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Santini G, Bianchi A, Pettinelli S, Modesti M, Cerreta R, Bellincontro A. Air speed and plastic crate vent-holes for wine grape quality during postharvest dehydration: commercial and laboratory studies. JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE 2023; 103:7293-7301. [PMID: 37380615 DOI: 10.1002/jsfa.12817] [Citation(s) in RCA: 3] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 05/03/2023] [Revised: 06/24/2023] [Accepted: 06/29/2023] [Indexed: 06/30/2023]
Abstract
BACKGROUND Airflow is an important issue to favor postharvest dehydration keeping wine grape quality. The aim of this experimental work was to analyze the grape quality during postharvest dehydration: (i) in a commercial facility ('fruttaia') by monitoring the efficiency of the ventilation system and (ii) at laboratory level, studying the influence of crate type and airflow direction. RESULTS In the fruttaia, the airflow was provided by an air duct hanging from the ceiling, and by floor fans. A great gap in air speed from 0 up to 3.7 m s-1 was measured in different sectors of the fruttaia, leading to a different weight loss and grape quality in crates, depending on crate stack height and sector. At the laboratory level, two tunnels, with exhaust or supply fans, were used and four crate types with different percentages of vent-holes were adopted. A decrease of about 5% delayed the weight loss rate depending on the type of crate, and the exhaust fan guaranteed a faster dehydration. CONCLUSION The results clarified the inefficiency of the commercial ventilation system in ensuring homogeneous grape weight loss in all crates. In addition, the exhaust fan guaranteed a more uniform air distribution around crates, and a slightly higher air speed. © 2023 Society of Chemical Industry.
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Affiliation(s)
- Gregorio Santini
- Department of Agriculture, Food and Environment (DAFE), University of Pisa, Pisa, Italy
| | - Alessandro Bianchi
- Department of Agriculture, Food and Environment (DAFE), University of Pisa, Pisa, Italy
| | - Stefano Pettinelli
- Department of Agriculture, Food and Environment (DAFE), University of Pisa, Pisa, Italy
| | - Margherita Modesti
- Department for Innovation in Biological, Agro-Food and Forest Systems (DIBAF), University of Tuscia, Viterbo, Italy
| | - Raffaele Cerreta
- Department for Innovation in Biological, Agro-Food and Forest Systems (DIBAF), University of Tuscia, Viterbo, Italy
| | - Andrea Bellincontro
- Department for Innovation in Biological, Agro-Food and Forest Systems (DIBAF), University of Tuscia, Viterbo, Italy
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Harutyunyan M, Viana R, Granja‐Soares J, Asryan A, Marques JC, Malfeito‐Ferreira M. Consumer acceptance of sweet wines and
piquettes
obtained by the adaptation of Ancient Wine‐making Techniques. J SENS STUD 2023. [DOI: 10.1111/joss.12823] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 04/05/2023]
Affiliation(s)
- Mkrtich Harutyunyan
- Linking Landscape, Environment, Agriculture and Food Research Center (LEAF), Associated Laboratory TERRA Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
- Departamento de Ciências e Engenharia de Biossistemas (DCEB) Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
| | - Renato Viana
- Linking Landscape, Environment, Agriculture and Food Research Center (LEAF), Associated Laboratory TERRA Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
- Departamento de Ciências e Engenharia de Biossistemas (DCEB) Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
| | - Joana Granja‐Soares
- Linking Landscape, Environment, Agriculture and Food Research Center (LEAF), Associated Laboratory TERRA Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
- Departamento de Ciências e Engenharia de Biossistemas (DCEB) Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
| | - Arman Asryan
- College of Science and Engineering American University of Armenia Yerevan Armenia
| | - José Carlos Marques
- Institute of Nanostructures, Nanomodelling and Nanofabrication (I3N) University of Aveiro, Campus Universitário de Santiago Aveiro Portugal
- ISOPlexis – Faculty of Exact Sciences and Engineering University of Madeira, Campus Universitário da Penteada Funchal Portugal
| | - Manuel Malfeito‐Ferreira
- Linking Landscape, Environment, Agriculture and Food Research Center (LEAF), Associated Laboratory TERRA Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
- Departamento de Ciências e Engenharia de Biossistemas (DCEB) Instituto Superior de Agronomia, Universidade de Lisboa Lisbon Portugal
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Shmuleviz R, Amato A, Commisso M, D’Incà E, Luzzini G, Ugliano M, Fasoli M, Zenoni S, Tornielli GB. Temperature affects organic acid, terpene and stilbene metabolisms in wine grapes during postharvest dehydration. FRONTIERS IN PLANT SCIENCE 2023; 14:1107954. [PMID: 36794212 PMCID: PMC9923099 DOI: 10.3389/fpls.2023.1107954] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Subscribe] [Scholar Register] [Received: 11/25/2022] [Accepted: 01/09/2023] [Indexed: 06/18/2023]
Abstract
The partial dehydration of grapes after harvest is a traditional practice in several winegrowing regions that leads to the production of high quality wines. Postharvest dehydration (also known as withering) has a significant impact on the overall metabolism and physiology of the berry, yielding a final product that is richer in sugars, solutes, and aroma compounds. These changes are, at least in part, the result of a stress response, which is controlled at transcriptional level, and are highly dependent on the grape water loss kinetics and the environmental parameters of the facility where grapes are stored to wither. However, it is difficult to separate the effects driven by each single environmental factor from those of the dehydration rate, especially discerning the effect of temperature that greatly affects the water loss kinetics. To define the temperature influence on grape physiology and composition during postharvest dehydration, the withering of the red-skin grape cultivar Corvina (Vitis vinifera) was studied in two conditioned rooms set at distinct temperatures and at varying relative humidity to maintain an equal grape water loss rate. The effect of temperature was also studied by withering the grapes in two unconditioned facilities located in geographic areas with divergent climates. Technological, LC-MS and GC-MS analyses revealed higher levels of organic acids, flavonols, terpenes and cis- and trans-resveratrol in the grapes withered at lower temperature conditions, whereas higher concentrations of oligomeric stilbenes were found in the grapes stored at higher temperatures. Lower expression of the malate dehydrogenase and laccase, while higher expression of the phenylalanine ammonia-lyase, stilbene synthase and terpene synthase genes were detected in the grapes withered at lower temperatures. Our findings provide insights into the importance of the temperature in postharvest withering and its effect on the metabolism of the grapes and on the quality of the derived wines.
