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Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply

The fluid collected by direct leaf centrifugation has been used to study the proteome of the sugar beet apoplastic fluid as well as the changes induced by Fe deficiency and Fe resupply to Fe-deficient plants in the protein profile. Plants were grown in Fe-sufficient and Fe-deficient conditions, and...

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Autores principales: Ceballos-Laita, Laura, Gutierrez-Carbonell, Elain, Lattanzio, Giuseppe, Vázquez, Saul, Contreras-Moreira, Bruno, Abadía, Anunciación, Abadía, Javier, López-Millán, Ana-Flor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364163/
https://www.ncbi.nlm.nih.gov/pubmed/25852707
http://dx.doi.org/10.3389/fpls.2015.00145
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author Ceballos-Laita, Laura
Gutierrez-Carbonell, Elain
Lattanzio, Giuseppe
Vázquez, Saul
Contreras-Moreira, Bruno
Abadía, Anunciación
Abadía, Javier
López-Millán, Ana-Flor
author_facet Ceballos-Laita, Laura
Gutierrez-Carbonell, Elain
Lattanzio, Giuseppe
Vázquez, Saul
Contreras-Moreira, Bruno
Abadía, Anunciación
Abadía, Javier
López-Millán, Ana-Flor
author_sort Ceballos-Laita, Laura
collection PubMed
description The fluid collected by direct leaf centrifugation has been used to study the proteome of the sugar beet apoplastic fluid as well as the changes induced by Fe deficiency and Fe resupply to Fe-deficient plants in the protein profile. Plants were grown in Fe-sufficient and Fe-deficient conditions, and Fe resupply was carried out with 45 μM Fe(III)-EDTA for 24 h. Protein extracts of leaf apoplastic fluid were analyzed by two-dimensional isoelectric focusing-SDS-PAGE electrophoresis. Gel image analysis revealed 203 consistent spots, and proteins in 81% of them (164) were identified by nLC-MS/MS using a custom made reference repository of beet protein sequences. When redundant UniProt entries were deleted, a non-redundant leaf apoplastic proteome consisting of 109 proteins was obtained. TargetP and SecretomeP algorithms predicted that 63% of them were secretory proteins. Functional classification of the non-redundant proteins indicated that stress and defense, protein metabolism, cell wall and C metabolism accounted for approximately 75% of the identified proteome. The effects of Fe-deficiency on the leaf apoplast proteome were limited, with only five spots (2.5%) changing in relative abundance, thus suggesting that protein homeostasis in the leaf apoplast fluid is well-maintained upon Fe shortage. The identification of three chitinase isoforms among proteins increasing in relative abundance with Fe-deficiency suggests that one of the few effects of Fe deficiency in the leaf apoplast proteome includes cell wall modifications. Iron resupply to Fe deficient plants changed the relative abundance of 16 spots when compared to either Fe-sufficient or Fe-deficient samples. Proteins identified in these spots can be broadly classified as those responding to Fe-resupply, which included defense and cell wall related proteins, and non-responsive, which are mainly protein metabolism related proteins and whose changes in relative abundance followed the same trend as with Fe-deficiency.
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spelling pubmed-43641632015-04-07 Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply Ceballos-Laita, Laura Gutierrez-Carbonell, Elain Lattanzio, Giuseppe Vázquez, Saul Contreras-Moreira, Bruno Abadía, Anunciación Abadía, Javier López-Millán, Ana-Flor Front Plant Sci Plant Science The fluid collected by direct leaf centrifugation has been used to study the proteome of the sugar beet apoplastic fluid as well as the changes induced by Fe deficiency and Fe resupply to Fe-deficient plants in the protein profile. Plants were grown in Fe-sufficient and Fe-deficient conditions, and Fe resupply was carried out with 45 μM Fe(III)-EDTA for 24 h. Protein extracts of leaf apoplastic fluid were analyzed by two-dimensional isoelectric focusing-SDS-PAGE electrophoresis. Gel image analysis revealed 203 consistent spots, and proteins in 81% of them (164) were identified by nLC-MS/MS using a custom made reference repository of beet protein sequences. When redundant UniProt entries were deleted, a non-redundant leaf apoplastic proteome consisting of 109 proteins was obtained. TargetP and SecretomeP algorithms predicted that 63% of them were secretory proteins. Functional classification of the non-redundant proteins indicated that stress and defense, protein metabolism, cell wall and C metabolism accounted for approximately 75% of the identified proteome. The effects of Fe-deficiency on the leaf apoplast proteome were limited, with only five spots (2.5%) changing in relative abundance, thus suggesting that protein homeostasis in the leaf apoplast fluid is well-maintained upon Fe shortage. The identification of three chitinase isoforms among proteins increasing in relative abundance with Fe-deficiency suggests that one of the few effects of Fe deficiency in the leaf apoplast proteome includes cell wall modifications. Iron resupply to Fe deficient plants changed the relative abundance of 16 spots when compared to either Fe-sufficient or Fe-deficient samples. Proteins identified in these spots can be broadly classified as those responding to Fe-resupply, which included defense and cell wall related proteins, and non-responsive, which are mainly protein metabolism related proteins and whose changes in relative abundance followed the same trend as with Fe-deficiency. Frontiers Media S.A. 2015-03-18 /pmc/articles/PMC4364163/ /pubmed/25852707 http://dx.doi.org/10.3389/fpls.2015.00145 Text en Copyright © 2015 Ceballos-Laita, Gutierrez-Carbonell, Lattanzio, Vázquez, Contreras-Moreira, Abadía, Abadía and López-Millán. 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) or licensor 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
Ceballos-Laita, Laura
Gutierrez-Carbonell, Elain
Lattanzio, Giuseppe
Vázquez, Saul
Contreras-Moreira, Bruno
Abadía, Anunciación
Abadía, Javier
López-Millán, Ana-Flor
Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply
title Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply
title_full Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply
title_fullStr Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply
title_full_unstemmed Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply
title_short Protein profile of Beta vulgaris leaf apoplastic fluid and changes induced by Fe deficiency and Fe resupply
title_sort protein profile of beta vulgaris leaf apoplastic fluid and changes induced by fe deficiency and fe resupply
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364163/
https://www.ncbi.nlm.nih.gov/pubmed/25852707
http://dx.doi.org/10.3389/fpls.2015.00145
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