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Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles

The early and specific diagnosis of a macronutrient deficiency is challenging when seeking to better manage fertilizer inputs in the context of sustainable agriculture. Consequently, this study explored the potential for transcriptomic and metabolomic analysis of Brassica napus roots to characterize...

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Autores principales: Courbet, Galatéa, D’Oria, Aurélien, Maillard, Anne, Jing, Lun, Pluchon, Sylvain, Arkoun, Mustapha, Pateyron, Stéphanie, Paysant Le Roux, Christine, Diquélou, Sylvain, Ourry, Alain, Trouverie, Jacques, Etienne, Philippe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8584284/
https://www.ncbi.nlm.nih.gov/pubmed/34769110
http://dx.doi.org/10.3390/ijms222111679
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author Courbet, Galatéa
D’Oria, Aurélien
Maillard, Anne
Jing, Lun
Pluchon, Sylvain
Arkoun, Mustapha
Pateyron, Stéphanie
Paysant Le Roux, Christine
Diquélou, Sylvain
Ourry, Alain
Trouverie, Jacques
Etienne, Philippe
author_facet Courbet, Galatéa
D’Oria, Aurélien
Maillard, Anne
Jing, Lun
Pluchon, Sylvain
Arkoun, Mustapha
Pateyron, Stéphanie
Paysant Le Roux, Christine
Diquélou, Sylvain
Ourry, Alain
Trouverie, Jacques
Etienne, Philippe
author_sort Courbet, Galatéa
collection PubMed
description The early and specific diagnosis of a macronutrient deficiency is challenging when seeking to better manage fertilizer inputs in the context of sustainable agriculture. Consequently, this study explored the potential for transcriptomic and metabolomic analysis of Brassica napus roots to characterize the effects of six individual macronutrient deprivations (N, Mg, P, S, K, and Ca). Our results showed that before any visual phenotypic response, all macronutrient deprivations led to a large modulation of the transcriptome and metabolome involved in various metabolic pathways, and some were common to all macronutrient deprivations. Significantly, comparative transcriptomic analysis allowed the definition of a subset of 3282, 2011, 6325, 1384, 439, and 5157 differentially expressed genes (DEGs) specific to N, Mg, P, S, K, and Ca deprivations, respectively. Surprisingly, gene ontology term enrichment analysis performed on this subset of specific DEGs highlighted biological processes that are common to a number of these macronutrient deprivations, illustrating the complexity of nutrient interactions. In addition, a set of 38 biochemical compounds that discriminated the macronutrient deprivations was identified using a metabolic approach. The opportunity to use these specific DEGs and/or biochemical compounds as potential molecular indicators to diagnose macronutrient deficiency is discussed.
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spelling pubmed-85842842021-11-12 Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles Courbet, Galatéa D’Oria, Aurélien Maillard, Anne Jing, Lun Pluchon, Sylvain Arkoun, Mustapha Pateyron, Stéphanie Paysant Le Roux, Christine Diquélou, Sylvain Ourry, Alain Trouverie, Jacques Etienne, Philippe Int J Mol Sci Article The early and specific diagnosis of a macronutrient deficiency is challenging when seeking to better manage fertilizer inputs in the context of sustainable agriculture. Consequently, this study explored the potential for transcriptomic and metabolomic analysis of Brassica napus roots to characterize the effects of six individual macronutrient deprivations (N, Mg, P, S, K, and Ca). Our results showed that before any visual phenotypic response, all macronutrient deprivations led to a large modulation of the transcriptome and metabolome involved in various metabolic pathways, and some were common to all macronutrient deprivations. Significantly, comparative transcriptomic analysis allowed the definition of a subset of 3282, 2011, 6325, 1384, 439, and 5157 differentially expressed genes (DEGs) specific to N, Mg, P, S, K, and Ca deprivations, respectively. Surprisingly, gene ontology term enrichment analysis performed on this subset of specific DEGs highlighted biological processes that are common to a number of these macronutrient deprivations, illustrating the complexity of nutrient interactions. In addition, a set of 38 biochemical compounds that discriminated the macronutrient deprivations was identified using a metabolic approach. The opportunity to use these specific DEGs and/or biochemical compounds as potential molecular indicators to diagnose macronutrient deficiency is discussed. MDPI 2021-10-28 /pmc/articles/PMC8584284/ /pubmed/34769110 http://dx.doi.org/10.3390/ijms222111679 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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Courbet, Galatéa
D’Oria, Aurélien
Maillard, Anne
Jing, Lun
Pluchon, Sylvain
Arkoun, Mustapha
Pateyron, Stéphanie
Paysant Le Roux, Christine
Diquélou, Sylvain
Ourry, Alain
Trouverie, Jacques
Etienne, Philippe
Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles
title Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles
title_full Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles
title_fullStr Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles
title_full_unstemmed Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles
title_short Comparative Omics Analysis of Brassica napus Roots Subjected to Six Individual Macronutrient Deprivations Reveals Deficiency-Specific Genes and Metabolomic Profiles
title_sort comparative omics analysis of brassica napus roots subjected to six individual macronutrient deprivations reveals deficiency-specific genes and metabolomic profiles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8584284/
https://www.ncbi.nlm.nih.gov/pubmed/34769110
http://dx.doi.org/10.3390/ijms222111679
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