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The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop

Strigolactones (SLs) are well known for their role in repressing shoot branching. In pea, increased transcript levels of SL biosynthesis genes are observed in stems of highly branched SL deficient (ramosus1 (rms1) and rms5) and SL response (rms3 and rms4) mutants indicative of negative feedback cont...

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Autores principales: Ligerot, Yasmine, de Saint Germain, Alexandre, Waldie, Tanya, Troadec, Christelle, Citerne, Sylvie, Kadakia, Nikita, Pillot, Jean-Paul, Prigge, Michael, Aubert, Grégoire, Bendahmane, Abdelhafid, Leyser, Ottoline, Estelle, Mark, Debellé, Frédéric, Rameau, Catherine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5738142/
https://www.ncbi.nlm.nih.gov/pubmed/29220348
http://dx.doi.org/10.1371/journal.pgen.1007089
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author Ligerot, Yasmine
de Saint Germain, Alexandre
Waldie, Tanya
Troadec, Christelle
Citerne, Sylvie
Kadakia, Nikita
Pillot, Jean-Paul
Prigge, Michael
Aubert, Grégoire
Bendahmane, Abdelhafid
Leyser, Ottoline
Estelle, Mark
Debellé, Frédéric
Rameau, Catherine
author_facet Ligerot, Yasmine
de Saint Germain, Alexandre
Waldie, Tanya
Troadec, Christelle
Citerne, Sylvie
Kadakia, Nikita
Pillot, Jean-Paul
Prigge, Michael
Aubert, Grégoire
Bendahmane, Abdelhafid
Leyser, Ottoline
Estelle, Mark
Debellé, Frédéric
Rameau, Catherine
author_sort Ligerot, Yasmine
collection PubMed
description Strigolactones (SLs) are well known for their role in repressing shoot branching. In pea, increased transcript levels of SL biosynthesis genes are observed in stems of highly branched SL deficient (ramosus1 (rms1) and rms5) and SL response (rms3 and rms4) mutants indicative of negative feedback control. In contrast, the highly branched rms2 mutant has reduced transcript levels of SL biosynthesis genes. Grafting studies and hormone quantification led to a model where RMS2 mediates a shoot-to-root feedback signal that regulates both SL biosynthesis gene transcript levels and xylem sap levels of cytokinin exported from roots. Here we cloned RMS2 using synteny with Medicago truncatula and demonstrated that it encodes a putative auxin receptor of the AFB4/5 clade. Phenotypes similar to rms2 were found in Arabidopsis afb4/5 mutants, including increased shoot branching, low expression of SL biosynthesis genes and high auxin levels in stems. Moreover, afb4/5 and rms2 display a specific resistance to the herbicide picloram. Yeast-two-hybrid experiments supported the hypothesis that the RMS2 protein functions as an auxin receptor. SL root feeding using hydroponics repressed auxin levels in stems and down-regulated transcript levels of auxin biosynthesis genes within one hour. This auxin down-regulation was also observed in plants treated with the polar auxin transport inhibitor NPA. Together these data suggest a homeostatic feedback loop in which auxin up-regulates SL synthesis in an RMS2-dependent manner and SL down-regulates auxin synthesis in an RMS3 and RMS4-dependent manner.
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spelling pubmed-57381422017-12-29 The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop Ligerot, Yasmine de Saint Germain, Alexandre Waldie, Tanya Troadec, Christelle Citerne, Sylvie Kadakia, Nikita Pillot, Jean-Paul Prigge, Michael Aubert, Grégoire Bendahmane, Abdelhafid Leyser, Ottoline Estelle, Mark Debellé, Frédéric Rameau, Catherine PLoS Genet Research Article Strigolactones (SLs) are well known for their role in repressing shoot branching. In pea, increased transcript levels of SL biosynthesis genes are observed in stems of highly branched SL deficient (ramosus1 (rms1) and rms5) and SL response (rms3 and rms4) mutants indicative of negative feedback control. In contrast, the highly branched rms2 mutant has reduced transcript levels of SL biosynthesis genes. Grafting studies and hormone quantification led to a model where RMS2 mediates a shoot-to-root feedback signal that regulates both SL biosynthesis gene transcript levels and xylem sap levels of cytokinin exported from roots. Here we cloned RMS2 using synteny with Medicago truncatula and demonstrated that it encodes a putative auxin receptor of the AFB4/5 clade. Phenotypes similar to rms2 were found in Arabidopsis afb4/5 mutants, including increased shoot branching, low expression of SL biosynthesis genes and high auxin levels in stems. Moreover, afb4/5 and rms2 display a specific resistance to the herbicide picloram. Yeast-two-hybrid experiments supported the hypothesis that the RMS2 protein functions as an auxin receptor. SL root feeding using hydroponics repressed auxin levels in stems and down-regulated transcript levels of auxin biosynthesis genes within one hour. This auxin down-regulation was also observed in plants treated with the polar auxin transport inhibitor NPA. Together these data suggest a homeostatic feedback loop in which auxin up-regulates SL synthesis in an RMS2-dependent manner and SL down-regulates auxin synthesis in an RMS3 and RMS4-dependent manner. Public Library of Science 2017-12-08 /pmc/articles/PMC5738142/ /pubmed/29220348 http://dx.doi.org/10.1371/journal.pgen.1007089 Text en © 2017 Ligerot et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ligerot, Yasmine
de Saint Germain, Alexandre
Waldie, Tanya
Troadec, Christelle
Citerne, Sylvie
Kadakia, Nikita
Pillot, Jean-Paul
Prigge, Michael
Aubert, Grégoire
Bendahmane, Abdelhafid
Leyser, Ottoline
Estelle, Mark
Debellé, Frédéric
Rameau, Catherine
The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
title The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
title_full The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
title_fullStr The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
title_full_unstemmed The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
title_short The pea branching RMS2 gene encodes the PsAFB4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
title_sort pea branching rms2 gene encodes the psafb4/5 auxin receptor and is involved in an auxin-strigolactone regulation loop
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5738142/
https://www.ncbi.nlm.nih.gov/pubmed/29220348
http://dx.doi.org/10.1371/journal.pgen.1007089
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