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The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?

Understanding the response of a crop to drought is the first step in the breeding of tolerant genotypes. In our study, two maize (Zea mays L.) genotypes with contrasting sensitivity to dehydration were subjected to moderate drought conditions. The subsequent analysis of their physiological parameter...

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Autores principales: Benešová, Monika, Holá, Dana, Fischer, Lukáš, Jedelský, Petr L., Hnilička, František, Wilhelmová, Naďa, Rothová, Olga, Kočová, Marie, Procházková, Dagmar, Honnerová, Jana, Fridrichová, Lenka, Hniličková, Helena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374823/
https://www.ncbi.nlm.nih.gov/pubmed/22719860
http://dx.doi.org/10.1371/journal.pone.0038017
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author Benešová, Monika
Holá, Dana
Fischer, Lukáš
Jedelský, Petr L.
Hnilička, František
Wilhelmová, Naďa
Rothová, Olga
Kočová, Marie
Procházková, Dagmar
Honnerová, Jana
Fridrichová, Lenka
Hniličková, Helena
author_facet Benešová, Monika
Holá, Dana
Fischer, Lukáš
Jedelský, Petr L.
Hnilička, František
Wilhelmová, Naďa
Rothová, Olga
Kočová, Marie
Procházková, Dagmar
Honnerová, Jana
Fridrichová, Lenka
Hniličková, Helena
author_sort Benešová, Monika
collection PubMed
description Understanding the response of a crop to drought is the first step in the breeding of tolerant genotypes. In our study, two maize (Zea mays L.) genotypes with contrasting sensitivity to dehydration were subjected to moderate drought conditions. The subsequent analysis of their physiological parameters revealed a decreased stomatal conductance accompanied by a slighter decrease in the relative water content in the sensitive genotype. In contrast, the tolerant genotype maintained open stomata and active photosynthesis, even under dehydration conditions. Drought-induced changes in the leaf proteome were analyzed by two independent approaches, 2D gel electrophoresis and iTRAQ analysis, which provided compatible but only partially overlapping results. Drought caused the up-regulation of protective and stress-related proteins (mainly chaperones and dehydrins) in both genotypes. The differences in the levels of various detoxification proteins corresponded well with the observed changes in the activities of antioxidant enzymes. The number and levels of up-regulated protective proteins were generally lower in the sensitive genotype, implying a reduced level of proteosynthesis, which was also indicated by specific changes in the components of the translation machinery. Based on these results, we propose that the hypersensitive early stomatal closure in the sensitive genotype leads to the inhibition of photosynthesis and, subsequently, to a less efficient synthesis of the protective/detoxification proteins that are associated with drought tolerance.
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spelling pubmed-33748232012-06-20 The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration? Benešová, Monika Holá, Dana Fischer, Lukáš Jedelský, Petr L. Hnilička, František Wilhelmová, Naďa Rothová, Olga Kočová, Marie Procházková, Dagmar Honnerová, Jana Fridrichová, Lenka Hniličková, Helena PLoS One Research Article Understanding the response of a crop to drought is the first step in the breeding of tolerant genotypes. In our study, two maize (Zea mays L.) genotypes with contrasting sensitivity to dehydration were subjected to moderate drought conditions. The subsequent analysis of their physiological parameters revealed a decreased stomatal conductance accompanied by a slighter decrease in the relative water content in the sensitive genotype. In contrast, the tolerant genotype maintained open stomata and active photosynthesis, even under dehydration conditions. Drought-induced changes in the leaf proteome were analyzed by two independent approaches, 2D gel electrophoresis and iTRAQ analysis, which provided compatible but only partially overlapping results. Drought caused the up-regulation of protective and stress-related proteins (mainly chaperones and dehydrins) in both genotypes. The differences in the levels of various detoxification proteins corresponded well with the observed changes in the activities of antioxidant enzymes. The number and levels of up-regulated protective proteins were generally lower in the sensitive genotype, implying a reduced level of proteosynthesis, which was also indicated by specific changes in the components of the translation machinery. Based on these results, we propose that the hypersensitive early stomatal closure in the sensitive genotype leads to the inhibition of photosynthesis and, subsequently, to a less efficient synthesis of the protective/detoxification proteins that are associated with drought tolerance. Public Library of Science 2012-06-13 /pmc/articles/PMC3374823/ /pubmed/22719860 http://dx.doi.org/10.1371/journal.pone.0038017 Text en Benešová 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Benešová, Monika
Holá, Dana
Fischer, Lukáš
Jedelský, Petr L.
Hnilička, František
Wilhelmová, Naďa
Rothová, Olga
Kočová, Marie
Procházková, Dagmar
Honnerová, Jana
Fridrichová, Lenka
Hniličková, Helena
The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?
title The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?
title_full The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?
title_fullStr The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?
title_full_unstemmed The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?
title_short The Physiology and Proteomics of Drought Tolerance in Maize: Early Stomatal Closure as a Cause of Lower Tolerance to Short-Term Dehydration?
title_sort physiology and proteomics of drought tolerance in maize: early stomatal closure as a cause of lower tolerance to short-term dehydration?
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3374823/
https://www.ncbi.nlm.nih.gov/pubmed/22719860
http://dx.doi.org/10.1371/journal.pone.0038017
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