Cargando…

Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation

Plants have evolved two major strategies to cope with phosphate (Pi) limitation. The systemic response, mainly comprising increased Pi uptake and metabolic adjustments for more efficient Pi use, and the local response, enabling plants to explore Pi-rich soil patches by reorganization of the root sys...

Descripción completa

Detalles Bibliográficos
Autores principales: Ziegler, Jörg, Schmidt, Stephan, Chutia, Ranju, Müller, Jens, Böttcher, Christoph, Strehmel, Nadine, Scheel, Dierk, Abel, Steffen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4762384/
https://www.ncbi.nlm.nih.gov/pubmed/26685189
http://dx.doi.org/10.1093/jxb/erv539
_version_ 1782417105416617984
author Ziegler, Jörg
Schmidt, Stephan
Chutia, Ranju
Müller, Jens
Böttcher, Christoph
Strehmel, Nadine
Scheel, Dierk
Abel, Steffen
author_facet Ziegler, Jörg
Schmidt, Stephan
Chutia, Ranju
Müller, Jens
Böttcher, Christoph
Strehmel, Nadine
Scheel, Dierk
Abel, Steffen
author_sort Ziegler, Jörg
collection PubMed
description Plants have evolved two major strategies to cope with phosphate (Pi) limitation. The systemic response, mainly comprising increased Pi uptake and metabolic adjustments for more efficient Pi use, and the local response, enabling plants to explore Pi-rich soil patches by reorganization of the root system architecture. Unlike previous reports, this study focused on root exudation controlled by the local response to Pi deficiency. To approach this, a hydroponic system separating the local and systemic responses was developed. Arabidopsis thaliana genotypes exhibiting distinct sensitivities to Pi deficiency could be clearly distinguished by their root exudate composition as determined by non-targeted reversed-phase ultraperformance liquid chromatography electrospray ionization quadrupole-time-of-flight mass spectrometry metabolite profiling. Compared with wild-type plants or insensitive low phosphate root 1 and 2 (lpr1 lpr2) double mutant plants, the hypersensitive phosphate deficiency response 2 (pdr2) mutant exhibited a reduced number of differential features in root exudates after Pi starvation, suggesting the involvement of PDR2-encoded P5-type ATPase in root exudation. Identification and analysis of coumarins revealed common and antagonistic regulatory pathways between Pi and Fe deficiency-induced coumarin secretion. The accumulation of oligolignols in root exudates after Pi deficiency was inversely correlated with Pi starvation-induced lignification at the root tips. The strongest oligolignol accumulation in root exudates was observed for the insensitive lpr1 lpr2 double mutant, which was accompanied by the absence of Pi deficiency-induced lignin deposition, suggesting a role of LPR ferroxidases in lignin polymerization during Pi starvation.
format Online
Article
Text
id pubmed-4762384
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-47623842016-02-24 Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation Ziegler, Jörg Schmidt, Stephan Chutia, Ranju Müller, Jens Böttcher, Christoph Strehmel, Nadine Scheel, Dierk Abel, Steffen J Exp Bot Research Paper Plants have evolved two major strategies to cope with phosphate (Pi) limitation. The systemic response, mainly comprising increased Pi uptake and metabolic adjustments for more efficient Pi use, and the local response, enabling plants to explore Pi-rich soil patches by reorganization of the root system architecture. Unlike previous reports, this study focused on root exudation controlled by the local response to Pi deficiency. To approach this, a hydroponic system separating the local and systemic responses was developed. Arabidopsis thaliana genotypes exhibiting distinct sensitivities to Pi deficiency could be clearly distinguished by their root exudate composition as determined by non-targeted reversed-phase ultraperformance liquid chromatography electrospray ionization quadrupole-time-of-flight mass spectrometry metabolite profiling. Compared with wild-type plants or insensitive low phosphate root 1 and 2 (lpr1 lpr2) double mutant plants, the hypersensitive phosphate deficiency response 2 (pdr2) mutant exhibited a reduced number of differential features in root exudates after Pi starvation, suggesting the involvement of PDR2-encoded P5-type ATPase in root exudation. Identification and analysis of coumarins revealed common and antagonistic regulatory pathways between Pi and Fe deficiency-induced coumarin secretion. The accumulation of oligolignols in root exudates after Pi deficiency was inversely correlated with Pi starvation-induced lignification at the root tips. The strongest oligolignol accumulation in root exudates was observed for the insensitive lpr1 lpr2 double mutant, which was accompanied by the absence of Pi deficiency-induced lignin deposition, suggesting a role of LPR ferroxidases in lignin polymerization during Pi starvation. Oxford University Press 2016-03 2015-12-17 /pmc/articles/PMC4762384/ /pubmed/26685189 http://dx.doi.org/10.1093/jxb/erv539 Text en © The Author 2015. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Ziegler, Jörg
Schmidt, Stephan
Chutia, Ranju
Müller, Jens
Böttcher, Christoph
Strehmel, Nadine
Scheel, Dierk
Abel, Steffen
Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
title Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
title_full Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
title_fullStr Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
title_full_unstemmed Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
title_short Non-targeted profiling of semi-polar metabolites in Arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
title_sort non-targeted profiling of semi-polar metabolites in arabidopsis root exudates uncovers a role for coumarin secretion and lignification during the local response to phosphate limitation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4762384/
https://www.ncbi.nlm.nih.gov/pubmed/26685189
http://dx.doi.org/10.1093/jxb/erv539
work_keys_str_mv AT zieglerjorg nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT schmidtstephan nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT chutiaranju nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT mullerjens nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT bottcherchristoph nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT strehmelnadine nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT scheeldierk nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation
AT abelsteffen nontargetedprofilingofsemipolarmetabolitesinarabidopsisrootexudatesuncoversaroleforcoumarinsecretionandlignificationduringthelocalresponsetophosphatelimitation