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Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage

Actinidia deliciosa cv. Hayward fruit is renowned for its micro- and macronutrients, which vary in their levels during berry physiological development and postharvest processing. In this context, we have recently described metabolic pathways/molecular effectors in fruit outer endocarp characterizing...

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Autores principales: Salzano, Anna Maria, Renzone, Giovanni, Sobolev, Anatoly P., Carbone, Virginia, Petriccione, Milena, Capitani, Donatella, Vitale, Monica, Novi, Gianfranco, Zambrano, Nicola, Pasquariello, Maria Silvia, Mannina, Luisa, Scaloni, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6369206/
https://www.ncbi.nlm.nih.gov/pubmed/30778366
http://dx.doi.org/10.3389/fpls.2019.00071
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author Salzano, Anna Maria
Renzone, Giovanni
Sobolev, Anatoly P.
Carbone, Virginia
Petriccione, Milena
Capitani, Donatella
Vitale, Monica
Novi, Gianfranco
Zambrano, Nicola
Pasquariello, Maria Silvia
Mannina, Luisa
Scaloni, Andrea
author_facet Salzano, Anna Maria
Renzone, Giovanni
Sobolev, Anatoly P.
Carbone, Virginia
Petriccione, Milena
Capitani, Donatella
Vitale, Monica
Novi, Gianfranco
Zambrano, Nicola
Pasquariello, Maria Silvia
Mannina, Luisa
Scaloni, Andrea
author_sort Salzano, Anna Maria
collection PubMed
description Actinidia deliciosa cv. Hayward fruit is renowned for its micro- and macronutrients, which vary in their levels during berry physiological development and postharvest processing. In this context, we have recently described metabolic pathways/molecular effectors in fruit outer endocarp characterizing the different stages of berry physiological maturation. Here, we report on the kiwifruit postharvest phase through an integrated approach consisting of pomological analysis combined with NMR/LC-UV/ESI-IT-MS(n)- and 2D-DIGE/nanoLC-ESI-LIT-MS/MS-based proteometabolomic measurements. Kiwifruit samples stored under conventional, cold-based postharvest conditions not involving the use of dedicated chemicals were sampled at four stages (from fruit harvest to pre-commercialization) and analyzed in comparison for pomological features, and outer endocarp metabolite and protein content. About 42 metabolites were quantified, together with corresponding proteomic changes. Proteomics showed that proteins associated with disease/defense, energy, protein destination/storage, cell structure and metabolism functions were affected at precise fruit postharvest times, providing a justification to corresponding pomological/metabolite content characteristics. Bioinformatic analysis of variably represented proteins revealed a central network of interacting species, modulating metabolite level variations during postharvest fruit storage. Kiwifruit allergens were also quantified, demonstrating in some cases their highest levels at the fruit pre-commercialization stage. By lining up kiwifruit postharvest processing to a proteometabolomic depiction, this study integrates previous observations on metabolite and protein content in postharvest berries treated with specific chemical additives, and provides a reference framework for further studies on the optimization of fruit storage before its commercialization.
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spelling pubmed-63692062019-02-18 Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage Salzano, Anna Maria Renzone, Giovanni Sobolev, Anatoly P. Carbone, Virginia Petriccione, Milena Capitani, Donatella Vitale, Monica Novi, Gianfranco Zambrano, Nicola Pasquariello, Maria Silvia Mannina, Luisa Scaloni, Andrea Front Plant Sci Plant Science Actinidia deliciosa cv. Hayward fruit is renowned for its micro- and macronutrients, which vary in their levels during berry physiological development and postharvest processing. In this context, we have recently described metabolic pathways/molecular effectors in fruit outer endocarp characterizing the different stages of berry physiological maturation. Here, we report on the kiwifruit postharvest phase through an integrated approach consisting of pomological analysis combined with NMR/LC-UV/ESI-IT-MS(n)- and 2D-DIGE/nanoLC-ESI-LIT-MS/MS-based proteometabolomic measurements. Kiwifruit samples stored under conventional, cold-based postharvest conditions not involving the use of dedicated chemicals were sampled at four stages (from fruit harvest to pre-commercialization) and analyzed in comparison for pomological features, and outer endocarp metabolite and protein content. About 42 metabolites were quantified, together with corresponding proteomic changes. Proteomics showed that proteins associated with disease/defense, energy, protein destination/storage, cell structure and metabolism functions were affected at precise fruit postharvest times, providing a justification to corresponding pomological/metabolite content characteristics. Bioinformatic analysis of variably represented proteins revealed a central network of interacting species, modulating metabolite level variations during postharvest fruit storage. Kiwifruit allergens were also quantified, demonstrating in some cases their highest levels at the fruit pre-commercialization stage. By lining up kiwifruit postharvest processing to a proteometabolomic depiction, this study integrates previous observations on metabolite and protein content in postharvest berries treated with specific chemical additives, and provides a reference framework for further studies on the optimization of fruit storage before its commercialization. Frontiers Media S.A. 2019-02-04 /pmc/articles/PMC6369206/ /pubmed/30778366 http://dx.doi.org/10.3389/fpls.2019.00071 Text en Copyright © 2019 Salzano, Renzone, Sobolev, Carbone, Petriccione, Capitani, Vitale, Novi, Zambrano, Pasquariello, Mannina and Scaloni. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Salzano, Anna Maria
Renzone, Giovanni
Sobolev, Anatoly P.
Carbone, Virginia
Petriccione, Milena
Capitani, Donatella
Vitale, Monica
Novi, Gianfranco
Zambrano, Nicola
Pasquariello, Maria Silvia
Mannina, Luisa
Scaloni, Andrea
Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage
title Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage
title_full Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage
title_fullStr Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage
title_full_unstemmed Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage
title_short Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage
title_sort unveiling kiwifruit metabolite and protein changes in the course of postharvest cold storage
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6369206/
https://www.ncbi.nlm.nih.gov/pubmed/30778366
http://dx.doi.org/10.3389/fpls.2019.00071
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