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Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling

Strigolactones (SLs) are plant hormones that regulate the plant response to phosphate (Pi) growth conditions. At least part of SL-signalling execution in roots involves MAX2-dependent effects on PIN2 polar localization in the plasma membrane (PM) and actin bundling and dynamics. We examined PIN2 exp...

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Autores principales: Kumar, Manoj, Pandya-Kumar, Nirali, Dam, Anandamoy, Haor, Hila, Mayzlish-Gati, Einav, Belausov, Eduard, Wininger, Smadar, Abu-Abied, Mohamad, McErlean, Christopher S. P., Bromhead, Liam J., Prandi, Cristina, Kapulnik, Yoram, Koltai, Hinanit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4339606/
https://www.ncbi.nlm.nih.gov/pubmed/25609825
http://dx.doi.org/10.1093/jxb/eru513
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author Kumar, Manoj
Pandya-Kumar, Nirali
Dam, Anandamoy
Haor, Hila
Mayzlish-Gati, Einav
Belausov, Eduard
Wininger, Smadar
Abu-Abied, Mohamad
McErlean, Christopher S. P.
Bromhead, Liam J.
Prandi, Cristina
Kapulnik, Yoram
Koltai, Hinanit
author_facet Kumar, Manoj
Pandya-Kumar, Nirali
Dam, Anandamoy
Haor, Hila
Mayzlish-Gati, Einav
Belausov, Eduard
Wininger, Smadar
Abu-Abied, Mohamad
McErlean, Christopher S. P.
Bromhead, Liam J.
Prandi, Cristina
Kapulnik, Yoram
Koltai, Hinanit
author_sort Kumar, Manoj
collection PubMed
description Strigolactones (SLs) are plant hormones that regulate the plant response to phosphate (Pi) growth conditions. At least part of SL-signalling execution in roots involves MAX2-dependent effects on PIN2 polar localization in the plasma membrane (PM) and actin bundling and dynamics. We examined PIN2 expression, PIN2 PM localization, endosome trafficking, and actin bundling under low-Pi conditions: a MAX2-dependent reduction in PIN2 trafficking and polarization in the PM, reduced endosome trafficking, and increased actin-filament bundling were detected in root cells. The intracellular protein trafficking that is related to PIN proteins but unassociated with AUX1 PM localization was selectively inhibited. Exogenous supplementation of the synthetic SL GR24 to a SL-deficient mutant (max4) led to depletion of PIN2 from the PM under low-Pi conditions. Accordingly, roots of mutants in MAX2, MAX4, PIN2, TIR3, and ACTIN2 showed a reduced low-Pi response compared with the wild type, which could be restored by auxin (for all mutants) or GR24 (for all mutants except max2-1). Changes in PIN2 polarity, actin bundling, and vesicle trafficking may be involved in the response to low Pi in roots, dependent on SL/MAX2 signalling.
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spelling pubmed-43396062015-03-18 Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling Kumar, Manoj Pandya-Kumar, Nirali Dam, Anandamoy Haor, Hila Mayzlish-Gati, Einav Belausov, Eduard Wininger, Smadar Abu-Abied, Mohamad McErlean, Christopher S. P. Bromhead, Liam J. Prandi, Cristina Kapulnik, Yoram Koltai, Hinanit J Exp Bot Research Paper Strigolactones (SLs) are plant hormones that regulate the plant response to phosphate (Pi) growth conditions. At least part of SL-signalling execution in roots involves MAX2-dependent effects on PIN2 polar localization in the plasma membrane (PM) and actin bundling and dynamics. We examined PIN2 expression, PIN2 PM localization, endosome trafficking, and actin bundling under low-Pi conditions: a MAX2-dependent reduction in PIN2 trafficking and polarization in the PM, reduced endosome trafficking, and increased actin-filament bundling were detected in root cells. The intracellular protein trafficking that is related to PIN proteins but unassociated with AUX1 PM localization was selectively inhibited. Exogenous supplementation of the synthetic SL GR24 to a SL-deficient mutant (max4) led to depletion of PIN2 from the PM under low-Pi conditions. Accordingly, roots of mutants in MAX2, MAX4, PIN2, TIR3, and ACTIN2 showed a reduced low-Pi response compared with the wild type, which could be restored by auxin (for all mutants) or GR24 (for all mutants except max2-1). Changes in PIN2 polarity, actin bundling, and vesicle trafficking may be involved in the response to low Pi in roots, dependent on SL/MAX2 signalling. Oxford University Press 2015-03 2015-01-21 /pmc/articles/PMC4339606/ /pubmed/25609825 http://dx.doi.org/10.1093/jxb/eru513 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
Kumar, Manoj
Pandya-Kumar, Nirali
Dam, Anandamoy
Haor, Hila
Mayzlish-Gati, Einav
Belausov, Eduard
Wininger, Smadar
Abu-Abied, Mohamad
McErlean, Christopher S. P.
Bromhead, Liam J.
Prandi, Cristina
Kapulnik, Yoram
Koltai, Hinanit
Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
title Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
title_full Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
title_fullStr Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
title_full_unstemmed Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
title_short Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
title_sort arabidopsis response to low-phosphate conditions includes active changes in actin filaments and pin2 polarization and is dependent on strigolactone signalling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4339606/
https://www.ncbi.nlm.nih.gov/pubmed/25609825
http://dx.doi.org/10.1093/jxb/eru513
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