Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms

Trabajo presentado en la XIII Reunión de Biología Molecular de Plantas, celebrada en Oviedo (España), del 22 al 24 de junio de 2016

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Main Authors: Sánchez-López, Ángela María, Bahaji, Abdellatif, Diego, Nuria de, Baslam, Marouane, Li, Jun, Muñoz Pérez, Francisco José, Almagro, Goizeder, García-Gómez, Pablo, Ameztoy, Kinia, Ricarte-Bermejo, Adriana, Nováck, Ondřej, Humplík, Jan F., Spíchal, Lukáš, Doležal, Karel, Ciordia, Sergio, Mena, M. Carmen, Baroja-Fernández, Edurne, Pozueta Romero, Javier
Format: póster de congreso biblioteca
Language:English
Published: 2016-06-22
Online Access:http://hdl.handle.net/10261/192308
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spelling dig-idab-es-10261-1923082021-04-14T08:56:10Z Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms Sánchez-López, Ángela María Bahaji, Abdellatif Diego, Nuria de Baslam, Marouane Li, Jun Muñoz Pérez, Francisco José Almagro, Goizeder García-Gómez, Pablo Ameztoy, Kinia Ricarte-Bermejo, Adriana Nováck, Ondřej Humplík, Jan F. Spíchal, Lukáš Doležal, Karel Ciordia, Sergio Mena, M. Carmen Baroja-Fernández, Edurne Pozueta Romero, Javier Trabajo presentado en la XIII Reunión de Biología Molecular de Plantas, celebrada en Oviedo (España), del 22 al 24 de junio de 2016 Volatile compounds (VOCs) emitted by phylogenetically diverse microorganisms (including plant pathogens and microbes that do not normally interact mutualistically with plants) promote photosynthesis, growth and accumulation of exceptionally high levels of starch in leaves through cytokinin (CK) regulated processes (Sánchez-López et al. 2016). In VOCs non-treated Arabidopsis plants, plastidic phosphoglucose isomerase (pPGI) plays an important role in photosynthesis and growth likely as a consequence of its involvement in the synthesis of plastidic CKs and/or its participation in the glycolytic and oxidative pentose phosphate pathways. Moreover, this enzyme plays an important role in connecting the Calvin Benson cycle with the starch biosynthetic pathway in leaves. To better elucidate mechanisms involved in the plants´ responses to microbial VOCs, and to investigate the extent to which pPGI is involved in this phenomenon, in this work we characterized pPGI null pgi1-2 Arabidopsis plants cultured in the presence or absence of VOCs emitted by Alternaria alternata. We found that volatile emissions from this fungal phytopathogen promoted growth, photosynthesis and accumulation of plastidic CKs in pgi1-2 plants. Contrary to expectations, mesophyll cells of exposed pgi1-2 leaves accumulated exceptionally high levels of starch. Isobaric labeling based differential proteomic analyses revealed that VOCs promote global changes in the expression of proteins involved in photosynthesis, starch metabolism and growth that can account for the observed responses in pgi1-2 plants. The overall data show that Arabidopsis plants are capable of responding to volatile phytostimulants emitted by microorganisms by triggering pPGI independent mechanisms. Peer reviewed 2019-10-08T11:26:48Z 2019-10-08T11:26:48Z 2016-06-22 póster de congreso http://purl.org/coar/resource_type/c_6670 XIII Reunión de Biología Molecular de Plantas (2016) http://hdl.handle.net/10261/192308 en Sí none
institution IDAB ES
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country España
countrycode ES
component Bibliográfico
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databasecode dig-idab-es
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libraryname Biblioteca del IDAB España
language English
description Trabajo presentado en la XIII Reunión de Biología Molecular de Plantas, celebrada en Oviedo (España), del 22 al 24 de junio de 2016
format póster de congreso
author Sánchez-López, Ángela María
Bahaji, Abdellatif
Diego, Nuria de
Baslam, Marouane
Li, Jun
Muñoz Pérez, Francisco José
Almagro, Goizeder
García-Gómez, Pablo
Ameztoy, Kinia
Ricarte-Bermejo, Adriana
Nováck, Ondřej
Humplík, Jan F.
Spíchal, Lukáš
Doležal, Karel
Ciordia, Sergio
Mena, M. Carmen
Baroja-Fernández, Edurne
Pozueta Romero, Javier
spellingShingle Sánchez-López, Ángela María
Bahaji, Abdellatif
Diego, Nuria de
Baslam, Marouane
Li, Jun
Muñoz Pérez, Francisco José
Almagro, Goizeder
García-Gómez, Pablo
Ameztoy, Kinia
Ricarte-Bermejo, Adriana
Nováck, Ondřej
Humplík, Jan F.
Spíchal, Lukáš
Doležal, Karel
Ciordia, Sergio
Mena, M. Carmen
Baroja-Fernández, Edurne
Pozueta Romero, Javier
Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
author_facet Sánchez-López, Ángela María
Bahaji, Abdellatif
Diego, Nuria de
Baslam, Marouane
Li, Jun
Muñoz Pérez, Francisco José
Almagro, Goizeder
García-Gómez, Pablo
Ameztoy, Kinia
Ricarte-Bermejo, Adriana
Nováck, Ondřej
Humplík, Jan F.
Spíchal, Lukáš
Doležal, Karel
Ciordia, Sergio
Mena, M. Carmen
Baroja-Fernández, Edurne
Pozueta Romero, Javier
author_sort Sánchez-López, Ángela María
title Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
title_short Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
title_full Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
title_fullStr Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
title_full_unstemmed Arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
title_sort arabidopsis is capable of responding to volatile phytostimulants emitted by phytopathogenic microorganisms by triggering plastidic phosphoglucose isomerase independent mechanisms
publishDate 2016-06-22
url http://hdl.handle.net/10261/192308
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