Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content
Grape variety, quality, geographic origins and phytopathology can influence the amount of polyphenols that accumulate in grape tissues. Polyphenols in wine not only shape their organoleptic characteristics but also significantly contribute to the positive impact that this beverage has on human healt...
| Published in: | Foods |
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| Main Authors: | , , , , , |
| Format: | Article |
| Language: | English |
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MDPI AG
2024-01-01
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| Online Access: | https://www.mdpi.com/2304-8158/13/2/312 |
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| author | Giuseppe Romano Marco Taurino Carmela Gerardi Maria Tufariello Marcello Lenucci Francesco Grieco |
| author_facet | Giuseppe Romano Marco Taurino Carmela Gerardi Maria Tufariello Marcello Lenucci Francesco Grieco |
| author_sort | Giuseppe Romano |
| collection | DOAJ |
| container_title | Foods |
| description | Grape variety, quality, geographic origins and phytopathology can influence the amount of polyphenols that accumulate in grape tissues. Polyphenols in wine not only shape their organoleptic characteristics but also significantly contribute to the positive impact that this beverage has on human health. However, during the winemaking process, the total polyphenol content is substantially reduced due to the adsorption onto yeast wall polymers and subsequent lees separation. Despite this, limited information is available regarding the influence of the yeast starter strain on the polyphenolic profile of wine. To address this issue, a population consisting of 136 Saccharomyces cerevisiae strains was analyzed to identify those with a diminished ability to adsorb polyphenols. Firstly, the reduction in concentration of polyphenolic compounds associated to each strain was studied by assaying Total Phenolic Content (TPC) and Trolox Equivalent Antioxidant Capacity (TEAC) in the wines produced by micro-scale must fermentation. A total of 29 strains exhibiting a TPC and TEAC reduction ≤ 50%, when compared to that detected in the utilized grape must were identified and the nine most-promising strains were further validated by larger-scale vinification. Physico-chemical analyses of the resulting wines led to the identification of four strains, namely ITEM6920, ITEM9500, ITEM9507 and ITEM9508 which showed, compared to the control wine, a TPC and TEAC reduction ≤ 20 in the produced wines. They were denoted by a significant (<i>p</i> < 0.05) increased amount of anthocyanin, quercetin and trans-coutaric acid, minimal volatile acidity (<0.2 g/L), absence of undesirable metabolites and a well-balanced volatile profile. As far as we know, this investigation represents the first clonal selection of yeast strains aimed at the identifying “functional” fermentation starters, thereby enabling the production of regional wines with enriched polyphenolic content. |
| format | Article |
| id | doaj-art-22ae2b641e2c4e87bea1efcc655edd6f |
| institution | Directory of Open Access Journals |
| issn | 2304-8158 |
| language | English |
| publishDate | 2024-01-01 |
| publisher | MDPI AG |
| record_format | Article |
| spelling | doaj-art-22ae2b641e2c4e87bea1efcc655edd6f2025-08-19T23:36:33ZengMDPI AGFoods2304-81582024-01-0113231210.3390/foods13020312Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant ContentGiuseppe Romano0Marco Taurino1Carmela Gerardi2Maria Tufariello3Marcello Lenucci4Francesco Grieco5National Research Council, Institute of Sciences of Food Production (ISPA), Via Prov. Lecce-Monteroni, 73100 Lecce, ItalyNational Research Council, Institute of Sciences of Food Production (ISPA), Via Prov. Lecce-Monteroni, 73100 Lecce, ItalyNational Research Council, Institute of Sciences of Food Production (ISPA), Via Prov. Lecce-Monteroni, 73100 Lecce, ItalyNational Research Council, Institute of Sciences of Food Production (ISPA), Via Prov. Lecce-Monteroni, 73100 Lecce, ItalyDepartment of Biological and Environmental Sciences and Technologies, University of Salento, Via Prov. Lecce-Monteroni, 73100 Lecce, ItalyNational Research Council, Institute of Sciences of Food Production (ISPA), Via Prov. Lecce-Monteroni, 73100 Lecce, ItalyGrape variety, quality, geographic origins and phytopathology can influence the amount of polyphenols that accumulate in grape tissues. Polyphenols in wine not only shape their organoleptic characteristics but also significantly contribute to the positive impact that this beverage has on human health. However, during the winemaking process, the total polyphenol content is substantially reduced due to the adsorption onto yeast wall polymers and subsequent lees separation. Despite this, limited information is available regarding the influence of the yeast starter strain on the polyphenolic profile of wine. To address this issue, a population consisting of 136 Saccharomyces cerevisiae strains was analyzed to identify those with a diminished ability to adsorb polyphenols. Firstly, the reduction in concentration of polyphenolic compounds associated to each strain was studied by assaying Total Phenolic Content (TPC) and Trolox Equivalent Antioxidant Capacity (TEAC) in the wines produced by micro-scale must fermentation. A total of 29 strains exhibiting a TPC and TEAC reduction ≤ 50%, when compared to that detected in the utilized grape must were identified and the nine most-promising strains were further validated by larger-scale vinification. Physico-chemical analyses of the resulting wines led to the identification of four strains, namely ITEM6920, ITEM9500, ITEM9507 and ITEM9508 which showed, compared to the control wine, a TPC and TEAC reduction ≤ 20 in the produced wines. They were denoted by a significant (<i>p</i> < 0.05) increased amount of anthocyanin, quercetin and trans-coutaric acid, minimal volatile acidity (<0.2 g/L), absence of undesirable metabolites and a well-balanced volatile profile. As far as we know, this investigation represents the first clonal selection of yeast strains aimed at the identifying “functional” fermentation starters, thereby enabling the production of regional wines with enriched polyphenolic content.https://www.mdpi.com/2304-8158/13/2/312autochthonous yeast<i>Saccharomyces cerevisiae</i>wine polyphenols |
| spellingShingle | Giuseppe Romano Marco Taurino Carmela Gerardi Maria Tufariello Marcello Lenucci Francesco Grieco Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content autochthonous yeast <i>Saccharomyces cerevisiae</i> wine polyphenols |
| title | Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content |
| title_full | Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content |
| title_fullStr | Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content |
| title_full_unstemmed | Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content |
| title_short | Yeast Starter Culture Identification to Produce of Red Wines with Enhanced Antioxidant Content |
| title_sort | yeast starter culture identification to produce of red wines with enhanced antioxidant content |
| topic | autochthonous yeast <i>Saccharomyces cerevisiae</i> wine polyphenols |
| url | https://www.mdpi.com/2304-8158/13/2/312 |
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