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Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development

BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger specific and global changes in gene expression programs. In plants, MADS-domain transcription factors act as master regulators of developmental switches and organ specification. However, the mechanism...

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Autores principales: Pajoro, Alice, Madrigal, Pedro, Muiño, Jose M, Matus, José Tomás, Jin, Jian, Mecchia, Martin A, Debernardi, Juan M, Palatnik, Javier F, Balazadeh, Salma, Arif, Muhammad, Ó’Maoiléidigh, Diarmuid S, Wellmer, Frank, Krajewski, Pawel, Riechmann, José-Luis, Angenent, Gerco C, Kaufmann, Kerstin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4054849/
https://www.ncbi.nlm.nih.gov/pubmed/24581456
http://dx.doi.org/10.1186/gb-2014-15-3-r41
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author Pajoro, Alice
Madrigal, Pedro
Muiño, Jose M
Matus, José Tomás
Jin, Jian
Mecchia, Martin A
Debernardi, Juan M
Palatnik, Javier F
Balazadeh, Salma
Arif, Muhammad
Ó’Maoiléidigh, Diarmuid S
Wellmer, Frank
Krajewski, Pawel
Riechmann, José-Luis
Angenent, Gerco C
Kaufmann, Kerstin
author_facet Pajoro, Alice
Madrigal, Pedro
Muiño, Jose M
Matus, José Tomás
Jin, Jian
Mecchia, Martin A
Debernardi, Juan M
Palatnik, Javier F
Balazadeh, Salma
Arif, Muhammad
Ó’Maoiléidigh, Diarmuid S
Wellmer, Frank
Krajewski, Pawel
Riechmann, José-Luis
Angenent, Gerco C
Kaufmann, Kerstin
author_sort Pajoro, Alice
collection PubMed
description BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger specific and global changes in gene expression programs. In plants, MADS-domain transcription factors act as master regulators of developmental switches and organ specification. However, the mechanisms by which these factors dynamically regulate the expression of their target genes at different developmental stages are still poorly understood. RESULTS: We characterized the relationship of chromatin accessibility, gene expression, and DNA binding of two MADS-domain proteins at different stages of Arabidopsis flower development. Dynamic changes in APETALA1 and SEPALLATA3 DNA binding correlated with changes in gene expression, and many of the target genes could be associated with the developmental stage in which they are transcriptionally controlled. We also observe dynamic changes in chromatin accessibility during flower development. Remarkably, DNA binding of APETALA1 and SEPALLATA3 is largely independent of the accessibility status of their binding regions and it can precede increases in DNA accessibility. These results suggest that APETALA1 and SEPALLATA3 may modulate chromatin accessibility, thereby facilitating access of other transcriptional regulators to their target genes. CONCLUSIONS: Our findings indicate that different homeotic factors regulate partly overlapping, yet also distinctive sets of target genes in a partly stage-specific fashion. By combining the information from DNA-binding and gene expression data, we are able to propose models of stage-specific regulatory interactions, thereby addressing dynamics of regulatory networks throughout flower development. Furthermore, MADS-domain TFs may regulate gene expression by alternative strategies, one of which is modulation of chromatin accessibility.
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spelling pubmed-40548492014-06-12 Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development Pajoro, Alice Madrigal, Pedro Muiño, Jose M Matus, José Tomás Jin, Jian Mecchia, Martin A Debernardi, Juan M Palatnik, Javier F Balazadeh, Salma Arif, Muhammad Ó’Maoiléidigh, Diarmuid S Wellmer, Frank Krajewski, Pawel Riechmann, José-Luis Angenent, Gerco C Kaufmann, Kerstin Genome Biol Research BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger specific and global changes in gene expression programs. In plants, MADS-domain transcription factors act as master regulators of developmental switches and organ specification. However, the mechanisms by which these factors dynamically regulate the expression of their target genes at different developmental stages are still poorly understood. RESULTS: We characterized the relationship of chromatin accessibility, gene expression, and DNA binding of two MADS-domain proteins at different stages of Arabidopsis flower development. Dynamic changes in APETALA1 and SEPALLATA3 DNA binding correlated with changes in gene expression, and many of the target genes could be associated with the developmental stage in which they are transcriptionally controlled. We also observe dynamic changes in chromatin accessibility during flower development. Remarkably, DNA binding of APETALA1 and SEPALLATA3 is largely independent of the accessibility status of their binding regions and it can precede increases in DNA accessibility. These results suggest that APETALA1 and SEPALLATA3 may modulate chromatin accessibility, thereby facilitating access of other transcriptional regulators to their target genes. CONCLUSIONS: Our findings indicate that different homeotic factors regulate partly overlapping, yet also distinctive sets of target genes in a partly stage-specific fashion. By combining the information from DNA-binding and gene expression data, we are able to propose models of stage-specific regulatory interactions, thereby addressing dynamics of regulatory networks throughout flower development. Furthermore, MADS-domain TFs may regulate gene expression by alternative strategies, one of which is modulation of chromatin accessibility. BioMed Central 2014 2014-03-03 /pmc/articles/PMC4054849/ /pubmed/24581456 http://dx.doi.org/10.1186/gb-2014-15-3-r41 Text en Copyright © 2014 Pajoro 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 credited.
spellingShingle Research
Pajoro, Alice
Madrigal, Pedro
Muiño, Jose M
Matus, José Tomás
Jin, Jian
Mecchia, Martin A
Debernardi, Juan M
Palatnik, Javier F
Balazadeh, Salma
Arif, Muhammad
Ó’Maoiléidigh, Diarmuid S
Wellmer, Frank
Krajewski, Pawel
Riechmann, José-Luis
Angenent, Gerco C
Kaufmann, Kerstin
Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development
title Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development
title_full Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development
title_fullStr Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development
title_full_unstemmed Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development
title_short Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development
title_sort dynamics of chromatin accessibility and gene regulation by mads-domain transcription factors in flower development
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4054849/
https://www.ncbi.nlm.nih.gov/pubmed/24581456
http://dx.doi.org/10.1186/gb-2014-15-3-r41
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