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Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L

BACKGROUND: Phosphorus (P) is a major limiting nutrient for plant growth in many soils. Studies in model species have identified genes involved in plant adaptations to low soil P availability. However, little information is available on the genetic bases of these adaptations in vegetable crops. In t...

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Autores principales: Fita, Ana, Bowen, Helen C., Hayden, Rory M., Nuez, Fernando, Picó, Belén, Hammond, John P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3334927/
https://www.ncbi.nlm.nih.gov/pubmed/22536378
http://dx.doi.org/10.1371/journal.pone.0035387
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author Fita, Ana
Bowen, Helen C.
Hayden, Rory M.
Nuez, Fernando
Picó, Belén
Hammond, John P.
author_facet Fita, Ana
Bowen, Helen C.
Hayden, Rory M.
Nuez, Fernando
Picó, Belén
Hammond, John P.
author_sort Fita, Ana
collection PubMed
description BACKGROUND: Phosphorus (P) is a major limiting nutrient for plant growth in many soils. Studies in model species have identified genes involved in plant adaptations to low soil P availability. However, little information is available on the genetic bases of these adaptations in vegetable crops. In this respect, sequence data for melon now makes it possible to identify melon orthologues of candidate P responsive genes, and the expression of these genes can be used to explain the diversity in the root system adaptation to low P availability, recently observed in this species. METHODOLOGY AND FINDINGS: Transcriptional responses to P starvation were studied in nine diverse melon accessions by comparing the expression of eight candidate genes (Cm-PAP10.1, Cm-PAP10.2, Cm-RNS1, Cm-PPCK1, Cm-transferase, Cm-SQD1, Cm-DGD1 and Cm-SPX2) under P replete and P starved conditions. Differences among melon accessions were observed in response to P starvation, including differences in plant morphology, P uptake, P use efficiency (PUE) and gene expression. All studied genes were up regulated under P starvation conditions. Differences in the expression of genes involved in P mobilization and remobilization (Cm-PAP10.1, Cm-PAP10.2 and Cm-RNS1) under P starvation conditions explained part of the differences in P uptake and PUE among melon accessions. The levels of expression of the other studied genes were diverse among melon accessions, but contributed less to the phenotypical response of the accessions. CONCLUSIONS: This is the first time that these genes have been described in the context of P starvation responses in melon. There exists significant diversity in gene expression levels and P use efficiency among melon accessions as well as significant correlations between gene expression levels and phenotypical measurements.
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spelling pubmed-33349272012-04-25 Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L Fita, Ana Bowen, Helen C. Hayden, Rory M. Nuez, Fernando Picó, Belén Hammond, John P. PLoS One Research Article BACKGROUND: Phosphorus (P) is a major limiting nutrient for plant growth in many soils. Studies in model species have identified genes involved in plant adaptations to low soil P availability. However, little information is available on the genetic bases of these adaptations in vegetable crops. In this respect, sequence data for melon now makes it possible to identify melon orthologues of candidate P responsive genes, and the expression of these genes can be used to explain the diversity in the root system adaptation to low P availability, recently observed in this species. METHODOLOGY AND FINDINGS: Transcriptional responses to P starvation were studied in nine diverse melon accessions by comparing the expression of eight candidate genes (Cm-PAP10.1, Cm-PAP10.2, Cm-RNS1, Cm-PPCK1, Cm-transferase, Cm-SQD1, Cm-DGD1 and Cm-SPX2) under P replete and P starved conditions. Differences among melon accessions were observed in response to P starvation, including differences in plant morphology, P uptake, P use efficiency (PUE) and gene expression. All studied genes were up regulated under P starvation conditions. Differences in the expression of genes involved in P mobilization and remobilization (Cm-PAP10.1, Cm-PAP10.2 and Cm-RNS1) under P starvation conditions explained part of the differences in P uptake and PUE among melon accessions. The levels of expression of the other studied genes were diverse among melon accessions, but contributed less to the phenotypical response of the accessions. CONCLUSIONS: This is the first time that these genes have been described in the context of P starvation responses in melon. There exists significant diversity in gene expression levels and P use efficiency among melon accessions as well as significant correlations between gene expression levels and phenotypical measurements. Public Library of Science 2012-04-19 /pmc/articles/PMC3334927/ /pubmed/22536378 http://dx.doi.org/10.1371/journal.pone.0035387 Text en Fita et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fita, Ana
Bowen, Helen C.
Hayden, Rory M.
Nuez, Fernando
Picó, Belén
Hammond, John P.
Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L
title Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L
title_full Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L
title_fullStr Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L
title_full_unstemmed Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L
title_short Diversity in Expression of Phosphorus (P) Responsive Genes in Cucumis melo L
title_sort diversity in expression of phosphorus (p) responsive genes in cucumis melo l
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3334927/
https://www.ncbi.nlm.nih.gov/pubmed/22536378
http://dx.doi.org/10.1371/journal.pone.0035387
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