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Affiliation(s)
| | | | | | | | | | | | | | - Sara Zenoni
- *Correspondence: Giovanni Battista Tornielli, ; Sara Zenoni,
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Mian G, Belfiore N, Musetti R, Tomasi D, Cantone P, Lovat L, Lupinelli S, Iacumin L, Celotti E, Golinelli F. Effect of a triacontanol-rich biostimulant on the ripening dynamic and wine must technological parameters in Vitis vinifera cv. 'Ribolla Gialla'. PLANT PHYSIOLOGY AND BIOCHEMISTRY : PPB 2022; 188:60-69. [PMID: 35987022 DOI: 10.1016/j.plaphy.2022.07.032] [Citation(s) in RCA: 3] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 03/08/2022] [Revised: 06/25/2022] [Accepted: 07/22/2022] [Indexed: 06/15/2023]
Abstract
Biostimulants are organic compounds which can influence the biochemical activity of the whole plant. Lately, great attention has been focused on the possibility of using these stimulants in the viticulture sector. Due to this, the aim of this work was to investigate the foliar application of a biostimulant made by Fabaceae tissue, rich in amino acids and peptides along with the high presence of natural triacontanol (C30H62O) (>6 mg kg-1), previously reported in many crops as chemicals able to stimulate different yield components, the technological composition of musts still having an effect on some of the microbial population of different fruits/crops. Hence, this research was conducted during the growing seasons 2020 and 2021 in a commercial vineyard of the 'Ribolla Gialla' grapevine (Vitis vinifera, L.), in the Friuli Venezia Giulia Region (North-Eastern Italy), in order to understand the effect on this woody perennial crop not yet investigated. After a two-year-study, a physiological response occurred, as ripening and veraision were brought forward in the treated plants as well as the harvest time, having higher enological parameters (sugars, total titrable acidity and citric acid content) than the non-treated at every stage. Thus, grapes in the treated plants reached a full technological maturity earlier than the non-treated, in both study years. There was a positive effect on must microbial ecology important for winemaking, hence, the biostimulant have promoted the growth of the microbial community on berry skin translating into what found in the must.
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Affiliation(s)
- Giovanni Mian
- Department of Agricultural, Food, Environmental and Animal Science, University of Udine, Via Delle Scienze 206, Udine (UD), 33100, Italy; Council for Agricultural Research and Economics-Research Centre for Viticulture and Oenology, Viale 26 Aprile, 31015 Conegliano, Italy.
| | - Nicola Belfiore
- Council for Agricultural Research and Economics-Research Centre for Viticulture and Oenology, Viale 26 Aprile, 31015 Conegliano, Italy.
| | - Rita Musetti
- Department of Land, Environment, Agriculture and Forestry (TESAF), University of Padova, Viale Dell' Università, 16 Legnaro, PD, Italy.
| | - Diego Tomasi
- Council for Agricultural Research and Economics-Research Centre for Viticulture and Oenology, Viale 26 Aprile, 31015 Conegliano, Italy.
| | - Pierpaolo Cantone
- Council for Agricultural Research and Economics-Research Centre for Viticulture and Oenology, Viale 26 Aprile, 31015 Conegliano, Italy.
| | - Lorenzo Lovat
- Council for Agricultural Research and Economics-Research Centre for Viticulture and Oenology, Viale 26 Aprile, 31015 Conegliano, Italy.
| | | | - Lucilla Iacumin
- Department of Agricultural, Food, Environmental and Animal Science, University of Udine, Via Delle Scienze 206, Udine (UD), 33100, Italy.
| | - Emilio Celotti
- Department of Agricultural, Food, Environmental and Animal Science, University of Udine, Via Delle Scienze 206, Udine (UD), 33100, Italy.
| | - Fabrizio Golinelli
- Council for Agricultural Research and Economics-Research Centre for Viticulture and Oenology, Viale 26 Aprile, 31015 Conegliano, Italy.
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