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Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants

Carotenoids are important isoprenoids produced in the plastids of photosynthetic organisms that play key roles in photoprotection and antioxidative processes. β-Carotene is generated from lycopene by lycopene β-cyclase (LCYB). Previously, we demonstrated that the introduction of the Daucus carota (c...

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Autores principales: Kössler, Stella, Armarego-Marriott, Tegan, Tarkowská, Danuše, Turečková, Veronika, Agrawal, Shreya, Mi, Jianing, de Souza, Leonardo Perez, Schöttler, Mark Aurel, Schadach, Anne, Fröhlich, Anja, Bock, Ralph, Al-Babili, Salim, Ruf, Stephanie, Sampathkumar, Arun, Moreno, Juan C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8006556/
https://www.ncbi.nlm.nih.gov/pubmed/33484250
http://dx.doi.org/10.1093/jxb/erab029
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author Kössler, Stella
Armarego-Marriott, Tegan
Tarkowská, Danuše
Turečková, Veronika
Agrawal, Shreya
Mi, Jianing
de Souza, Leonardo Perez
Schöttler, Mark Aurel
Schadach, Anne
Fröhlich, Anja
Bock, Ralph
Al-Babili, Salim
Ruf, Stephanie
Sampathkumar, Arun
Moreno, Juan C
author_facet Kössler, Stella
Armarego-Marriott, Tegan
Tarkowská, Danuše
Turečková, Veronika
Agrawal, Shreya
Mi, Jianing
de Souza, Leonardo Perez
Schöttler, Mark Aurel
Schadach, Anne
Fröhlich, Anja
Bock, Ralph
Al-Babili, Salim
Ruf, Stephanie
Sampathkumar, Arun
Moreno, Juan C
author_sort Kössler, Stella
collection PubMed
description Carotenoids are important isoprenoids produced in the plastids of photosynthetic organisms that play key roles in photoprotection and antioxidative processes. β-Carotene is generated from lycopene by lycopene β-cyclase (LCYB). Previously, we demonstrated that the introduction of the Daucus carota (carrot) DcLCYB1 gene into tobacco (cv. Xanthi) resulted in increased levels of abscisic acid (ABA) and especially gibberellins (GAs), resulting in increased plant yield. In order to understand this phenomenon prior to exporting this genetic strategy to crops, we generated tobacco (Nicotiana tabacum cv. Petit Havana) mutants that exhibited a wide range of LCYB expression. Transplastomic plants expressing DcLCYB1 at high levels showed a wild-type-like growth, even though their pigment content was increased and their leaf GA(1) content was reduced. RNA interference (RNAi) NtLCYB lines showed different reductions in NtLCYB transcript abundance, correlating with reduced pigment content and plant variegation. Photosynthesis (leaf absorptance, F(v)/F(m), and light-saturated capacity of linear electron transport) and plant growth were impaired. Remarkably, drastic changes in phytohormone content also occurred in the RNAi lines. However, external application of phytohormones was not sufficient to rescue these phenotypes, suggesting that altered photosynthetic efficiency might be another important factor explaining their reduced biomass. These results show that LCYB expression influences plant biomass by different mechanisms and suggests thresholds for LCYB expression levels that might be beneficial or detrimental for plant growth.
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spelling pubmed-80065562021-04-02 Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants Kössler, Stella Armarego-Marriott, Tegan Tarkowská, Danuše Turečková, Veronika Agrawal, Shreya Mi, Jianing de Souza, Leonardo Perez Schöttler, Mark Aurel Schadach, Anne Fröhlich, Anja Bock, Ralph Al-Babili, Salim Ruf, Stephanie Sampathkumar, Arun Moreno, Juan C J Exp Bot Research Papers Carotenoids are important isoprenoids produced in the plastids of photosynthetic organisms that play key roles in photoprotection and antioxidative processes. β-Carotene is generated from lycopene by lycopene β-cyclase (LCYB). Previously, we demonstrated that the introduction of the Daucus carota (carrot) DcLCYB1 gene into tobacco (cv. Xanthi) resulted in increased levels of abscisic acid (ABA) and especially gibberellins (GAs), resulting in increased plant yield. In order to understand this phenomenon prior to exporting this genetic strategy to crops, we generated tobacco (Nicotiana tabacum cv. Petit Havana) mutants that exhibited a wide range of LCYB expression. Transplastomic plants expressing DcLCYB1 at high levels showed a wild-type-like growth, even though their pigment content was increased and their leaf GA(1) content was reduced. RNA interference (RNAi) NtLCYB lines showed different reductions in NtLCYB transcript abundance, correlating with reduced pigment content and plant variegation. Photosynthesis (leaf absorptance, F(v)/F(m), and light-saturated capacity of linear electron transport) and plant growth were impaired. Remarkably, drastic changes in phytohormone content also occurred in the RNAi lines. However, external application of phytohormones was not sufficient to rescue these phenotypes, suggesting that altered photosynthetic efficiency might be another important factor explaining their reduced biomass. These results show that LCYB expression influences plant biomass by different mechanisms and suggests thresholds for LCYB expression levels that might be beneficial or detrimental for plant growth. Oxford University Press 2021-01-23 /pmc/articles/PMC8006556/ /pubmed/33484250 http://dx.doi.org/10.1093/jxb/erab029 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the Society for Experimental Biology. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Kössler, Stella
Armarego-Marriott, Tegan
Tarkowská, Danuše
Turečková, Veronika
Agrawal, Shreya
Mi, Jianing
de Souza, Leonardo Perez
Schöttler, Mark Aurel
Schadach, Anne
Fröhlich, Anja
Bock, Ralph
Al-Babili, Salim
Ruf, Stephanie
Sampathkumar, Arun
Moreno, Juan C
Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
title Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
title_full Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
title_fullStr Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
title_full_unstemmed Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
title_short Lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
title_sort lycopene β-cyclase expression influences plant physiology, development, and metabolism in tobacco plants
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8006556/
https://www.ncbi.nlm.nih.gov/pubmed/33484250
http://dx.doi.org/10.1093/jxb/erab029
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