The disadvantages of being a hybrid during drought: A combined analysis of plant morphology, physiology and leaf proteome in maize
A comparative analysis of various parameters that characterize plant morphology, growth, water status, photosynthesis, cell damage, and antioxidative and osmoprotective systems together with an iTRAQ analysis of the leaf proteome was performed in two inbred lines of maize (Zea mays L.) differing in...
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Published in | PloS one Vol. 12; no. 4; p. e0176121 |
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Main Authors | , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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United States
Public Library of Science
18.04.2017
Public Library of Science (PLoS) |
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Abstract | A comparative analysis of various parameters that characterize plant morphology, growth, water status, photosynthesis, cell damage, and antioxidative and osmoprotective systems together with an iTRAQ analysis of the leaf proteome was performed in two inbred lines of maize (Zea mays L.) differing in drought susceptibility and their reciprocal F1 hybrids. The aim of this study was to dissect the parent-hybrid relationships to better understand the mechanisms of the heterotic effect and its potential association with the stress response. The results clearly showed that the four examined genotypes have completely different strategies for coping with limited water availability and that the inherent properties of the F1 hybrids, i.e. positive heterosis in morphological parameters (or, more generally, a larger plant body) becomes a distinct disadvantage when the water supply is limited. However, although a greater loss of photosynthetic efficiency was an inherent disadvantage, the precise causes and consequences of the original predisposition towards faster growth and biomass accumulation differed even between reciprocal hybrids. Both maternal and paternal parents could be imitated by their progeny in some aspects of the drought response (e.g., the absence of general protein down-regulation, changes in the levels of some carbon fixation or other photosynthetic proteins). Nevertheless, other features (e.g., dehydrin or light-harvesting protein contents, reduced chloroplast proteosynthesis) were quite unique to a particular hybrid. Our study also confirmed that the strategy for leaving stomata open even when the water supply is limited (coupled to a smaller body size and some other physiological properties), observed in one of our inbred lines, is associated with drought-resistance not only during mild drought (as we showed previously) but also during more severe drought conditions. |
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AbstractList | A comparative analysis of various parameters that characterize plant morphology, growth, water status, photosynthesis, cell damage, and antioxidative and osmoprotective systems together with an iTRAQ analysis of the leaf proteome was performed in two inbred lines of maize (Zea mays L.) differing in drought susceptibility and their reciprocal F1 hybrids. The aim of this study was to dissect the parent-hybrid relationships to better understand the mechanisms of the heterotic effect and its potential association with the stress response. The results clearly showed that the four examined genotypes have completely different strategies for coping with limited water availability and that the inherent properties of the F1 hybrids, i.e. positive heterosis in morphological parameters (or, more generally, a larger plant body) becomes a distinct disadvantage when the water supply is limited. However, although a greater loss of photosynthetic efficiency was an inherent disadvantage, the precise causes and consequences of the original predisposition towards faster growth and biomass accumulation differed even between reciprocal hybrids. Both maternal and paternal parents could be imitated by their progeny in some aspects of the drought response (e.g., the absence of general protein down-regulation, changes in the levels of some carbon fixation or other photosynthetic proteins). Nevertheless, other features (e.g., dehydrin or light-harvesting protein contents, reduced chloroplast proteosynthesis) were quite unique to a particular hybrid. Our study also confirmed that the strategy for leaving stomata open even when the water supply is limited (coupled to a smaller body size and some other physiological properties), observed in one of our inbred lines, is associated with drought-resistance not only during mild drought (as we showed previously) but also during more severe drought conditions. A comparative analysis of various parameters that characterize plant morphology, growth, water status, photosynthesis, cell damage, and antioxidative and osmoprotective systems together with an iTRAQ analysis of the leaf proteome was performed in two inbred lines of maize ( Zea mays L.) differing in drought susceptibility and their reciprocal F1 hybrids. The aim of this study was to dissect the parent-hybrid relationships to better understand the mechanisms of the heterotic effect and its potential association with the stress response. The results clearly showed that the four examined genotypes have completely different strategies for coping with limited water availability and that the inherent properties of the F1 hybrids, i . e . positive heterosis in morphological parameters (or, more generally, a larger plant body) becomes a distinct disadvantage when the water supply is limited. However, although a greater loss of photosynthetic efficiency was an inherent disadvantage, the precise causes and consequences of the original predisposition towards faster growth and biomass accumulation differed even between reciprocal hybrids. Both maternal and paternal parents could be imitated by their progeny in some aspects of the drought response ( e . g ., the absence of general protein down-regulation, changes in the levels of some carbon fixation or other photosynthetic proteins). Nevertheless, other features ( e . g ., dehydrin or light-harvesting protein contents, reduced chloroplast proteosynthesis) were quite unique to a particular hybrid. Our study also confirmed that the strategy for leaving stomata open even when the water supply is limited (coupled to a smaller body size and some other physiological properties), observed in one of our inbred lines, is associated with drought-resistance not only during mild drought (as we showed previously) but also during more severe drought conditions. |
