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GrainGenes Author Report: Ma Y

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Ma Y
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ReferenceLuo MC et al. (2013) A 4-gigabase physical map unlocks the structure and evolution of the complex genome of Aegilops tauschii, the wheat D-genome progenitor. Proceedings of the National Academy of Sciences, USA 110:7940-7945.
ReferenceLuo MC et al. (2009) Genome comparisons reveal a dominant mechanism of chromosome number reduction in grasses and accelerated genome evolution in Triticeae Proceedings of the National Academy of Sciences, USA 106:15780-15785.
ReferenceChao S et al. (2009) Analysis of gene-derived SNP marker polymorphism in US wheat (Triticum aestivum L.) cultivars Molecular Breeding 23:23-33.
ReferenceGu YQ et al. (2009) A BAC-based physical map of Brachypodium distachyon and its comparative analysis with rice and wheat. BMC Genomics 10:496.
ReferenceHuo N et al. (2009) Structural characterization of Brachypodium genome and its syntenic relationship with rice and wheat. Plant Molecular Biology 70:47-61.
ReferenceLuo MC et al. (2009) A high-throughput strategy for screening of bacterial artificial chromosome libraries and anchoring of clones on a genetic map constructed with single nucleotide polymorphisms. BMC Genomics 10:28.
ReferenceHuo N et al. (2008) The nuclear genome of Brachypodium distachyon: analysis of BAC end sequences. Functional and Integrative Genomics 8:135.
ReferenceYou FM et al. (2008) BatchPrimer3: a high throughput web application for PCR and sequencing primer design. BMC Bioinformatics 9:253.
ReferenceMa Y et al. (2002) A single amino acid substitution that determines IEF band pattern of barley beta-amylase Journal of Cereal Science 35:79-84.
ReferenceMa Y et al. (2000) Comparative enzyme kinetics of two allelic forms of barley (Hordeum vulgare L.) beta-amylase Journal of Cereal Science 31:335-344.