Related references
Note: Only part of the references are listed.NEXT-GENERATION SEQUENCING APPLICATIONS FOR WHEAT CROP IMPROVEMENT
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ANNALS OF BOTANY (2011)
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JOURNAL OF EXPERIMENTAL BOTANY (2011)
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BIOLOGIA PLANTARUM (2010)
Selection of U and M genome-specific wheat SSR markers using wheat-Aegilops biuncialis and wheat-Ae. geniculata addition lines
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John P. Vogel et al.
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Genomics in cereals: from genome-wide conserved orthologous set (COS) sequences to candidate genes for trait dissection
Umar Masood Quraishi et al.
FUNCTIONAL & INTEGRATIVE GENOMICS (2009)
Evaluation and utilization of Aegilops and wild Triticum species for enhancing iron and zinc content in wheat
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GENETIC RESOURCES AND CROP EVOLUTION (2009)
Detection of intergenomic chromosome rearrangements in irradiated Triticum aestivum - Aegilops biuncialis amphiploids by multicolour genomic in situ hybridization
Istvan Molnar et al.
GENOME (2009)
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PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2009)
Coupling amplified DNA from flow-sorted chromosomes to high-density SNP mapping in barley
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BMC GENOMICS (2008)
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Contrasting rates of evolution in Pm3 loci from three wheat species and rice
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Chromosomal rearrangements in wheat: their types and distribution
E. D. Badaeva et al.
GENOME (2007)
Alignment of the genomes of Brachypodium distachyon and temperate cereals and grasses using bacterial artificial chromosome landing with fluorescence in situ hybridization
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GENETICS (2006)
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Use of wild relatives to improve salt tolerance in wheat
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JOURNAL OF EXPERIMENTAL BOTANY (2006)
Molecular cytogenetic characterization of Aegilops biuncialis and its use for the identification of 5 derived wheat -: Aegilops biuncialis disomic addition lines
A Schneider et al.
GENOME (2005)
The map-based sequence of the rice genome
T Matsumoto et al.
NATURE (2005)
Chromosomal rearrangements differentiating the ryegrass genome from the Triticeae, oat, and rice genomes using common heterologous RFLP probes
S Sim et al.
THEORETICAL AND APPLIED GENETICS (2005)
Molecular basis of evolutionary events that shaped the hardness locus in diploid and polyploid wheat species (Triticum and aegilops)
N Chantret et al.
PLANT CELL (2005)
The Genomes of Oryza sativa:: A history of duplications
J Yu et al.
PLOS BIOLOGY (2005)
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YB Xu et al.
PLANT MOLECULAR BIOLOGY (2005)
Mechanisms of recent genome size variation in flowering plants
JL Bennetzen et al.
ANNALS OF BOTANY (2005)
Genome differentiation in Aegilops.: 4.: Evolution of the U-genome cluster
ED Badaeva et al.
PLANT SYSTEMATICS AND EVOLUTION (2004)
Construction and analysis of a BAC library in the grass Brachypodium sylvaticum : its use as a tool to bridge the gap between rice and wheat in elucidating gene content
Tracie N. Foote et al.
FUNCTIONAL & INTEGRATIVE GENOMICS (2004)
Physiological and morphological responses to water stress in Aegilops biuncialis and Triticum aestivum genotypes with differing tolerance to drought
I Molnar et al.
FUNCTIONAL PLANT BIOLOGY (2004)
The genetic colinearity of rice and other cereals on the basis of genomic sequence analysis
JL Bennetzen et al.
CURRENT OPINION IN PLANT BIOLOGY (2003)
Comparative Genomics in the grass family: Molecular characterization of grass genome structure and evolution
C Feuillet et al.
ANNALS OF BOTANY (2002)
Brachypodium distachyon.: A new model system for functional genomics in grasses
J Draper et al.
PLANT PHYSIOLOGY (2001)
Analysis of relationships between Aegilops tauschii and the D genome of wheat utilizing microsatellites
T Lelley et al.
GENOME (2000)
Microsatellite analysis of Aegilops tauschii germplasm
E Pestsova et al.
THEORETICAL AND APPLIED GENETICS (2000)
Genome relationships: The grass model in current research
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PLANT CELL (2000)