Cargando…

Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense

Barley (Hordeum vulgare L.) is among the most stress-tolerant crops; however, not much is known about the genetic and environmental control of metabolic adaptation of barley to abiotic stresses. We have subjected a genetically diverse set of 81 barley accessions, consisting of Mediterranean landrace...

Descripción completa

Detalles Bibliográficos
Autores principales: Templer, Sven Eduard, Ammon, Alexandra, Pscheidt, David, Ciobotea, Otilia, Schuy, Christian, McCollum, Christopher, Sonnewald, Uwe, Hanemann, Anja, Förster, Jutta, Ordon, Frank, von Korff, Maria, Voll, Lars Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5441916/
https://www.ncbi.nlm.nih.gov/pubmed/28338908
http://dx.doi.org/10.1093/jxb/erx038
_version_ 1783238321869160448
author Templer, Sven Eduard
Ammon, Alexandra
Pscheidt, David
Ciobotea, Otilia
Schuy, Christian
McCollum, Christopher
Sonnewald, Uwe
Hanemann, Anja
Förster, Jutta
Ordon, Frank
von Korff, Maria
Voll, Lars Matthias
author_facet Templer, Sven Eduard
Ammon, Alexandra
Pscheidt, David
Ciobotea, Otilia
Schuy, Christian
McCollum, Christopher
Sonnewald, Uwe
Hanemann, Anja
Förster, Jutta
Ordon, Frank
von Korff, Maria
Voll, Lars Matthias
author_sort Templer, Sven Eduard
collection PubMed
description Barley (Hordeum vulgare L.) is among the most stress-tolerant crops; however, not much is known about the genetic and environmental control of metabolic adaptation of barley to abiotic stresses. We have subjected a genetically diverse set of 81 barley accessions, consisting of Mediterranean landrace genotypes and German elite breeding lines, to drought and combined heat and drought stress at anthesis. Our aim was to (i) investigate potential differences in morphological, physiological, and metabolic adaptation to the two stress scenarios between the Mediterranean and German barley genotypes and (ii) identify metabolic quantitative trait loci (mQTLs). To this end, we have genotyped the investigated barley lines with an Illumina iSelect 9K array and analyzed a set of 57 metabolites from the primary C and N as well as antioxidant metabolism in flag leaves under control and stress conditions. We found that drought-adapted genotypes attenuate leaf carbon metabolism much more strongly than elite lines during drought stress adaptation. Furthermore, we identified mQTLs for flag leaf γ-tocopherol, glutathione, and succinate content by association genetics that co-localize with genes encoding enzymes of the pathways producing these antioxidant metabolites. Our results provide the molecular basis for breeding barley cultivars with improved abiotic stress tolerance.
format Online
Article
Text
id pubmed-5441916
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-54419162017-05-30 Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense Templer, Sven Eduard Ammon, Alexandra Pscheidt, David Ciobotea, Otilia Schuy, Christian McCollum, Christopher Sonnewald, Uwe Hanemann, Anja Förster, Jutta Ordon, Frank von Korff, Maria Voll, Lars Matthias J Exp Bot Research Paper Barley (Hordeum vulgare L.) is among the most stress-tolerant crops; however, not much is known about the genetic and environmental control of metabolic adaptation of barley to abiotic stresses. We have subjected a genetically diverse set of 81 barley accessions, consisting of Mediterranean landrace genotypes and German elite breeding lines, to drought and combined heat and drought stress at anthesis. Our aim was to (i) investigate potential differences in morphological, physiological, and metabolic adaptation to the two stress scenarios between the Mediterranean and German barley genotypes and (ii) identify metabolic quantitative trait loci (mQTLs). To this end, we have genotyped the investigated barley lines with an Illumina iSelect 9K array and analyzed a set of 57 metabolites from the primary C and N as well as antioxidant metabolism in flag leaves under control and stress conditions. We found that drought-adapted genotypes attenuate leaf carbon metabolism much more strongly than elite lines during drought stress adaptation. Furthermore, we identified mQTLs for flag leaf γ-tocopherol, glutathione, and succinate content by association genetics that co-localize with genes encoding enzymes of the pathways producing these antioxidant metabolites. Our results provide the molecular basis for breeding barley cultivars with improved abiotic stress tolerance. Oxford University Press 2017-03-01 2017-03-10 /pmc/articles/PMC5441916/ /pubmed/28338908 http://dx.doi.org/10.1093/jxb/erx038 Text en © The Author 2017. 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 Paper
Templer, Sven Eduard
Ammon, Alexandra
Pscheidt, David
Ciobotea, Otilia
Schuy, Christian
McCollum, Christopher
Sonnewald, Uwe
Hanemann, Anja
Förster, Jutta
Ordon, Frank
von Korff, Maria
Voll, Lars Matthias
Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense
title Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense
title_full Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense
title_fullStr Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense
title_full_unstemmed Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense
title_short Metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic QTLs for metabolites associated with antioxidant defense
title_sort metabolite profiling of barley flag leaves under drought and combined heat and drought stress reveals metabolic qtls for metabolites associated with antioxidant defense
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5441916/
https://www.ncbi.nlm.nih.gov/pubmed/28338908
http://dx.doi.org/10.1093/jxb/erx038
work_keys_str_mv AT templersveneduard metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT ammonalexandra metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT pscheidtdavid metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT cioboteaotilia metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT schuychristian metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT mccollumchristopher metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT sonnewalduwe metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT hanemannanja metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT forsterjutta metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT ordonfrank metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT vonkorffmaria metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense
AT volllarsmatthias metaboliteprofilingofbarleyflagleavesunderdroughtandcombinedheatanddroughtstressrevealsmetabolicqtlsformetabolitesassociatedwithantioxidantdefense