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Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis

Assimilate partitioning to the root system is a desirable developmental trait to control but little is known of the signaling pathway underlying partitioning. A null mutation in the gene encoding the Gβ subunit of the heterotrimeric G protein complex, a nexus for a variety of signaling pathways, con...

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Autores principales: Mudgil, Yashwanti, Karve, Abhijit, Teixeira, Paulo J. P. L., Jiang, Kun, Tunc-Ozdemir, Meral, Jones, Alan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4997095/
https://www.ncbi.nlm.nih.gov/pubmed/27610112
http://dx.doi.org/10.3389/fpls.2016.01255
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author Mudgil, Yashwanti
Karve, Abhijit
Teixeira, Paulo J. P. L.
Jiang, Kun
Tunc-Ozdemir, Meral
Jones, Alan M.
author_facet Mudgil, Yashwanti
Karve, Abhijit
Teixeira, Paulo J. P. L.
Jiang, Kun
Tunc-Ozdemir, Meral
Jones, Alan M.
author_sort Mudgil, Yashwanti
collection PubMed
description Assimilate partitioning to the root system is a desirable developmental trait to control but little is known of the signaling pathway underlying partitioning. A null mutation in the gene encoding the Gβ subunit of the heterotrimeric G protein complex, a nexus for a variety of signaling pathways, confers altered sugar partitioning in roots. While fixed carbon rapidly reached the roots of wild type and agb1-2 mutant seedlings, agb1 roots had more of this fixed carbon in the form of glucose, fructose, and sucrose which manifested as a higher lateral root density. Upon glucose treatment, the agb1-2 mutant had abnormal gene expression in the root tip validated by transcriptome analysis. In addition, PIN2 membrane localization was altered in the agb1-2 mutant. The heterotrimeric G protein complex integrates photosynthesis-derived sugar signaling incorporating both membrane-and transcriptional-based mechanisms. The time constants for these signaling mechanisms are in the same range as photosynthate delivery to the root, raising the possibility that root cells are able to use changes in carbon fixation in real time to adjust growth behavior.
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spelling pubmed-49970952016-09-08 Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis Mudgil, Yashwanti Karve, Abhijit Teixeira, Paulo J. P. L. Jiang, Kun Tunc-Ozdemir, Meral Jones, Alan M. Front Plant Sci Plant Science Assimilate partitioning to the root system is a desirable developmental trait to control but little is known of the signaling pathway underlying partitioning. A null mutation in the gene encoding the Gβ subunit of the heterotrimeric G protein complex, a nexus for a variety of signaling pathways, confers altered sugar partitioning in roots. While fixed carbon rapidly reached the roots of wild type and agb1-2 mutant seedlings, agb1 roots had more of this fixed carbon in the form of glucose, fructose, and sucrose which manifested as a higher lateral root density. Upon glucose treatment, the agb1-2 mutant had abnormal gene expression in the root tip validated by transcriptome analysis. In addition, PIN2 membrane localization was altered in the agb1-2 mutant. The heterotrimeric G protein complex integrates photosynthesis-derived sugar signaling incorporating both membrane-and transcriptional-based mechanisms. The time constants for these signaling mechanisms are in the same range as photosynthate delivery to the root, raising the possibility that root cells are able to use changes in carbon fixation in real time to adjust growth behavior. Frontiers Media S.A. 2016-08-25 /pmc/articles/PMC4997095/ /pubmed/27610112 http://dx.doi.org/10.3389/fpls.2016.01255 Text en Copyright © 2016 Mudgil, Karve, Teixeira, Jiang, Tunc-Ozdemir and Jones. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Mudgil, Yashwanti
Karve, Abhijit
Teixeira, Paulo J. P. L.
Jiang, Kun
Tunc-Ozdemir, Meral
Jones, Alan M.
Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis
title Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis
title_full Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis
title_fullStr Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis
title_full_unstemmed Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis
title_short Photosynthate Regulation of the Root System Architecture Mediated by the Heterotrimeric G Protein Complex in Arabidopsis
title_sort photosynthate regulation of the root system architecture mediated by the heterotrimeric g protein complex in arabidopsis
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4997095/
https://www.ncbi.nlm.nih.gov/pubmed/27610112
http://dx.doi.org/10.3389/fpls.2016.01255
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