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The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers

The glucosinolate-myrosinase system is a well-known plant chemical defence system. Two functional myrosinase-encoding genes, THIOGLUCOSIDASE 1 (TGG1) and THIOGLUCOSIDASE 2 (TGG2), express in aerial tissues of Arabidopsis. TGG1 expresses in guard cells (GCs) and is also a highly abundant protein in G...

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Autores principales: Ahuja, Ishita, Kissen, Ralph, Hoang, Linh, Sporsheim, Bjørnar, Halle, Kari K., Wolff, Silje Aase, Ahmad, Samina Jam Nazeer, Ahmad, Jam Nazeer, Bones, Atle M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7911204/
https://www.ncbi.nlm.nih.gov/pubmed/33503919
http://dx.doi.org/10.3390/cells10020227
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author Ahuja, Ishita
Kissen, Ralph
Hoang, Linh
Sporsheim, Bjørnar
Halle, Kari K.
Wolff, Silje Aase
Ahmad, Samina Jam Nazeer
Ahmad, Jam Nazeer
Bones, Atle M.
author_facet Ahuja, Ishita
Kissen, Ralph
Hoang, Linh
Sporsheim, Bjørnar
Halle, Kari K.
Wolff, Silje Aase
Ahmad, Samina Jam Nazeer
Ahmad, Jam Nazeer
Bones, Atle M.
author_sort Ahuja, Ishita
collection PubMed
description The glucosinolate-myrosinase system is a well-known plant chemical defence system. Two functional myrosinase-encoding genes, THIOGLUCOSIDASE 1 (TGG1) and THIOGLUCOSIDASE 2 (TGG2), express in aerial tissues of Arabidopsis. TGG1 expresses in guard cells (GCs) and is also a highly abundant protein in GCs. Recently, by studying wild type (WT), tgg single, and double mutants, we showed a novel association between the glucosinolate-myrosinase system defence system, and a physical barrier, the cuticle. In the current study, using imaging techniques, we further analysed stomata and ultrastructure of GCs of WT, tgg1, tgg2 single, and tgg1 tgg2 double mutants. The tgg mutants showed distinctive features of GCs. The GCs of tgg1 and tgg1 tgg2 mutants showed vacuoles that had less electron-dense granular material. Both tgg single mutants had bigger stomata complexes. The WT and tgg mutants also showed variations for cell wall, chloroplasts, and starch grains of GCs. Abscisic acid (ABA)-treated stomata showed that the stomatal aperture was reduced in tgg1 single and tgg1 tgg2 double mutants. The data provides a basis to perform comprehensive further studies to find physiological and molecular mechanisms associated with ultrastructure differences in tgg mutants. We speculate that the absence of myrosinase alters the endogenous chemical composition, hence affecting the physical structure of plants and the plants’ physical defence barriers.
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spelling pubmed-79112042021-02-28 The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers Ahuja, Ishita Kissen, Ralph Hoang, Linh Sporsheim, Bjørnar Halle, Kari K. Wolff, Silje Aase Ahmad, Samina Jam Nazeer Ahmad, Jam Nazeer Bones, Atle M. Cells Article The glucosinolate-myrosinase system is a well-known plant chemical defence system. Two functional myrosinase-encoding genes, THIOGLUCOSIDASE 1 (TGG1) and THIOGLUCOSIDASE 2 (TGG2), express in aerial tissues of Arabidopsis. TGG1 expresses in guard cells (GCs) and is also a highly abundant protein in GCs. Recently, by studying wild type (WT), tgg single, and double mutants, we showed a novel association between the glucosinolate-myrosinase system defence system, and a physical barrier, the cuticle. In the current study, using imaging techniques, we further analysed stomata and ultrastructure of GCs of WT, tgg1, tgg2 single, and tgg1 tgg2 double mutants. The tgg mutants showed distinctive features of GCs. The GCs of tgg1 and tgg1 tgg2 mutants showed vacuoles that had less electron-dense granular material. Both tgg single mutants had bigger stomata complexes. The WT and tgg mutants also showed variations for cell wall, chloroplasts, and starch grains of GCs. Abscisic acid (ABA)-treated stomata showed that the stomatal aperture was reduced in tgg1 single and tgg1 tgg2 double mutants. The data provides a basis to perform comprehensive further studies to find physiological and molecular mechanisms associated with ultrastructure differences in tgg mutants. We speculate that the absence of myrosinase alters the endogenous chemical composition, hence affecting the physical structure of plants and the plants’ physical defence barriers. MDPI 2021-01-25 /pmc/articles/PMC7911204/ /pubmed/33503919 http://dx.doi.org/10.3390/cells10020227 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ahuja, Ishita
Kissen, Ralph
Hoang, Linh
Sporsheim, Bjørnar
Halle, Kari K.
Wolff, Silje Aase
Ahmad, Samina Jam Nazeer
Ahmad, Jam Nazeer
Bones, Atle M.
The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers
title The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers
title_full The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers
title_fullStr The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers
title_full_unstemmed The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers
title_short The Imaging of Guard Cells of thioglucosidase (tgg) Mutants of Arabidopsis Further Links Plant Chemical Defence Systems with Physical Defence Barriers
title_sort imaging of guard cells of thioglucosidase (tgg) mutants of arabidopsis further links plant chemical defence systems with physical defence barriers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7911204/
https://www.ncbi.nlm.nih.gov/pubmed/33503919
http://dx.doi.org/10.3390/cells10020227
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