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Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components

Plant nutrition is one of the important areas for improving the yield and quality in crops as well as non-crop plants. Potassium is an essential plant nutrient and is required in abundance for their proper growth and development. Potassium deficiency directly affects the plant growth and hence crop...

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Autores principales: Shankar, Alka, Singh, Amarjeet, Kanwar, Poonam, Srivastava, Ashish Kumar, Pandey, Amita, Suprasanna, Penna, Kapoor, Sanjay, Pandey, Girdhar K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726378/
https://www.ncbi.nlm.nih.gov/pubmed/23922980
http://dx.doi.org/10.1371/journal.pone.0070321
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author Shankar, Alka
Singh, Amarjeet
Kanwar, Poonam
Srivastava, Ashish Kumar
Pandey, Amita
Suprasanna, Penna
Kapoor, Sanjay
Pandey, Girdhar K.
author_facet Shankar, Alka
Singh, Amarjeet
Kanwar, Poonam
Srivastava, Ashish Kumar
Pandey, Amita
Suprasanna, Penna
Kapoor, Sanjay
Pandey, Girdhar K.
author_sort Shankar, Alka
collection PubMed
description Plant nutrition is one of the important areas for improving the yield and quality in crops as well as non-crop plants. Potassium is an essential plant nutrient and is required in abundance for their proper growth and development. Potassium deficiency directly affects the plant growth and hence crop yield and production. Recently, potassium-dependent transcriptomic analysis has been performed in the model plant Arabidopsis, however in cereals and crop plants; such a transcriptome analysis has not been undertaken till date. In rice, the molecular mechanism for the regulation of potassium starvation responses has not been investigated in detail. Here, we present a combined physiological and whole genome transcriptomic study of rice seedlings exposed to a brief period of potassium deficiency then replenished with potassium. Our results reveal that the expressions of a diverse set of genes annotated with many distinct functions were altered under potassium deprivation. Our findings highlight altered expression patterns of potassium-responsive genes majorly involved in metabolic processes, stress responses, signaling pathways, transcriptional regulation, and transport of multiple molecules including K(+). Interestingly, several genes responsive to low-potassium conditions show a reversal in expression upon resupply of potassium. The results of this study indicate that potassium deprivation leads to activation of multiple genes and gene networks, which may be acting in concert to sense the external potassium and mediate uptake, distribution and ultimately adaptation to low potassium conditions. The interplay of both upregulated and downregulated genes globally in response to potassium deprivation determines how plants cope with the stress of nutrient deficiency at different physiological as well as developmental stages of plants.
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spelling pubmed-37263782013-08-06 Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components Shankar, Alka Singh, Amarjeet Kanwar, Poonam Srivastava, Ashish Kumar Pandey, Amita Suprasanna, Penna Kapoor, Sanjay Pandey, Girdhar K. PLoS One Research Article Plant nutrition is one of the important areas for improving the yield and quality in crops as well as non-crop plants. Potassium is an essential plant nutrient and is required in abundance for their proper growth and development. Potassium deficiency directly affects the plant growth and hence crop yield and production. Recently, potassium-dependent transcriptomic analysis has been performed in the model plant Arabidopsis, however in cereals and crop plants; such a transcriptome analysis has not been undertaken till date. In rice, the molecular mechanism for the regulation of potassium starvation responses has not been investigated in detail. Here, we present a combined physiological and whole genome transcriptomic study of rice seedlings exposed to a brief period of potassium deficiency then replenished with potassium. Our results reveal that the expressions of a diverse set of genes annotated with many distinct functions were altered under potassium deprivation. Our findings highlight altered expression patterns of potassium-responsive genes majorly involved in metabolic processes, stress responses, signaling pathways, transcriptional regulation, and transport of multiple molecules including K(+). Interestingly, several genes responsive to low-potassium conditions show a reversal in expression upon resupply of potassium. The results of this study indicate that potassium deprivation leads to activation of multiple genes and gene networks, which may be acting in concert to sense the external potassium and mediate uptake, distribution and ultimately adaptation to low potassium conditions. The interplay of both upregulated and downregulated genes globally in response to potassium deprivation determines how plants cope with the stress of nutrient deficiency at different physiological as well as developmental stages of plants. Public Library of Science 2013-07-29 /pmc/articles/PMC3726378/ /pubmed/23922980 http://dx.doi.org/10.1371/journal.pone.0070321 Text en © 2013 Shanker 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
Shankar, Alka
Singh, Amarjeet
Kanwar, Poonam
Srivastava, Ashish Kumar
Pandey, Amita
Suprasanna, Penna
Kapoor, Sanjay
Pandey, Girdhar K.
Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components
title Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components
title_full Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components
title_fullStr Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components
title_full_unstemmed Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components
title_short Gene Expression Analysis of Rice Seedling under Potassium Deprivation Reveals Major Changes in Metabolism and Signaling Components
title_sort gene expression analysis of rice seedling under potassium deprivation reveals major changes in metabolism and signaling components
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726378/
https://www.ncbi.nlm.nih.gov/pubmed/23922980
http://dx.doi.org/10.1371/journal.pone.0070321
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