysis further suggested that certain quality traits persist within specific genetic sequences of modern varieties. This comprehensive assessment highlights the trade-offs between yield and fruit quality in processing tomato breeding over the past century, providing strategic insights for developing future varieties. • Genetic gains in yield (+0.47 %/year) contrast with losses in key quality traits. • Fruit quality declined for ascorbic acid, thiols, and several volatiles. • Guaiacol content increased over time, positively correlating with yield. • Phylogenetic analysis revealed inheritance of quality traits in new varieties. [ABSTRACT FROM AUTHOR]
Copyright of Journal of Food Composition & Analysis is the property of Academic Press Inc. and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
Database: Engineering Source
Description
Abstract:Over the past century, the breeding programs for processing tomato (Solanum lycopersicum L.) have focused predominantly on yield optimization and mechanization compatibility, often overlooking critical aspects of fruit quality and flavor that are increasingly valued by consumers. This study investigated the temporal changes in key technological and nutritional traits – sugars, acids, amino acids, ascorbic acid, thiols, carotenoids, volatile fraction (VOCs) and phenolics – and phylogenetic relationships across ten widely cultivated processing tomato varieties released between the early 1900s and 2014. Field trials were carried out in northern Italy under uniform open-field conditions using a completely randomized design. Our analyses revealed significant genetic gains in marketable yield (+0.47 %/year) and in the concentration of guaiacol (+1.66 %/year), a key VOC. Conversely, we observed declines in ascorbic acid (−0.47 %/year), cysteine (−0.87 %/year), glutathione (−1.06 %/year), and seven VOCs (benzaldehyde, heptanal, hexanal, nonanal, 1-octen-3-one, octanal, and 2-pentyl-furan). Correlation analysis indicated inverse relationships between yield and both VOCs and cysteine content. Phylogenetic analysis further suggested that certain quality traits persist within specific genetic sequences of modern varieties. This comprehensive assessment highlights the trade-offs between yield and fruit quality in processing tomato breeding over the past century, providing strategic insights for developing future varieties. • Genetic gains in yield (+0.47 %/year) contrast with losses in key quality traits. • Fruit quality declined for ascorbic acid, thiols, and several volatiles. • Guaiacol content increased over time, positively correlating with yield. • Phylogenetic analysis revealed inheritance of quality traits in new varieties. [ABSTRACT FROM AUTHOR]
ISSN:08891575
DOI:10.1016/j.jfca.2025.107956