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Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening

Cell cultures derived from strawberry fruit at different developmental stages have been obtained to evaluate their potential use to study different aspects of strawberry ripening. Callus from leaf and cortical tissue of unripe-green, white, and mature-red strawberry fruits were induced in a medium s...

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Autores principales: Ric-Varas, Pablo, Barceló, Marta, Rivera, Juan A., Cerezo, Sergio, Matas, Antonio J., Schückel, Julia, Knox, J. Paul, Posé, Sara, Pliego-Alfaro, Fernando, Mercado, José A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7412483/
https://www.ncbi.nlm.nih.gov/pubmed/32605018
http://dx.doi.org/10.3390/plants9070805
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author Ric-Varas, Pablo
Barceló, Marta
Rivera, Juan A.
Cerezo, Sergio
Matas, Antonio J.
Schückel, Julia
Knox, J. Paul
Posé, Sara
Pliego-Alfaro, Fernando
Mercado, José A.
author_facet Ric-Varas, Pablo
Barceló, Marta
Rivera, Juan A.
Cerezo, Sergio
Matas, Antonio J.
Schückel, Julia
Knox, J. Paul
Posé, Sara
Pliego-Alfaro, Fernando
Mercado, José A.
author_sort Ric-Varas, Pablo
collection PubMed
description Cell cultures derived from strawberry fruit at different developmental stages have been obtained to evaluate their potential use to study different aspects of strawberry ripening. Callus from leaf and cortical tissue of unripe-green, white, and mature-red strawberry fruits were induced in a medium supplemented with 11.3 µM 2,4-dichlorophenoxyacetic acid (2,4-D) under darkness. The transfer of the established callus from darkness to light induced the production of anthocyanin. The replacement of 2,4-D by abscisic acid (ABA) noticeably increased anthocyanin accumulation in green-fruit callus. Cell walls were isolated from the different fruit cell lines and from fruit receptacles at equivalent developmental stages and sequentially fractionated to obtain fractions enriched in soluble pectins, ester bound pectins, xyloglucans (XG), and matrix glycans tightly associated with cellulose microfibrils. These fractions were analyzed by cell wall carbohydrate microarrays. In fruit receptacle samples, pectins were abundant in all fractions, including those enriched in matrix glycans. The amount of pectin increased from green to white stage, and later these carbohydrates were solubilized in red fruit. Apparently, XG content was similar in white and red fruit, but the proportion of galactosylated XG increased in red fruit. Cell wall fractions from callus cultures were enriched in extensin and displayed a minor amount of pectins. Stronger signals of extensin Abs were detected in sodium carbonate fraction, suggesting that these proteins could be linked to pectins. Overall, the results obtained suggest that fruit cell lines could be used to analyze hormonal regulation of color development in strawberry but that the cell wall remodeling process associated with fruit softening might be masked by the high presence of extensin in callus cultures.
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spelling pubmed-74124832020-08-26 Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening Ric-Varas, Pablo Barceló, Marta Rivera, Juan A. Cerezo, Sergio Matas, Antonio J. Schückel, Julia Knox, J. Paul Posé, Sara Pliego-Alfaro, Fernando Mercado, José A. Plants (Basel) Article Cell cultures derived from strawberry fruit at different developmental stages have been obtained to evaluate their potential use to study different aspects of strawberry ripening. Callus from leaf and cortical tissue of unripe-green, white, and mature-red strawberry fruits were induced in a medium supplemented with 11.3 µM 2,4-dichlorophenoxyacetic acid (2,4-D) under darkness. The transfer of the established callus from darkness to light induced the production of anthocyanin. The replacement of 2,4-D by abscisic acid (ABA) noticeably increased anthocyanin accumulation in green-fruit callus. Cell walls were isolated from the different fruit cell lines and from fruit receptacles at equivalent developmental stages and sequentially fractionated to obtain fractions enriched in soluble pectins, ester bound pectins, xyloglucans (XG), and matrix glycans tightly associated with cellulose microfibrils. These fractions were analyzed by cell wall carbohydrate microarrays. In fruit receptacle samples, pectins were abundant in all fractions, including those enriched in matrix glycans. The amount of pectin increased from green to white stage, and later these carbohydrates were solubilized in red fruit. Apparently, XG content was similar in white and red fruit, but the proportion of galactosylated XG increased in red fruit. Cell wall fractions from callus cultures were enriched in extensin and displayed a minor amount of pectins. Stronger signals of extensin Abs were detected in sodium carbonate fraction, suggesting that these proteins could be linked to pectins. Overall, the results obtained suggest that fruit cell lines could be used to analyze hormonal regulation of color development in strawberry but that the cell wall remodeling process associated with fruit softening might be masked by the high presence of extensin in callus cultures. MDPI 2020-06-27 /pmc/articles/PMC7412483/ /pubmed/32605018 http://dx.doi.org/10.3390/plants9070805 Text en © 2020 by the authors. 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/).
spellingShingle Article
Ric-Varas, Pablo
Barceló, Marta
Rivera, Juan A.
Cerezo, Sergio
Matas, Antonio J.
Schückel, Julia
Knox, J. Paul
Posé, Sara
Pliego-Alfaro, Fernando
Mercado, José A.
Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening
title Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening
title_full Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening
title_fullStr Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening
title_full_unstemmed Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening
title_short Exploring the Use of Fruit Callus Culture as a Model System to Study Color Development and Cell Wall Remodeling during Strawberry Fruit Ripening
title_sort exploring the use of fruit callus culture as a model system to study color development and cell wall remodeling during strawberry fruit ripening
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7412483/
https://www.ncbi.nlm.nih.gov/pubmed/32605018
http://dx.doi.org/10.3390/plants9070805
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