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Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)

The firmness of blueberry is one of its most significant quality attributes. Modifications in the composition of the cell wall have been associated with changes in the fruit firmness. In this work, cell wall components and calcium concentration in two blueberry cultivars with contrasting firmness ph...

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Autores principales: Olmedo, Patricio, Zepeda, Baltasar, Rojas, Bárbara, Silva-Sanzana, Christian, Delgado-Rioseco, Joaquín, Fernández, Kamila, Balic, Iván, Arriagada, César, Moreno, Adrián A., Defilippi, Bruno G., Campos-Vargas, Reinaldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999294/
https://www.ncbi.nlm.nih.gov/pubmed/33809443
http://dx.doi.org/10.3390/plants10030553
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author Olmedo, Patricio
Zepeda, Baltasar
Rojas, Bárbara
Silva-Sanzana, Christian
Delgado-Rioseco, Joaquín
Fernández, Kamila
Balic, Iván
Arriagada, César
Moreno, Adrián A.
Defilippi, Bruno G.
Campos-Vargas, Reinaldo
author_facet Olmedo, Patricio
Zepeda, Baltasar
Rojas, Bárbara
Silva-Sanzana, Christian
Delgado-Rioseco, Joaquín
Fernández, Kamila
Balic, Iván
Arriagada, César
Moreno, Adrián A.
Defilippi, Bruno G.
Campos-Vargas, Reinaldo
author_sort Olmedo, Patricio
collection PubMed
description The firmness of blueberry is one of its most significant quality attributes. Modifications in the composition of the cell wall have been associated with changes in the fruit firmness. In this work, cell wall components and calcium concentration in two blueberry cultivars with contrasting firmness phenotypes were evaluated at harvest and 30 days cold storage (0 °C). High performance anion-exchange chromatography with pulse amperometric detector (HPAEC-PAD) analysis was performed using the “Emerald” (firmer) and “Jewel” (softer) blueberry cultivars, showing increased glucose in the firmer cultivar after cold storage. Moreover, the LM15 antibody, which recognizes xyloglucan domains, displayed an increased signal in the Emerald cultivar after 30 d cold storage. Additionally, the antibody 2F4, recognizing a homogalacturonan calcium-binding domain, showed a greater signal in the firmer Emerald blueberries, which correlates with a higher calcium concentration in the cell wall. These findings suggest that xyloglucan metabolism and a higher concentration of cell wall calcium influenced the firmness of the blueberry fruit. These results open new perspectives regarding the role of cell wall components as xyloglucans and calcium in blueberry firmness.
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spelling pubmed-79992942021-03-28 Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.) Olmedo, Patricio Zepeda, Baltasar Rojas, Bárbara Silva-Sanzana, Christian Delgado-Rioseco, Joaquín Fernández, Kamila Balic, Iván Arriagada, César Moreno, Adrián A. Defilippi, Bruno G. Campos-Vargas, Reinaldo Plants (Basel) Article The firmness of blueberry is one of its most significant quality attributes. Modifications in the composition of the cell wall have been associated with changes in the fruit firmness. In this work, cell wall components and calcium concentration in two blueberry cultivars with contrasting firmness phenotypes were evaluated at harvest and 30 days cold storage (0 °C). High performance anion-exchange chromatography with pulse amperometric detector (HPAEC-PAD) analysis was performed using the “Emerald” (firmer) and “Jewel” (softer) blueberry cultivars, showing increased glucose in the firmer cultivar after cold storage. Moreover, the LM15 antibody, which recognizes xyloglucan domains, displayed an increased signal in the Emerald cultivar after 30 d cold storage. Additionally, the antibody 2F4, recognizing a homogalacturonan calcium-binding domain, showed a greater signal in the firmer Emerald blueberries, which correlates with a higher calcium concentration in the cell wall. These findings suggest that xyloglucan metabolism and a higher concentration of cell wall calcium influenced the firmness of the blueberry fruit. These results open new perspectives regarding the role of cell wall components as xyloglucans and calcium in blueberry firmness. MDPI 2021-03-16 /pmc/articles/PMC7999294/ /pubmed/33809443 http://dx.doi.org/10.3390/plants10030553 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Olmedo, Patricio
Zepeda, Baltasar
Rojas, Bárbara
Silva-Sanzana, Christian
Delgado-Rioseco, Joaquín
Fernández, Kamila
Balic, Iván
Arriagada, César
Moreno, Adrián A.
Defilippi, Bruno G.
Campos-Vargas, Reinaldo
Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)
title Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)
title_full Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)
title_fullStr Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)
title_full_unstemmed Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)
title_short Cell Wall Calcium and Hemicellulose Have a Role in the Fruit Firmness during Storage of Blueberry (Vaccinium spp.)
title_sort cell wall calcium and hemicellulose have a role in the fruit firmness during storage of blueberry (vaccinium spp.)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999294/
https://www.ncbi.nlm.nih.gov/pubmed/33809443
http://dx.doi.org/10.3390/plants10030553
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