Cargando…

The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions

In vascular plants the cell-to-cell interactions coordinating morphogenetic and physiological processes are mediated, among others, by the action of hormones, among which also short mobile peptides were recognized to have roles as signals. Such peptide hormones (PHs) are involved in defense response...

Descripción completa

Detalles Bibliográficos
Autores principales: Busatto, Nicola, Salvagnin, Umberto, Resentini, Francesca, Quaresimin, Silvia, Navazio, Lorella, Marin, Oriano, Pellegrini, Maria, Costa, Fabrizio, Mierke, Dale F., Trainotti, Livio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5641559/
https://www.ncbi.nlm.nih.gov/pubmed/29075273
http://dx.doi.org/10.3389/fpls.2017.01711
_version_ 1783271247437627392
author Busatto, Nicola
Salvagnin, Umberto
Resentini, Francesca
Quaresimin, Silvia
Navazio, Lorella
Marin, Oriano
Pellegrini, Maria
Costa, Fabrizio
Mierke, Dale F.
Trainotti, Livio
author_facet Busatto, Nicola
Salvagnin, Umberto
Resentini, Francesca
Quaresimin, Silvia
Navazio, Lorella
Marin, Oriano
Pellegrini, Maria
Costa, Fabrizio
Mierke, Dale F.
Trainotti, Livio
author_sort Busatto, Nicola
collection PubMed
description In vascular plants the cell-to-cell interactions coordinating morphogenetic and physiological processes are mediated, among others, by the action of hormones, among which also short mobile peptides were recognized to have roles as signals. Such peptide hormones (PHs) are involved in defense responses, shoot and root growth, meristem homeostasis, organ abscission, nutrient signaling, hormone crosstalk and other developmental processes and act as both short and long distant ligands. In this work, the function of CTG134, a peach gene encoding a ROOT GROWTH FACTOR/GOLVEN-like PH expressed in mesocarp at the onset of ripening, was investigated for its role in mediating an auxin-ethylene crosstalk. In peach fruit, where an auxin-ethylene crosstalk mechanism is necessary to support climacteric ethylene synthesis, CTG134 expression peaked before that of ACS1 and was induced by auxin and 1-methylcyclopropene (1-MCP) treatments, whereas it was minimally affected by ethylene. In addition, the promoter of CTG134 fused with the GUS reporter highlighted activity in plant parts in which the auxin-ethylene interplay is known to occur. Arabidopsis and tobacco plants overexpressing CTG134 showed abnormal root hair growth, similar to wild-type plants treated with a synthetic form of the sulfated peptide. Moreover, in tobacco, lateral root emergence and capsule size were also affected. In Arabidopsis overexpressing lines, molecular surveys demonstrated an impaired hormonal crosstalk, resulting in a re-modulated expression of a set of genes involved in both ethylene and auxin synthesis, transport and perception. These data support the role of pCTG134 as a mediator in an auxin-ethylene regulatory circuit and open the possibility to exploit this class of ligands for the rational design of new and environmental friendly agrochemicals able to cope with a rapidly changing environment.
format Online
Article
Text
id pubmed-5641559
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-56415592017-10-26 The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions Busatto, Nicola Salvagnin, Umberto Resentini, Francesca Quaresimin, Silvia Navazio, Lorella Marin, Oriano Pellegrini, Maria Costa, Fabrizio Mierke, Dale F. Trainotti, Livio Front Plant Sci Plant Science In vascular plants the cell-to-cell interactions coordinating morphogenetic and physiological processes are mediated, among others, by the action of hormones, among which also short mobile peptides were recognized to have roles as signals. Such peptide hormones (PHs) are involved in defense responses, shoot and root growth, meristem homeostasis, organ abscission, nutrient signaling, hormone crosstalk and other developmental processes and act as both short and long distant ligands. In this work, the function of CTG134, a peach gene encoding a ROOT GROWTH FACTOR/GOLVEN-like PH expressed in mesocarp at the onset of ripening, was investigated for its role in mediating an auxin-ethylene crosstalk. In peach fruit, where an auxin-ethylene crosstalk mechanism is necessary to support climacteric ethylene synthesis, CTG134 expression peaked before that of ACS1 and was induced by auxin and 1-methylcyclopropene (1-MCP) treatments, whereas it was minimally affected by ethylene. In addition, the promoter of CTG134 fused with the GUS reporter highlighted activity in plant parts in which the auxin-ethylene interplay is known to occur. Arabidopsis and tobacco plants overexpressing CTG134 showed abnormal root hair growth, similar to wild-type plants treated with a synthetic form of the sulfated peptide. Moreover, in tobacco, lateral root emergence and capsule size were also affected. In Arabidopsis overexpressing lines, molecular surveys demonstrated an impaired hormonal crosstalk, resulting in a re-modulated expression of a set of genes involved in both ethylene and auxin synthesis, transport and perception. These data support the role of pCTG134 as a mediator in an auxin-ethylene regulatory circuit and open the possibility to exploit this class of ligands for the rational design of new and environmental friendly agrochemicals able to cope with a rapidly changing environment. Frontiers Media S.A. 2017-10-11 /pmc/articles/PMC5641559/ /pubmed/29075273 http://dx.doi.org/10.3389/fpls.2017.01711 Text en Copyright © 2017 Busatto, Salvagnin, Resentini, Quaresimin, Navazio, Marin, Pellegrini, Costa, Mierke and Trainotti. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Busatto, Nicola
Salvagnin, Umberto
Resentini, Francesca
Quaresimin, Silvia
Navazio, Lorella
Marin, Oriano
Pellegrini, Maria
Costa, Fabrizio
Mierke, Dale F.
Trainotti, Livio
The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions
title The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions
title_full The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions
title_fullStr The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions
title_full_unstemmed The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions
title_short The Peach RGF/GLV Signaling Peptide pCTG134 Is Involved in a Regulatory Circuit That Sustains Auxin and Ethylene Actions
title_sort peach rgf/glv signaling peptide pctg134 is involved in a regulatory circuit that sustains auxin and ethylene actions
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5641559/
https://www.ncbi.nlm.nih.gov/pubmed/29075273
http://dx.doi.org/10.3389/fpls.2017.01711
work_keys_str_mv AT busattonicola thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT salvagninumberto thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT resentinifrancesca thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT quaresiminsilvia thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT navaziolorella thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT marinoriano thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT pellegrinimaria thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT costafabrizio thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT mierkedalef thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT trainottilivio thepeachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT busattonicola peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT salvagninumberto peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT resentinifrancesca peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT quaresiminsilvia peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT navaziolorella peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT marinoriano peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT pellegrinimaria peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT costafabrizio peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT mierkedalef peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions
AT trainottilivio peachrgfglvsignalingpeptidepctg134isinvolvedinaregulatorycircuitthatsustainsauxinandethyleneactions