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Induced variations in brassinosteroid genes define barley height and sturdiness, and expand the green revolution genetic toolkit
C. Dockter, D. Gruszka, I. Braumann, A. Druka, I. Druka, J. Franckowiak, SP. Gough, A. Janeczko, M. Kurowska, J. Lundqvist, U. Lundqvist, M. Marzec, I. Matyszczak, AH. Müller, J. Oklestkova, B. Schulz, S. Zakhrabekova, M. Hansson,
Language English Country United States
Document type Journal Article, Research Support, Non-U.S. Gov't, Research Support, U.S. Gov't, Non-P.H.S.
NLK
Free Medical Journals
from 1926 to 1 year ago
Open Access Digital Library
from 1926-01-01
PubMed
25332507
DOI
10.1104/pp.114.250738
Knihovny.cz E-resources
- MeSH
- Alleles MeSH
- Amino Acids MeSH
- Brassinosteroids metabolism MeSH
- Phenotype MeSH
- Hordeum genetics growth & development metabolism MeSH
- Edible Grain MeSH
- Chromosome Mapping MeSH
- Models, Structural MeSH
- Molecular Sequence Data MeSH
- Mutation MeSH
- Weather MeSH
- Computer Simulation MeSH
- Gene Expression Regulation, Plant * MeSH
- Base Sequence MeSH
- Sequence Analysis, DNA MeSH
- Signal Transduction MeSH
- Temperature MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Research Support, U.S. Gov't, Non-P.H.S. MeSH
Reduced plant height and culm robustness are quantitative characteristics important for assuring cereal crop yield and quality under adverse weather conditions. A very limited number of short-culm mutant alleles were introduced into commercial crop cultivars during the Green Revolution. We identified phenotypic traits, including sturdy culm, specific for deficiencies in brassinosteroid biosynthesis and signaling in semidwarf mutants of barley (Hordeum vulgare). This set of characteristic traits was explored to perform a phenotypic screen of near-isogenic short-culm mutant lines from the brachytic, breviaristatum, dense spike, erectoides, semibrachytic, semidwarf, and slender dwarf mutant groups. In silico mapping of brassinosteroid-related genes in the barley genome in combination with sequencing of barley mutant lines assigned more than 20 historic mutants to three brassinosteroid-biosynthesis genes (BRASSINOSTEROID-6-OXIDASE, CONSTITUTIVE PHOTOMORPHOGENIC DWARF, and DIMINUTO) and one brassinosteroid-signaling gene (BRASSINOSTEROID-INSENSITIVE1 [HvBRI1]). Analyses of F2 and M2 populations, allelic crosses, and modeling of nonsynonymous amino acid exchanges in protein crystal structures gave a further understanding of the control of barley plant architecture and sturdiness by brassinosteroid-related genes. Alternatives to the widely used but highly temperature-sensitive uzu1.a allele of HvBRI1 represent potential genetic building blocks for breeding strategies with sturdy and climate-tolerant barley cultivars.
Carlsberg Laboratory DK 1799 Copenhagen 5 Denmark
Institute of Plant Physiology Polish Academy of Sciences 30 239 Krakow Poland
James Hutton Institute Invergowrie Dundee DD2 5DA United Kingdom
References provided by Crossref.org
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