Brachypodium distachyon. A new model system for functional genomics in grasses.
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J. Draper | L. Mur | L. Mur | R. Hasterok | G. Jenkins | G. C. Ghosh-Biswas | P. Bablak | A. P. Routledge | Andrew P M Routledge
[1] Q. Schiermeier. Designer rice to combat diet deficiencies makes its debut , 2001, Nature.
[2] D. Cyranoski,et al. Commercial sector scores success with whole rice genome , 2001, Nature.
[3] The Arabidopsis Genome Initiative. Analysis of the genome sequence of the flowering plant Arabidopsis thaliana , 2000, Nature.
[4] O. Fiehn,et al. Metabolite profiling for plant functional genomics , 2000, Nature Biotechnology.
[5] I. Leitch,et al. Nuclear DNA Amounts in Angiosperms and their Modern Uses—807 New Estimates , 2000 .
[6] Tyagi,et al. Rice transformation for crop improvement and functional genomics. , 2000, Plant science : an international journal of experimental plant biology.
[7] P. Goodwin,et al. Specific HR-associated recognition of secreted proteins from Cladosporium fulvum occurs in both host and non-host plants. , 2000, The Plant journal : for cell and molecular biology.
[8] M. C. Ellis. "Spot-on" SNP genotyping. , 2000, Genome Research.
[9] G M Coruzzi,et al. National Science Foundation-Sponsored Workshop Report: "The 2010 Project" functional genomics and the virtual plant. A blueprint for understanding how plants are built and how to improve them. , 2000, Plant physiology.
[10] B. Keller,et al. Colinearity and gene density in grass genomes. , 2000, Trends in plant science.
[11] J. Dunwell. Transgenic approaches to crop improvement. , 2000, Journal of experimental botany.
[12] T. Gura. Reaping the Plant Gene Harvest , 2000, Science.
[13] T. Schwarzacher,et al. Practical in situ Hybridization , 1999 .
[14] Jonathan D. G. Jones,et al. Multiple Independent Defective Suppressor-mutator Transposon Insertions in Arabidopsis: A Tool for Functional Genomics , 1999, Plant Cell.
[15] K. Shimamoto,et al. Ac as a tool for the functional genomics of rice. , 1999, The Plant journal : for cell and molecular biology.
[16] T. Sasaki,et al. Arabidopsis-rice: will colinearity allow gene prediction across the eudicot-monocot divide? , 1999, Genome research.
[17] M. A. Khan,et al. Breeding relationships in the genus Brachypodium (Poaceae: Pooideae) , 1999 .
[18] J. Bennetzen,et al. Colinearity and its exceptions in orthologous adh regions of maize and sorghum. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[19] M. Wright,et al. Recent advances in the transformation of plants. , 1999, Trends in plant science.
[20] S. Goff,et al. Rice as a model for cereal genomics. , 1999, Current opinion in plant biology.
[21] J. Bodeau,et al. FISH to meiotic pachytene chromosomes of tomato locates the root-knot nematode resistance gene Mi-1 and the acid phosphatase gene Aps-1 near the junction of euchromatin and pericentromeric heterochromatin of chromosome arms 6S and 6L, respectively , 1999, Theoretical and Applied Genetics.
[22] L Nardi,et al. Plant Genome Size Estimation by Flow Cytometry: Inter-laboratory Comparison , 1998 .
[23] S. Clough,et al. Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana. , 1998, The Plant journal : for cell and molecular biology.
[24] J. Cherry,et al. Arabidopsis thaliana: a model plant for genome analysis. , 1998, Science.
[25] M. Elliott,et al. A routine system for generation of transgenic rice (Oryza sativa L.) plants by microprojectile bombardment of embryogenic cell clusters , 1998 .
[26] J. Bennetzen,et al. Grass genomes. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[27] S McCouch,et al. Toward a plant genomics initiative: thoughts on the value of cross-species and cross-genera comparisons in the grasses. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[28] K. Devos,et al. Comparative genetics in the grasses. , 1998, Plant molecular biology.
