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The study of a barley epigenetic regulator, HvDME, in seed development and under drought

BACKGROUND: Epigenetic factors such as DNA methylation and histone modifications regulate a wide range of processes in plant development. Cytosine methylation and demethylation exist in a dynamic balance and have been associated with gene silencing or activation, respectively. In Arabidopsis, cytosi...

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Autores principales: Kapazoglou, Aliki, Drosou, Vicky, Argiriou, Anagnostis, Tsaftaris, Athanasios S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4228467/
https://www.ncbi.nlm.nih.gov/pubmed/24175960
http://dx.doi.org/10.1186/1471-2229-13-172
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author Kapazoglou, Aliki
Drosou, Vicky
Argiriou, Anagnostis
Tsaftaris, Athanasios S
author_facet Kapazoglou, Aliki
Drosou, Vicky
Argiriou, Anagnostis
Tsaftaris, Athanasios S
author_sort Kapazoglou, Aliki
collection PubMed
description BACKGROUND: Epigenetic factors such as DNA methylation and histone modifications regulate a wide range of processes in plant development. Cytosine methylation and demethylation exist in a dynamic balance and have been associated with gene silencing or activation, respectively. In Arabidopsis, cytosine demethylation is achieved by specific DNA glycosylases, including AtDME (DEMETER) and AtROS1 (REPRESSOR OF SILENCING1), which have been shown to play important roles in seed development. Nevertheless, studies on monocot DNA glycosylases are limited. Here we present the study of a DME homologue from barley (HvDME), an agronomically important cereal crop, during seed development and in response to conditions of drought. RESULTS: An HvDME gene, identified in GenBank, was found to encode a protein with all the characteristic modules of DME-family DNA glycosylase proteins. Phylogenetic analysis revealed a high degree of homology to other monocot DME glycosylases, and sequence divergence from the ROS1, DML2 and DML3 orthologues. The HvDME gene contains the 5′ and 3′ Long Terminal Repeats (LTR) of a Copia retrotransposon element within the 3′ downstream region. HvDME transcripts were shown to be present both in vegetative and reproductive tissues and accumulated differentially in different seed developmental stages and in two different cultivars with varying seed size. Additionally, remarkable induction of HvDME was evidenced in response to drought treatment in a drought-tolerant barley cultivar. Moreover, variable degrees of DNA methylation in specific regions of the HvDME promoter and gene body were detected in two different cultivars. CONCLUSION: A gene encoding a DNA glycosylase closely related to cereal DME glycosylases was characterized in barley. Expression analysis during seed development and under dehydration conditions suggested a role for HvDME in endosperm development, seed maturation, and in response to drought. Furthermore, differential DNA methylation patterns within the gene in two different cultivars suggested epigenetic regulation of HvDME. The study of a barley DME gene will contribute to our understanding of epigenetic mechanisms operating during seed development and stress response in agronomically important cereal crops.
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spelling pubmed-42284672014-11-13 The study of a barley epigenetic regulator, HvDME, in seed development and under drought Kapazoglou, Aliki Drosou, Vicky Argiriou, Anagnostis Tsaftaris, Athanasios S BMC Plant Biol Research Article BACKGROUND: Epigenetic factors such as DNA methylation and histone modifications regulate a wide range of processes in plant development. Cytosine methylation and demethylation exist in a dynamic balance and have been associated with gene silencing or activation, respectively. In Arabidopsis, cytosine demethylation is achieved by specific DNA glycosylases, including AtDME (DEMETER) and AtROS1 (REPRESSOR OF SILENCING1), which have been shown to play important roles in seed development. Nevertheless, studies on monocot DNA glycosylases are limited. Here we present the study of a DME homologue from barley (HvDME), an agronomically important cereal crop, during seed development and in response to conditions of drought. RESULTS: An HvDME gene, identified in GenBank, was found to encode a protein with all the characteristic modules of DME-family DNA glycosylase proteins. Phylogenetic analysis revealed a high degree of homology to other monocot DME glycosylases, and sequence divergence from the ROS1, DML2 and DML3 orthologues. The HvDME gene contains the 5′ and 3′ Long Terminal Repeats (LTR) of a Copia retrotransposon element within the 3′ downstream region. HvDME transcripts were shown to be present both in vegetative and reproductive tissues and accumulated differentially in different seed developmental stages and in two different cultivars with varying seed size. Additionally, remarkable induction of HvDME was evidenced in response to drought treatment in a drought-tolerant barley cultivar. Moreover, variable degrees of DNA methylation in specific regions of the HvDME promoter and gene body were detected in two different cultivars. CONCLUSION: A gene encoding a DNA glycosylase closely related to cereal DME glycosylases was characterized in barley. Expression analysis during seed development and under dehydration conditions suggested a role for HvDME in endosperm development, seed maturation, and in response to drought. Furthermore, differential DNA methylation patterns within the gene in two different cultivars suggested epigenetic regulation of HvDME. The study of a barley DME gene will contribute to our understanding of epigenetic mechanisms operating during seed development and stress response in agronomically important cereal crops. BioMed Central 2013-10-31 /pmc/articles/PMC4228467/ /pubmed/24175960 http://dx.doi.org/10.1186/1471-2229-13-172 Text en Copyright © 2013 Kapazoglou et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kapazoglou, Aliki
Drosou, Vicky
Argiriou, Anagnostis
Tsaftaris, Athanasios S
The study of a barley epigenetic regulator, HvDME, in seed development and under drought
title The study of a barley epigenetic regulator, HvDME, in seed development and under drought
title_full The study of a barley epigenetic regulator, HvDME, in seed development and under drought
title_fullStr The study of a barley epigenetic regulator, HvDME, in seed development and under drought
title_full_unstemmed The study of a barley epigenetic regulator, HvDME, in seed development and under drought
title_short The study of a barley epigenetic regulator, HvDME, in seed development and under drought
title_sort study of a barley epigenetic regulator, hvdme, in seed development and under drought
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4228467/
https://www.ncbi.nlm.nih.gov/pubmed/24175960
http://dx.doi.org/10.1186/1471-2229-13-172
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