Cargando…

Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis

Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but little information is available on their molecular bases and biological significance. This work aimed at examining the effects of Zn deficiency on Pi accumulation in Arabidopsis thaliana and uncoveri...

Descripción completa

Detalles Bibliográficos
Autores principales: Khan, Ghazanfar Abbas, Bouraine, Samir, Wege, Stefanie, Li, Yuanyuan, de Carbonnel, Matthieu, Berthomieu, Pierre, Poirier, Yves, Rouached, Hatem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3924728/
https://www.ncbi.nlm.nih.gov/pubmed/24420568
http://dx.doi.org/10.1093/jxb/ert444
_version_ 1782303765988114432
author Khan, Ghazanfar Abbas
Bouraine, Samir
Wege, Stefanie
Li, Yuanyuan
de Carbonnel, Matthieu
Berthomieu, Pierre
Poirier, Yves
Rouached, Hatem
author_facet Khan, Ghazanfar Abbas
Bouraine, Samir
Wege, Stefanie
Li, Yuanyuan
de Carbonnel, Matthieu
Berthomieu, Pierre
Poirier, Yves
Rouached, Hatem
author_sort Khan, Ghazanfar Abbas
collection PubMed
description Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but little information is available on their molecular bases and biological significance. This work aimed at examining the effects of Zn deficiency on Pi accumulation in Arabidopsis thaliana and uncovering genes involved in the Zn–Pi synergy. Wild-type plants as well as mutants affected in Pi signalling and transport genes, namely the transcription factor PHR1, the E2-conjugase PHO2, and the Pi exporter PHO1, were examined. Zn deficiency caused an increase in shoot Pi content in the wild type as well as in the pho2 mutant, but not in the phr1 or pho1 mutants. This indicated that PHR1 and PHO1 participate in the coregulation of Zn and Pi homeostasis. Zn deprivation had a very limited effect on transcript levels of Pi-starvation-responsive genes such as AT4, IPS1, and microRNA399, or on of members of the high-affinity Pi transporter family PHT1. Interestingly, one of the PHO1 homologues, PHO1;H3, was upregulated in response to Zn deficiency. The expression pattern of PHO1 and PHO1;H3 were similar, both being expressed in cells of the root vascular cylinder and both localized to the Golgi when expressed transiently in tobacco cells. When grown in Zn-free medium, pho1;h3 mutant plants displayed higher Pi contents in the shoots than wild-type plants. This was, however, not observed in a pho1 pho1;h3 double mutant, suggesting that PHO1;H3 restricts root-to-shoot Pi transfer requiring PHO1 function for Pi homeostasis in response to Zn deficiency.
format Online
Article
Text
id pubmed-3924728
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-39247282014-02-14 Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis Khan, Ghazanfar Abbas Bouraine, Samir Wege, Stefanie Li, Yuanyuan de Carbonnel, Matthieu Berthomieu, Pierre Poirier, Yves Rouached, Hatem J Exp Bot Research Paper Interactions between zinc (Zn) and phosphate (Pi) nutrition in plants have long been recognized, but little information is available on their molecular bases and biological significance. This work aimed at examining the effects of Zn deficiency on Pi accumulation in Arabidopsis thaliana and uncovering genes involved in the Zn–Pi synergy. Wild-type plants as well as mutants affected in Pi signalling and transport genes, namely the transcription factor PHR1, the E2-conjugase PHO2, and the Pi exporter PHO1, were examined. Zn deficiency caused an increase in shoot Pi content in the wild type as well as in the pho2 mutant, but not in the phr1 or pho1 mutants. This indicated that PHR1 and PHO1 participate in the coregulation of Zn and Pi homeostasis. Zn deprivation had a very limited effect on transcript levels of Pi-starvation-responsive genes such as AT4, IPS1, and microRNA399, or on of members of the high-affinity Pi transporter family PHT1. Interestingly, one of the PHO1 homologues, PHO1;H3, was upregulated in response to Zn deficiency. The expression pattern of PHO1 and PHO1;H3 were similar, both being expressed in cells of the root vascular cylinder and both localized to the Golgi when expressed transiently in tobacco cells. When grown in Zn-free medium, pho1;h3 mutant plants displayed higher Pi contents in the shoots than wild-type plants. This was, however, not observed in a pho1 pho1;h3 double mutant, suggesting that PHO1;H3 restricts root-to-shoot Pi transfer requiring PHO1 function for Pi homeostasis in response to Zn deficiency. Oxford University Press 2014-03 2014-01-13 /pmc/articles/PMC3924728/ /pubmed/24420568 http://dx.doi.org/10.1093/jxb/ert444 Text en © The Author 2014. 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
Khan, Ghazanfar Abbas
Bouraine, Samir
Wege, Stefanie
Li, Yuanyuan
de Carbonnel, Matthieu
Berthomieu, Pierre
Poirier, Yves
Rouached, Hatem
Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
title Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
title_full Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
title_fullStr Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
title_full_unstemmed Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
title_short Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis
title_sort coordination between zinc and phosphate homeostasis involves the transcription factor phr1, the phosphate exporter pho1, and its homologue pho1;h3 in arabidopsis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3924728/
https://www.ncbi.nlm.nih.gov/pubmed/24420568
http://dx.doi.org/10.1093/jxb/ert444
work_keys_str_mv AT khanghazanfarabbas coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT bourainesamir coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT wegestefanie coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT liyuanyuan coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT decarbonnelmatthieu coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT berthomieupierre coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT poirieryves coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis
AT rouachedhatem coordinationbetweenzincandphosphatehomeostasisinvolvesthetranscriptionfactorphr1thephosphateexporterpho1anditshomologuepho1h3inarabidopsis