Audience | Academic |
Author | Rothová, Olga Benešová, Monika Hnilička, František Holá, Dana Kočová, Marie Wilhelmová, Naďa Haisel, Daniel Hniličková, Helena Fischer, Lukáš Jedelský, Petr L Tůmová, Lenka Procházková, Dagmar |
AuthorAffiliation | 2 Department of Experimental Plant Biology, Faculty of Science, Charles University, Prague, Czech Republic Estacion Experimental del Zaidin, SPAIN 3 Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Czech Republic 4 Department of Botany and Plant Physiology, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Prague, Czech Republic 1 Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic 5 Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic |
AuthorAffiliation_xml | – name: 2 Department of Experimental Plant Biology, Faculty of Science, Charles University, Prague, Czech Republic – name: Estacion Experimental del Zaidin, SPAIN – name: 1 Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic – name: 5 Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic – name: 3 Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Czech Republic – name: 4 Department of Botany and Plant Physiology, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Prague, Czech Republic |
Author_xml | – sequence: 1 givenname: Dana orcidid: 0000-0002-2080-8774 surname: Holá fullname: Holá, Dana organization: Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 2 givenname: Monika surname: Benešová fullname: Benešová, Monika organization: Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 3 givenname: Lukáš surname: Fischer fullname: Fischer, Lukáš organization: Department of Experimental Plant Biology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 4 givenname: Daniel surname: Haisel fullname: Haisel, Daniel organization: Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Czech Republic – sequence: 5 givenname: František surname: Hnilička fullname: Hnilička, František organization: Department of Botany and Plant Physiology, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Prague, Czech Republic – sequence: 6 givenname: Helena surname: Hniličková fullname: Hniličková, Helena organization: Department of Botany and Plant Physiology, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Prague, Czech Republic – sequence: 7 givenname: Petr L surname: Jedelský fullname: Jedelský, Petr L organization: Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 8 givenname: Marie surname: Kočová fullname: Kočová, Marie organization: Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 9 givenname: Dagmar surname: Procházková fullname: Procházková, Dagmar organization: Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Czech Republic – sequence: 10 givenname: Olga surname: Rothová fullname: Rothová, Olga organization: Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 11 givenname: Lenka surname: Tůmová fullname: Tůmová, Lenka organization: Department of Genetics and Microbiology, Faculty of Science, Charles University, Prague, Czech Republic – sequence: 12 givenname: Naďa surname: Wilhelmová fullname: Wilhelmová, Naďa organization: Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Czech Republic |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28419152$$D View this record in MEDLINE/PubMed |
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Copyright | COPYRIGHT 2017 Public Library of Science 2017 Holá et al. This is an open access article distributed under the terms of the Creative Commons Attribution License: http://creativecommons.org/licenses/by/4.0/ (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. 2017 Holá et al 2017 Holá et al |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Conceptualization: D. Holá.Data curation: PLJ MB LF.Formal analysis: D. Holá PLJ LT.Funding acquisition: LF D. Holá LT.Investigation: D. Holá MB LF D. Haisel FH HH PLJ MK DP OR LT NW.Project administration: D. Holá.Supervision: D. Holá.Visualization: D. Holá.Writing – original draft: D. Holá.Writing – review & editing: D. Holá LF HH MK NW. Competing Interests: The authors have declared that no competing interests exist. |
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PublicationYear | 2017 |
Publisher | Public Library of Science Public Library of Science (PLoS) |
Publisher_xml | – name: Public Library of Science – name: Public Library of Science (PLoS) |
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SubjectTerms | Acclimatization Bioenergetics Biology Biology and Life Sciences Biomass Body size Carbon fixation Cell division Chimera - genetics Chimera - physiology Comparative analysis Corn Cytology Dehydrin DNA DNA methylation Drought Drought conditions Droughts Ecology and Environmental Sciences Gene expression Genetics Genotypes Heterosis Hybrid Vigor Hybrids Inbreeding Leaves Life sciences Metabolism Morphology Natural resources Photosynthesis Physiological aspects Physiology Plant Leaves - anatomy & histology Plant Leaves - genetics Plant Leaves - physiology Plant morphology Plant Proteins - analysis Plant Proteins - metabolism Plant sciences Proteins Proteome - analysis Proteome - metabolism Proteomes Research and Analysis Methods Signal transduction Sorghum Stomata Stress response Stress, Physiological Studies Water - metabolism Water availability Water supply Zea mays Zea mays - anatomy & histology Zea mays - genetics Zea mays - physiology |
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Title | The disadvantages of being a hybrid during drought: A combined analysis of plant morphology, physiology and leaf proteome in maize |
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