Cargando…

ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem

The root meristem is organized around a quiescent center (QC) surrounded by stem cells that generate all cell types of the root. In the transit‐amplifying compartment, progeny of stem cells further divides prior to differentiation. Auxin controls the size of this transit‐amplifying compartment via a...

Descripción completa

Detalles Bibliográficos
Autores principales: Dastidar, Mouli Ghosh, Scarpa, Andrea, Mägele, Ira, Ruiz‐Duarte, Paola, von Born, Patrick, Bald, Lotte, Jouannet, Virginie, Maizel, Alexis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6508847/
https://www.ncbi.nlm.nih.gov/pubmed/31245759
http://dx.doi.org/10.1002/pld3.116
_version_ 1783417144286904320
author Dastidar, Mouli Ghosh
Scarpa, Andrea
Mägele, Ira
Ruiz‐Duarte, Paola
von Born, Patrick
Bald, Lotte
Jouannet, Virginie
Maizel, Alexis
author_facet Dastidar, Mouli Ghosh
Scarpa, Andrea
Mägele, Ira
Ruiz‐Duarte, Paola
von Born, Patrick
Bald, Lotte
Jouannet, Virginie
Maizel, Alexis
author_sort Dastidar, Mouli Ghosh
collection PubMed
description The root meristem is organized around a quiescent center (QC) surrounded by stem cells that generate all cell types of the root. In the transit‐amplifying compartment, progeny of stem cells further divides prior to differentiation. Auxin controls the size of this transit‐amplifying compartment via auxin response factors (ARFs) that interact with auxin response elements (AuxREs) in the promoter of their targets. The microRNA miR390 regulates abundance of ARF2, ARF3, and ARF4 by triggering the production of trans‐acting (ta)‐siRNA from the TAS3 precursor. This miR390/TAS3/ARF regulatory module confers sensitivity and robustness to auxin responses in diverse developmental contexts and organisms. Here, we show that miR390 is expressed in the transit‐amplifying compartment of the root meristem where it modulates response to exogenous auxin. We show that a single AuxRE located in miR390 promoter is necessary for miR390 expression in this compartment and identify that ARF5/MONOPTEROS (MP) binds miR390 promoter via the AuxRE. We show that interfering with ARF5/MP‐dependent auxin signaling attenuates miR390 expression in the transit‐amplifying compartment of the root meristem. Our results show that ARF5/MP regulates directly the expression of miR390 in the root meristem. We propose that ARF5, miR390, and the ta‐siRNAs‐regulated ARFs modulate the response of the transit‐amplifying region of the meristem to exogenous auxin.
format Online
Article
Text
id pubmed-6508847
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-65088472019-06-26 ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem Dastidar, Mouli Ghosh Scarpa, Andrea Mägele, Ira Ruiz‐Duarte, Paola von Born, Patrick Bald, Lotte Jouannet, Virginie Maizel, Alexis Plant Direct Original Research The root meristem is organized around a quiescent center (QC) surrounded by stem cells that generate all cell types of the root. In the transit‐amplifying compartment, progeny of stem cells further divides prior to differentiation. Auxin controls the size of this transit‐amplifying compartment via auxin response factors (ARFs) that interact with auxin response elements (AuxREs) in the promoter of their targets. The microRNA miR390 regulates abundance of ARF2, ARF3, and ARF4 by triggering the production of trans‐acting (ta)‐siRNA from the TAS3 precursor. This miR390/TAS3/ARF regulatory module confers sensitivity and robustness to auxin responses in diverse developmental contexts and organisms. Here, we show that miR390 is expressed in the transit‐amplifying compartment of the root meristem where it modulates response to exogenous auxin. We show that a single AuxRE located in miR390 promoter is necessary for miR390 expression in this compartment and identify that ARF5/MONOPTEROS (MP) binds miR390 promoter via the AuxRE. We show that interfering with ARF5/MP‐dependent auxin signaling attenuates miR390 expression in the transit‐amplifying compartment of the root meristem. Our results show that ARF5/MP regulates directly the expression of miR390 in the root meristem. We propose that ARF5, miR390, and the ta‐siRNAs‐regulated ARFs modulate the response of the transit‐amplifying region of the meristem to exogenous auxin. John Wiley and Sons Inc. 2019-02-05 /pmc/articles/PMC6508847/ /pubmed/31245759 http://dx.doi.org/10.1002/pld3.116 Text en © 2019 The Authors. Plant Direct published by American Society of Plant Biologists, Society for Experimental Biology and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Dastidar, Mouli Ghosh
Scarpa, Andrea
Mägele, Ira
Ruiz‐Duarte, Paola
von Born, Patrick
Bald, Lotte
Jouannet, Virginie
Maizel, Alexis
ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem
title ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem
title_full ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem
title_fullStr ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem
title_full_unstemmed ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem
title_short ARF5/MONOPTEROS directly regulates miR390 expression in the Arabidopsis thaliana primary root meristem
title_sort arf5/monopteros directly regulates mir390 expression in the arabidopsis thaliana primary root meristem
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6508847/
https://www.ncbi.nlm.nih.gov/pubmed/31245759
http://dx.doi.org/10.1002/pld3.116
work_keys_str_mv AT dastidarmoulighosh arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT scarpaandrea arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT mageleira arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT ruizduartepaola arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT vonbornpatrick arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT baldlotte arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT jouannetvirginie arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem
AT maizelalexis arf5monopterosdirectlyregulatesmir390expressioninthearabidopsisthalianaprimaryrootmeristem