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Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis

BACKGROUND: BRAHMA (BRM) is a member of a family of ATPases of the SWI/SNF chromatin remodeling complexes from Arabidopsis. BRM has been previously shown to be crucial for vegetative and reproductive development. METHODOLOGY/PRINCIPAL FINDINGS: Here we carry out a detailed analysis of the flowering...

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Autores principales: Farrona, Sara, Hurtado, Lidia, March-Díaz, Rosana, Schmitz, Robert J., Florencio, Francisco J., Turck, Franziska, Amasino, Richard M., Reyes, José C.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3061888/
https://www.ncbi.nlm.nih.gov/pubmed/21445315
http://dx.doi.org/10.1371/journal.pone.0017997
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author Farrona, Sara
Hurtado, Lidia
March-Díaz, Rosana
Schmitz, Robert J.
Florencio, Francisco J.
Turck, Franziska
Amasino, Richard M.
Reyes, José C.
author_facet Farrona, Sara
Hurtado, Lidia
March-Díaz, Rosana
Schmitz, Robert J.
Florencio, Francisco J.
Turck, Franziska
Amasino, Richard M.
Reyes, José C.
author_sort Farrona, Sara
collection PubMed
description BACKGROUND: BRAHMA (BRM) is a member of a family of ATPases of the SWI/SNF chromatin remodeling complexes from Arabidopsis. BRM has been previously shown to be crucial for vegetative and reproductive development. METHODOLOGY/PRINCIPAL FINDINGS: Here we carry out a detailed analysis of the flowering phenotype of brm mutant plants which reveals that, in addition to repressing the flowering promoting genes CONSTANS (CO), FLOWERING LOCUS T (FT) and SUPPRESSOR OF OVEREXPRESSION OF CO1 (SOC1), BRM also represses expression of the general flowering repressor FLOWERING LOCUS C (FLC). Thus, in brm mutant plants FLC expression is elevated, and FLC chromatin exhibits increased levels of histone H3 lysine 4 tri-methylation and decreased levels of H3 lysine 27 tri-methylation, indicating that BRM imposes a repressive chromatin configuration at the FLC locus. However, brm mutants display a normal vernalization response, indicating that BRM is not involved in vernalization-mediated FLC repression. Analysis of double mutants suggests that BRM is partially redundant with the autonomous pathway. Analysis of genetic interactions between BRM and the histone H2A.Z deposition machinery demonstrates that brm mutations overcome a requirement of H2A.Z for FLC activation suggesting that in the absence of BRM, a constitutively open chromatin conformation renders H2A.Z dispensable. CONCLUSIONS/SIGNIFICANCE: BRM is critical for phase transition in Arabidopsis. Thus, BRM represses expression of the flowering promoting genes CO, FT and SOC1 and of the flowering repressor FLC. Our results indicate that BRM controls expression of FLC by creating a repressive chromatin configuration of the locus.
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spelling pubmed-30618882011-03-28 Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis Farrona, Sara Hurtado, Lidia March-Díaz, Rosana Schmitz, Robert J. Florencio, Francisco J. Turck, Franziska Amasino, Richard M. Reyes, José C. PLoS One Research Article BACKGROUND: BRAHMA (BRM) is a member of a family of ATPases of the SWI/SNF chromatin remodeling complexes from Arabidopsis. BRM has been previously shown to be crucial for vegetative and reproductive development. METHODOLOGY/PRINCIPAL FINDINGS: Here we carry out a detailed analysis of the flowering phenotype of brm mutant plants which reveals that, in addition to repressing the flowering promoting genes CONSTANS (CO), FLOWERING LOCUS T (FT) and SUPPRESSOR OF OVEREXPRESSION OF CO1 (SOC1), BRM also represses expression of the general flowering repressor FLOWERING LOCUS C (FLC). Thus, in brm mutant plants FLC expression is elevated, and FLC chromatin exhibits increased levels of histone H3 lysine 4 tri-methylation and decreased levels of H3 lysine 27 tri-methylation, indicating that BRM imposes a repressive chromatin configuration at the FLC locus. However, brm mutants display a normal vernalization response, indicating that BRM is not involved in vernalization-mediated FLC repression. Analysis of double mutants suggests that BRM is partially redundant with the autonomous pathway. Analysis of genetic interactions between BRM and the histone H2A.Z deposition machinery demonstrates that brm mutations overcome a requirement of H2A.Z for FLC activation suggesting that in the absence of BRM, a constitutively open chromatin conformation renders H2A.Z dispensable. CONCLUSIONS/SIGNIFICANCE: BRM is critical for phase transition in Arabidopsis. Thus, BRM represses expression of the flowering promoting genes CO, FT and SOC1 and of the flowering repressor FLC. Our results indicate that BRM controls expression of FLC by creating a repressive chromatin configuration of the locus. Public Library of Science 2011-03-21 /pmc/articles/PMC3061888/ /pubmed/21445315 http://dx.doi.org/10.1371/journal.pone.0017997 Text en Farrona 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
Farrona, Sara
Hurtado, Lidia
March-Díaz, Rosana
Schmitz, Robert J.
Florencio, Francisco J.
Turck, Franziska
Amasino, Richard M.
Reyes, José C.
Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis
title Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis
title_full Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis
title_fullStr Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis
title_full_unstemmed Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis
title_short Brahma Is Required for Proper Expression of the Floral Repressor FLC in Arabidopsis
title_sort brahma is required for proper expression of the floral repressor flc in arabidopsis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3061888/
https://www.ncbi.nlm.nih.gov/pubmed/21445315
http://dx.doi.org/10.1371/journal.pone.0017997
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