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The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands

Transfer cells have specializations that facilitate the transport of solutes across plant exchange surfaces. ZmMRP-1 is a maize (Zea mays) endosperm transfer cell-specific transcriptional activator that plays a central role in the regulatory pathways controlling transfer cell differentiation and fun...

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Autores principales: Barrero, Cristina, Royo, Joaquín, Grijota-Martinez, Carmen, Faye, Christian, Paul, Wyatt, Sanz, Soledad, Steinbiss, H.-H., Hueros, Gregorio
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2757625/
https://www.ncbi.nlm.nih.gov/pubmed/18830706
http://dx.doi.org/10.1007/s00425-008-0823-0
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author Barrero, Cristina
Royo, Joaquín
Grijota-Martinez, Carmen
Faye, Christian
Paul, Wyatt
Sanz, Soledad
Steinbiss, H.-H.
Hueros, Gregorio
author_facet Barrero, Cristina
Royo, Joaquín
Grijota-Martinez, Carmen
Faye, Christian
Paul, Wyatt
Sanz, Soledad
Steinbiss, H.-H.
Hueros, Gregorio
author_sort Barrero, Cristina
collection PubMed
description Transfer cells have specializations that facilitate the transport of solutes across plant exchange surfaces. ZmMRP-1 is a maize (Zea mays) endosperm transfer cell-specific transcriptional activator that plays a central role in the regulatory pathways controlling transfer cell differentiation and function. The present work investigates the signals controlling the expression of ZmMRP-1 through the production of transgenic lines of maize, Arabidopsis, tobacco and barley containing ZmMRP-1promoter:GUS reporter constructs. The GUS signal predominantly appeared in regions of active transport between source and sink tissues, including nematode-induced feeding structures and at sites of vascular connection between developing organs and the main plant vasculature. In those cases, promoter induction was associated with the initial developmental stages of transport structures. Significantly, transfer cells also differentiated in these regions suggesting that, independent of species, location or morphological features, transfer cells might differentiate in a similar way under the influence of conserved induction signals. In planta and yeast experiments showed that the promoter activity is modulated by carbohydrates, glucose being the most effective inducer.
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spelling pubmed-27576252009-10-07 The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands Barrero, Cristina Royo, Joaquín Grijota-Martinez, Carmen Faye, Christian Paul, Wyatt Sanz, Soledad Steinbiss, H.-H. Hueros, Gregorio Planta Original Article Transfer cells have specializations that facilitate the transport of solutes across plant exchange surfaces. ZmMRP-1 is a maize (Zea mays) endosperm transfer cell-specific transcriptional activator that plays a central role in the regulatory pathways controlling transfer cell differentiation and function. The present work investigates the signals controlling the expression of ZmMRP-1 through the production of transgenic lines of maize, Arabidopsis, tobacco and barley containing ZmMRP-1promoter:GUS reporter constructs. The GUS signal predominantly appeared in regions of active transport between source and sink tissues, including nematode-induced feeding structures and at sites of vascular connection between developing organs and the main plant vasculature. In those cases, promoter induction was associated with the initial developmental stages of transport structures. Significantly, transfer cells also differentiated in these regions suggesting that, independent of species, location or morphological features, transfer cells might differentiate in a similar way under the influence of conserved induction signals. In planta and yeast experiments showed that the promoter activity is modulated by carbohydrates, glucose being the most effective inducer. Springer-Verlag 2008-10-02 2009-01 /pmc/articles/PMC2757625/ /pubmed/18830706 http://dx.doi.org/10.1007/s00425-008-0823-0 Text en © Springer-Verlag 2008
spellingShingle Original Article
Barrero, Cristina
Royo, Joaquín
Grijota-Martinez, Carmen
Faye, Christian
Paul, Wyatt
Sanz, Soledad
Steinbiss, H.-H.
Hueros, Gregorio
The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
title The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
title_full The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
title_fullStr The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
title_full_unstemmed The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
title_short The promoter of ZmMRP-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
title_sort promoter of zmmrp-1, a maize transfer cell-specific transcriptional activator, is induced at solute exchange surfaces and responds to transport demands
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2757625/
https://www.ncbi.nlm.nih.gov/pubmed/18830706
http://dx.doi.org/10.1007/s00425-008-0823-0
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