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PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth

Plant development is characterized by repeated initiation of meristems, regions of dividing cells that give rise to new organs. During lateral root (LR) formation, new LR meristems are specified to support the outgrowth of LRs along a new axis. The determination of the sequential events required to...

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Autores principales: Du, Yujuan, Scheres, Ben
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5676933/
https://www.ncbi.nlm.nih.gov/pubmed/29078398
http://dx.doi.org/10.1073/pnas.1714410114
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author Du, Yujuan
Scheres, Ben
author_facet Du, Yujuan
Scheres, Ben
author_sort Du, Yujuan
collection PubMed
description Plant development is characterized by repeated initiation of meristems, regions of dividing cells that give rise to new organs. During lateral root (LR) formation, new LR meristems are specified to support the outgrowth of LRs along a new axis. The determination of the sequential events required to form this new growth axis has been hampered by redundant activities of key transcription factors. Here, we characterize the effects of three PLETHORA (PLT) transcription factors, PLT3, PLT5, and PLT7, during LR outgrowth. In plt3plt5plt7 triple mutants, the morphology of lateral root primordia (LRP), the auxin response gradient, and the expression of meristem/tissue identity markers are impaired from the “symmetry-breaking” periclinal cell divisions during the transition between stage I and stage II, wherein cells first acquire different identities in the proximodistal and radial axes. Particularly, PLT1, PLT2, and PLT4 genes that are typically expressed later than PLT3, PLT5, and PLT7 during LR outgrowth are not induced in the mutant primordia, rendering “PLT-null” LRP. Reintroduction of any PLT clade member in the mutant primordia completely restores layer identities at stage II and rescues mutant defects in meristem and tissue establishment. Therefore, all PLT genes can activate the formative cell divisions that lead to de novo meristem establishment and tissue patterning associated with a new growth axis.
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spelling pubmed-56769332017-11-15 PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth Du, Yujuan Scheres, Ben Proc Natl Acad Sci U S A Biological Sciences Plant development is characterized by repeated initiation of meristems, regions of dividing cells that give rise to new organs. During lateral root (LR) formation, new LR meristems are specified to support the outgrowth of LRs along a new axis. The determination of the sequential events required to form this new growth axis has been hampered by redundant activities of key transcription factors. Here, we characterize the effects of three PLETHORA (PLT) transcription factors, PLT3, PLT5, and PLT7, during LR outgrowth. In plt3plt5plt7 triple mutants, the morphology of lateral root primordia (LRP), the auxin response gradient, and the expression of meristem/tissue identity markers are impaired from the “symmetry-breaking” periclinal cell divisions during the transition between stage I and stage II, wherein cells first acquire different identities in the proximodistal and radial axes. Particularly, PLT1, PLT2, and PLT4 genes that are typically expressed later than PLT3, PLT5, and PLT7 during LR outgrowth are not induced in the mutant primordia, rendering “PLT-null” LRP. Reintroduction of any PLT clade member in the mutant primordia completely restores layer identities at stage II and rescues mutant defects in meristem and tissue establishment. Therefore, all PLT genes can activate the formative cell divisions that lead to de novo meristem establishment and tissue patterning associated with a new growth axis. National Academy of Sciences 2017-10-31 2017-10-16 /pmc/articles/PMC5676933/ /pubmed/29078398 http://dx.doi.org/10.1073/pnas.1714410114 Text en Copyright © 2017 the Author(s). Published by PNAS. This is an open access article distributed under the PNAS license (http://www.pnas.org/site/aboutpnas/licenses.xhtml) .http://www.pnas.org/site/aboutpnas/licenses.xhtml
spellingShingle Biological Sciences
Du, Yujuan
Scheres, Ben
PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth
title PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth
title_full PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth
title_fullStr PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth
title_full_unstemmed PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth
title_short PLETHORA transcription factors orchestrate de novo organ patterning during Arabidopsis lateral root outgrowth
title_sort plethora transcription factors orchestrate de novo organ patterning during arabidopsis lateral root outgrowth
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5676933/
https://www.ncbi.nlm.nih.gov/pubmed/29078398
http://dx.doi.org/10.1073/pnas.1714410114
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AT scheresben plethoratranscriptionfactorsorchestratedenovoorganpatterningduringarabidopsislateralrootoutgrowth