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Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis

Polyamines (PAs) are small aliphatic polycations that are found ubiquitously in all organisms. In plants, PAs are involved in diverse biological processes such as growth, development, and stress responses. In Arabidopsis thaliana, the arginine decarboxylase enzymes (ADC1 and 2) catalyze the first st...

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Autores principales: Sánchez-Rangel, Diana, Chávez-Martínez, Ana I., Rodríguez-Hernández, Aída A., Maruri-López, Israel, Urano, Kaoru, Shinozaki, Kazuo, Jiménez-Bremont, Juan F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789552/
https://www.ncbi.nlm.nih.gov/pubmed/27014322
http://dx.doi.org/10.3389/fpls.2016.00300
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author Sánchez-Rangel, Diana
Chávez-Martínez, Ana I.
Rodríguez-Hernández, Aída A.
Maruri-López, Israel
Urano, Kaoru
Shinozaki, Kazuo
Jiménez-Bremont, Juan F.
author_facet Sánchez-Rangel, Diana
Chávez-Martínez, Ana I.
Rodríguez-Hernández, Aída A.
Maruri-López, Israel
Urano, Kaoru
Shinozaki, Kazuo
Jiménez-Bremont, Juan F.
author_sort Sánchez-Rangel, Diana
collection PubMed
description Polyamines (PAs) are small aliphatic polycations that are found ubiquitously in all organisms. In plants, PAs are involved in diverse biological processes such as growth, development, and stress responses. In Arabidopsis thaliana, the arginine decarboxylase enzymes (ADC1 and 2) catalyze the first step of PA biosynthesis. For a better understanding of PA biological functions, mutants in PA biosynthesis have been generated; however, the double adc1/adc2 mutant is not viable in A. thaliana. In this study, we generated non-lethal A. thaliana lines through an artificial microRNA that simultaneously silenced the two ADC genes (amiR:ADC). The generated transgenic lines (amiR:ADC-L1 and -L2) showed reduced AtADC1 and AtADC2 transcript levels. For further analyses the amiR:ADC-L2 line was selected. We found that the amiR:ADC-L2 line showed a significant decrease of their PA levels. The co-silencing revealed a stunted growth in A. thaliana seedlings, plantlets and delay in its flowering rate; these phenotypes were reverted with PA treatment. In addition, amiR:ADC-L2 plants displayed two seed phenotypes, such as yellow and brownish seeds. The yellow mutant seeds were smaller than adc1, adc2 mutants and wild type seeds; however, the brownish were the smallest seeds with arrested embryos at the torpedo stage. These data reinforce the importance of PA homeostasis in the plant development processes.
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spelling pubmed-47895522016-03-24 Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis Sánchez-Rangel, Diana Chávez-Martínez, Ana I. Rodríguez-Hernández, Aída A. Maruri-López, Israel Urano, Kaoru Shinozaki, Kazuo Jiménez-Bremont, Juan F. Front Plant Sci Plant Science Polyamines (PAs) are small aliphatic polycations that are found ubiquitously in all organisms. In plants, PAs are involved in diverse biological processes such as growth, development, and stress responses. In Arabidopsis thaliana, the arginine decarboxylase enzymes (ADC1 and 2) catalyze the first step of PA biosynthesis. For a better understanding of PA biological functions, mutants in PA biosynthesis have been generated; however, the double adc1/adc2 mutant is not viable in A. thaliana. In this study, we generated non-lethal A. thaliana lines through an artificial microRNA that simultaneously silenced the two ADC genes (amiR:ADC). The generated transgenic lines (amiR:ADC-L1 and -L2) showed reduced AtADC1 and AtADC2 transcript levels. For further analyses the amiR:ADC-L2 line was selected. We found that the amiR:ADC-L2 line showed a significant decrease of their PA levels. The co-silencing revealed a stunted growth in A. thaliana seedlings, plantlets and delay in its flowering rate; these phenotypes were reverted with PA treatment. In addition, amiR:ADC-L2 plants displayed two seed phenotypes, such as yellow and brownish seeds. The yellow mutant seeds were smaller than adc1, adc2 mutants and wild type seeds; however, the brownish were the smallest seeds with arrested embryos at the torpedo stage. These data reinforce the importance of PA homeostasis in the plant development processes. Frontiers Media S.A. 2016-03-14 /pmc/articles/PMC4789552/ /pubmed/27014322 http://dx.doi.org/10.3389/fpls.2016.00300 Text en Copyright © 2016 Sánchez-Rangel, Chávez-Martínez, Rodríguez-Hernández, Maruri-López, Urano, Shinozaki and Jiménez-Bremont. 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
Sánchez-Rangel, Diana
Chávez-Martínez, Ana I.
Rodríguez-Hernández, Aída A.
Maruri-López, Israel
Urano, Kaoru
Shinozaki, Kazuo
Jiménez-Bremont, Juan F.
Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis
title Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis
title_full Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis
title_fullStr Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis
title_full_unstemmed Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis
title_short Simultaneous Silencing of Two Arginine Decarboxylase Genes Alters Development in Arabidopsis
title_sort simultaneous silencing of two arginine decarboxylase genes alters development in arabidopsis
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789552/
https://www.ncbi.nlm.nih.gov/pubmed/27014322
http://dx.doi.org/10.3389/fpls.2016.00300
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