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Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination

Seed germination is critical for early plantlet development and is tightly controlled by environmental factors. Nevertheless, the signaling networks underlying germination control remain elusive. In this study, the remodeling of Arabidopsis seed phosphoproteome during imbibition was investigated usi...

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Autores principales: Baudouin, Emmanuel, Puyaubert, Juliette, Meimoun, Patrice, Blein-Nicolas, Mélisande, Davanture, Marlène, Zivy, Michel, Bailly, Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266807/
https://www.ncbi.nlm.nih.gov/pubmed/35806063
http://dx.doi.org/10.3390/ijms23137059
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author Baudouin, Emmanuel
Puyaubert, Juliette
Meimoun, Patrice
Blein-Nicolas, Mélisande
Davanture, Marlène
Zivy, Michel
Bailly, Christophe
author_facet Baudouin, Emmanuel
Puyaubert, Juliette
Meimoun, Patrice
Blein-Nicolas, Mélisande
Davanture, Marlène
Zivy, Michel
Bailly, Christophe
author_sort Baudouin, Emmanuel
collection PubMed
description Seed germination is critical for early plantlet development and is tightly controlled by environmental factors. Nevertheless, the signaling networks underlying germination control remain elusive. In this study, the remodeling of Arabidopsis seed phosphoproteome during imbibition was investigated using stable isotope dimethyl labeling and nanoLC-MS/MS analysis. Freshly harvested seeds were imbibed under dark or constant light to restrict or promote germination, respectively. For each light regime, phosphoproteins were extracted and identified from dry and imbibed (6 h, 16 h, and 24 h) seeds. A large repertoire of 10,244 phosphopeptides from 2546 phosphoproteins, including 110 protein kinases and key regulators of seed germination such as Delay Of Germination 1 (DOG1), was established. Most phosphoproteins were only identified in dry seeds. Early imbibition led to a similar massive downregulation in dormant and non-dormant seeds. After 24 h, 411 phosphoproteins were specifically identified in non-dormant seeds. Gene ontology analyses revealed their involvement in RNA and protein metabolism, transport, and signaling. In addition, 489 phosphopeptides were quantified, and 234 exhibited up or downregulation during imbibition. Interaction networks and motif analyses revealed their association with potential signaling modules involved in germination control. Our study provides evidence of a major role of phosphosignaling in the regulation of Arabidopsis seed germination.
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spelling pubmed-92668072022-07-09 Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination Baudouin, Emmanuel Puyaubert, Juliette Meimoun, Patrice Blein-Nicolas, Mélisande Davanture, Marlène Zivy, Michel Bailly, Christophe Int J Mol Sci Article Seed germination is critical for early plantlet development and is tightly controlled by environmental factors. Nevertheless, the signaling networks underlying germination control remain elusive. In this study, the remodeling of Arabidopsis seed phosphoproteome during imbibition was investigated using stable isotope dimethyl labeling and nanoLC-MS/MS analysis. Freshly harvested seeds were imbibed under dark or constant light to restrict or promote germination, respectively. For each light regime, phosphoproteins were extracted and identified from dry and imbibed (6 h, 16 h, and 24 h) seeds. A large repertoire of 10,244 phosphopeptides from 2546 phosphoproteins, including 110 protein kinases and key regulators of seed germination such as Delay Of Germination 1 (DOG1), was established. Most phosphoproteins were only identified in dry seeds. Early imbibition led to a similar massive downregulation in dormant and non-dormant seeds. After 24 h, 411 phosphoproteins were specifically identified in non-dormant seeds. Gene ontology analyses revealed their involvement in RNA and protein metabolism, transport, and signaling. In addition, 489 phosphopeptides were quantified, and 234 exhibited up or downregulation during imbibition. Interaction networks and motif analyses revealed their association with potential signaling modules involved in germination control. Our study provides evidence of a major role of phosphosignaling in the regulation of Arabidopsis seed germination. MDPI 2022-06-24 /pmc/articles/PMC9266807/ /pubmed/35806063 http://dx.doi.org/10.3390/ijms23137059 Text en © 2022 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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Baudouin, Emmanuel
Puyaubert, Juliette
Meimoun, Patrice
Blein-Nicolas, Mélisande
Davanture, Marlène
Zivy, Michel
Bailly, Christophe
Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination
title Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination
title_full Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination
title_fullStr Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination
title_full_unstemmed Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination
title_short Dynamics of Protein Phosphorylation during Arabidopsis Seed Germination
title_sort dynamics of protein phosphorylation during arabidopsis seed germination
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266807/
https://www.ncbi.nlm.nih.gov/pubmed/35806063
http://dx.doi.org/10.3390/ijms23137059
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