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Genetic control over silica deposition in wheat awns
Zvi Peleg
, Yehoshua Saranga
,
Tzion Fahima
, Asaph Aharoni
, Rivka Elbaum
Department of Evolutionary and Environmental Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
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Keyphrases
Silica
100%
Genetic Control
100%
Silica Deposition
100%
Wheat Awns
100%
Silicification
50%
Quantitative Trait Loci
33%
Silica Concentration
33%
In the Wild
16%
Durum Wheat
16%
Wheat Genotypes
16%
Wheat
16%
Wild Emmer
16%
Tetraploid Wheat
16%
Grass
16%
Dicoccoides
16%
Triticum Turgidum Ssp
16%
High Grain
16%
Genomic Regions
16%
Metabolism
16%
Selection Pressure
16%
Active Processes
16%
Wheat Population
16%
Grain Protein
16%
LOD Score
16%
Recombinant Inbred Lines
16%
Domestication Process
16%
Stomata
16%
Cell Wall
16%
Seed Dispersal
16%
Environmental Stress Tolerance
16%
Water Evaporation
16%
Epidermis Cell
16%
Yield Stress
16%
Papillae
16%
Glume
16%
Wild Accessions
16%
Epidermal Hair
16%
Silica Layer
16%
Cellular Control
16%
Sclerenchyma Cell
16%
Vascular Bundle
16%
Scanning Electron Micrograph
16%
Soluble Silica
16%
Agricultural and Biological Sciences
Quantitative Trait Locus
100%
Triticum turgidum
50%
Durum Wheat
50%
Tetraploidy
50%
Grain Protein
50%
Grains
50%
Poaceae
50%
Selection Pressure
50%
Inbred Lines
50%
Stoma
50%
Cuticle
50%
Stress Tolerance
50%
Seed Dispersal
50%
Cell Wall
50%
Sclerenchyma
50%
Vascular Bundle
50%
Immunology and Microbiology
Awn
100%
Quantitative Trait Locus
22%
Dry Weight
22%
Tetraploidy
11%
Recombinant Inbred Strain
11%
Poaceae
11%
Cuticle
11%
Cell Wall
11%
Epidermis Cell
11%
Seed Dispersal
11%
Glume
11%
Stoma
11%