[29] R. Kalla,et al. Agrobacterium tumefaciens‐mediated barley transformation , 1997 .
[30] R. Olmstead,et al. Phylogeny of Poaceae subfamily Pooideae based on chloroplast ndhF gene sequences. , 1997, Molecular phylogenetics and evolution.
[31] T. Sasaki,et al. Detailed comparative mapping of cereal chromosome regions corresponding to the Ph1 locus in wheat. , 1997, Genetics.
[32] I. Leitch,et al. Nuclear DNA Amounts in Angiosperms—583 New Estimates , 1997 .
[33] S. Dinesh-Kumar,et al. Signaling in plant-microbe interactions. , 1997, Science.
[34] Zhang,et al. Microcolinearity in sh 2-homologous regions of the maize , rice , and sorghum genomes ( genome microsynteny y gene duplication y repetitive DNA y intron evolution ) , 1997 .
[35] I. Havukkala. Cereal genome analysis using rice as a model. , 1996, Current opinion in genetics & development.
[36] T. Carver,et al. Early interactions during powdery mildew infection , 1995 .
[37] J. Draper,et al. Molecular phylogeny of the grass genus Brachypodium P. Beauv. based on RFLP and RAPD analysis , 1995 .
[38] R. Flavell,et al. Molecular Analysis of Small Grain Cereal Genomes: Current Status and Prospects , 1993, Bio/Technology.
[39] J. Draper,et al. Isolation of an asparagus intracellular PR gene (AoPR1) wound-responsive promoter by the inverse polymerase chain reaction and its characterization in transgenic tobacco. , 1993, The Plant journal : for cell and molecular biology.
[40] Tse-Min Lee,et al. Transformation of Indica rice (Oryza sativa L.) mediated by Agrobacterium tumefaciens , 1992 .
[41] M. Fromm,et al. Stably Transformed Callus Lines from Microprojectile Bombardment of Cell Suspension Cultures of Wheat , 1991, Bio/Technology.
[42] M. Devey,et al. Transformation of Zea mays L. Using Agrobacterium tumefaciens and the Shoot Apex. , 1991, Plant physiology.
[43] Ying Shi. Molecular studies of the evolutionary relationships of Brachypodium (Poaceae). , 1991 .
[44] M. Fromm,et al. Inheritance and Expression of Chimeric Genes in the Progeny of Transgenic Maize Plants , 1990, Bio/Technology.
[45] I. Unfried,et al. Nucleotide sequence of the 5.8S and 25S rRNA genes and of the internal transcribed spacers from Arabidopsis thaliana , 1990, Nucleic Acids Res..
[46] I. Potrykus. Gene Transfer to Cereals: An Assessment , 1989, Bio/Technology.
[47] M. Fromm,et al. Genetic Transformation of Maize Cells by Particle Bombardment , 1989 .
[48] J. Draper. Plant Genetic Transformation and Gene Expression: A Laboratory Manual , 1988 .
[49] E. Meyerowitz,et al. Characterization of the genome of Arabidopsis thaliana. , 1986, Journal of molecular biology.
[50] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[51] A. Feinberg,et al. A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity. , 1983, Analytical biochemistry.
[52] D. Galbraith,et al. Rapid Flow Cytometric Analysis of the Cell Cycle in Intact Plant Tissues , 1983, Science.
[53] J. S. Heslop-Harrison,et al. Nuclear dna amounts in angiosperms. , 1976, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[54] W. Gerlach,et al. Sequence organization of the repeating units in the nucleus of wheat which contain 5S rRNA genes. , 1980, Nucleic acids research.
[55] W. F. Thompson,et al. Rapid isolation of high molecular weight plant DNA. , 1980, Nucleic acids research.
[56] P. Ranjekar,et al. Repetitive DNA in three Gramineae species with low DNA content. , 1980, Hoppe-Seyler's Zeitschrift fur physiologische Chemie.
[57] G. Rédei. Arabidopsis thaliana (L.) Heynh. A review of the genetics and biology. , 1970 .