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A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana

Plants display numerous strategies to cope with phosphate (Pi)‐deficiency. Despite multiple genetic studies, the molecular mechanisms of low‐Pi‐signalling remain unknown. To validate the interest of chemical genetics to investigate this pathway we discovered and analysed the effects of PHOSTIN (PSN)...

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Autores principales: Bonnot, Clémence, Pinson, Benoît, Clément, Mathilde, Bernillon, Stéphane, Chiarenza, Serge, Kanno, Satomi, Kobayashi, Natsuko, Delannoy, Etienne, Nakanishi, Tomoko M., Nussaume, Laurent, Desnos, Thierry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737292/
https://www.ncbi.nlm.nih.gov/pubmed/26243630
http://dx.doi.org/10.1111/nph.13591
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author Bonnot, Clémence
Pinson, Benoît
Clément, Mathilde
Bernillon, Stéphane
Chiarenza, Serge
Kanno, Satomi
Kobayashi, Natsuko
Delannoy, Etienne
Nakanishi, Tomoko M.
Nussaume, Laurent
Desnos, Thierry
author_facet Bonnot, Clémence
Pinson, Benoît
Clément, Mathilde
Bernillon, Stéphane
Chiarenza, Serge
Kanno, Satomi
Kobayashi, Natsuko
Delannoy, Etienne
Nakanishi, Tomoko M.
Nussaume, Laurent
Desnos, Thierry
author_sort Bonnot, Clémence
collection PubMed
description Plants display numerous strategies to cope with phosphate (Pi)‐deficiency. Despite multiple genetic studies, the molecular mechanisms of low‐Pi‐signalling remain unknown. To validate the interest of chemical genetics to investigate this pathway we discovered and analysed the effects of PHOSTIN (PSN), a drug mimicking Pi‐starvation in Arabidopsis. We assessed the effects of PSN and structural analogues on the induction of Pi‐deficiency responses in mutants and wild‐type and followed their accumulation in plants organs by high pressure liquid chromotography (HPLC) or mass‐spectrophotometry. We show that PSN is cleaved in the growth medium, releasing its active motif (PSN11), which accumulates in plants roots. Despite the overaccumulation of Pi in the roots of treated plants, PSN11 elicits both local and systemic Pi‐starvation effects. Nevertheless, albeit that the transcriptional activation of low‐Pi genes by PSN11 is lost in the phr1;phl1 double mutant, neither PHO1 nor PHO2 are required for PSN11 effects. The range of local and systemic responses to Pi‐starvation elicited, and their dependence on the PHR1/PHL1 function suggests that PSN11 affects an important and early step of Pi‐starvation signalling. Its independence from PHO1 and PHO2 suggest the existence of unknown pathway(s), showing the usefulness of PSN and chemical genetics to bring new elements to this field.
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spelling pubmed-47372922016-02-12 A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana Bonnot, Clémence Pinson, Benoît Clément, Mathilde Bernillon, Stéphane Chiarenza, Serge Kanno, Satomi Kobayashi, Natsuko Delannoy, Etienne Nakanishi, Tomoko M. Nussaume, Laurent Desnos, Thierry New Phytol Research Plants display numerous strategies to cope with phosphate (Pi)‐deficiency. Despite multiple genetic studies, the molecular mechanisms of low‐Pi‐signalling remain unknown. To validate the interest of chemical genetics to investigate this pathway we discovered and analysed the effects of PHOSTIN (PSN), a drug mimicking Pi‐starvation in Arabidopsis. We assessed the effects of PSN and structural analogues on the induction of Pi‐deficiency responses in mutants and wild‐type and followed their accumulation in plants organs by high pressure liquid chromotography (HPLC) or mass‐spectrophotometry. We show that PSN is cleaved in the growth medium, releasing its active motif (PSN11), which accumulates in plants roots. Despite the overaccumulation of Pi in the roots of treated plants, PSN11 elicits both local and systemic Pi‐starvation effects. Nevertheless, albeit that the transcriptional activation of low‐Pi genes by PSN11 is lost in the phr1;phl1 double mutant, neither PHO1 nor PHO2 are required for PSN11 effects. The range of local and systemic responses to Pi‐starvation elicited, and their dependence on the PHR1/PHL1 function suggests that PSN11 affects an important and early step of Pi‐starvation signalling. Its independence from PHO1 and PHO2 suggest the existence of unknown pathway(s), showing the usefulness of PSN and chemical genetics to bring new elements to this field. John Wiley and Sons Inc. 2015-08-04 2016-01 /pmc/articles/PMC4737292/ /pubmed/26243630 http://dx.doi.org/10.1111/nph.13591 Text en © 2015 The Authors. New Phytologist © 2015 New Phytologist Trust This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Bonnot, Clémence
Pinson, Benoît
Clément, Mathilde
Bernillon, Stéphane
Chiarenza, Serge
Kanno, Satomi
Kobayashi, Natsuko
Delannoy, Etienne
Nakanishi, Tomoko M.
Nussaume, Laurent
Desnos, Thierry
A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana
title A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana
title_full A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana
title_fullStr A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana
title_full_unstemmed A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana
title_short A chemical genetic strategy identify the PHOSTIN, a synthetic molecule that triggers phosphate starvation responses in Arabidopsis thaliana
title_sort chemical genetic strategy identify the phostin, a synthetic molecule that triggers phosphate starvation responses in arabidopsis thaliana
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737292/
https://www.ncbi.nlm.nih.gov/pubmed/26243630
http://dx.doi.org/10.1111/nph.13591
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