Dynamic evolution of resistance gene analogs in the orthologous genomic regions of powdery mildew resistance gene MlIW170 in Triticum dicoccoides and Aegilops tauschii
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J. Dvorak | Yan Zhang | M. Luo | Y. Gu | N. Huo | Qixin Sun | Qiuhong Wu | Yongxing Chen | S. Ouyang | Zhenzhong Wang | Deyun Zhang | Zhiyong Liu | Jie Zhu | P. Lu | Ziji Liu | Yu Cui | Yong Liang | Yan Zhang | Jingzhong Xie | J. Xie | Dong Zhang | Ping Lu | Jie Zhu | Zhiyong Liu | Dong Zhang
[1] J. Doležel,et al. Major haplotype divergence including multiple germin-like protein genes, at the wheat Sr2 adult plant stem rust resistance locus , 2014, BMC Plant Biology.
[2] K. Jakobsen,et al. Ancient hybridizations among the ancestral genomes of bread wheat , 2014, Science.
[3] J. Batley,et al. A chromosome-based draft sequence of the hexaploid bread wheat (Triticum aestivum) genome , 2014, Science.
[4] Hadi Quesneville,et al. Structural and functional partitioning of bread wheat chromosome 3B , 2014, Science.
[5] Carolyn J. Lawrence-Dill,et al. MAKER-P: A Tool Kit for the Rapid Creation, Management, and Quality Control of Plant Genome Annotations1[W][OPEN] , 2013, Plant Physiology.
[6] Koichiro Tamura,et al. MEGA6: Molecular Evolutionary Genetics Analysis version 6.0. , 2013, Molecular biology and evolution.
[7] J. Dvorak,et al. The Gene Sr33, an Ortholog of Barley Mla Genes, Encodes Resistance to Wheat Stem Rust Race Ug99 , 2013, Science.
[8] Mihaela M. Martis,et al. A 4-gigabase physical map unlocks the structure and evolution of the complex genome of Aegilops tauschii, the wheat D-genome progenitor , 2013, Proceedings of the National Academy of Sciences.
[9] Yadan Luo,et al. Aegilops tauschii draft genome sequence reveals a gene repertoire for wheat adaptation , 2013, Nature.
[10] Wenlong Yang,et al. Draft genome of the wheat A-genome progenitor Triticum urartu , 2013, Nature.
[11] D. Schwartz,et al. Improvement of the Oryza sativa Nipponbare reference genome using next generation sequence and optical map data , 2013, Rice.
[12] Jian Wang,et al. SOAPdenovo2: an empirically improved memory-efficient short-read de novo assembler , 2012, GigaScience.
[13] P. Kersey,et al. Analysis of the bread wheat genome using whole genome shotgun sequencing , 2012, Nature.
[14] T. Flutre,et al. TriAnnot: A Versatile and High Performance Pipeline for the Automated Annotation of Plant Genomes , 2012, Front. Plant Sci..
[15] Qixin Sun,et al. Identification and comparative mapping of a powdery mildew resistance gene derived from wild emmer (Triticum turgidum var. dicoccoides) on chromosome 2BS , 2011, Theoretical and Applied Genetics.
[16] J. Dvorak,et al. Gene Space Dynamics During the Evolution of Aegilops tauschii, Brachypodium distachyon, Oryza sativa, and Sorghum bicolor Genomes , 2011, Molecular biology and evolution.
[17] Vincent Moulton,et al. RDP3: a flexible and fast computer program for analyzing recombination , 2010, Bioinform..
[18] Dawn H. Nagel,et al. The B73 Maize Genome: Complexity, Diversity, and Dynamics , 2009, Science.
[19] Pierre Sourdille,et al. Detailed Recombination Studies Along Chromosome 3B Provide New Insights on Crossover Distribution in Wheat (Triticum aestivum L.) , 2009, Genetics.
[20] Mihaela M. Martis,et al. The Sorghum bicolor genome and the diversification of grasses , 2009, Nature.
[21] A. Oskooi. Molecular Evolution and Phylogenetics , 2008 .
[22] O. Sagi-Assif,et al. Genome size and genome evolution in diploid Triticeae species. , 2007, Genome.
[23] J. Dvorak,et al. Erratum: Genome plasticity a key factor in the success of polyploid wheat under domestication (Science (1862)) , 2007 .
[24] Travis W. Banks,et al. Leaf rust resistance gene Lr1, isolated from bread wheat (Triticum aestivum L.) is a member of the large psr567 gene family , 2007, Plant Molecular Biology.
[25] Jan Dvorak,et al. Genome Plasticity a Key Factor in the Success of Polyploid Wheat Under Domestication , 2007, Science.
[26] Jonathan D. G. Jones,et al. The plant immune system , 2006, Nature.
[27] Patrice Koehl,et al. Plant NBS-LRR proteins: adaptable guards , 2006, Genome Biology.
[28] G. Petersen,et al. Phylogenetic relationships of Triticum and Aegilops and evidence for the origin of the A, B, and D genomes of common wheat (Triticum aestivum). , 2006, Molecular phylogenetics and evolution.
[29] B. Keller,et al. Genome analysis at different ploidy levels allows cloning of the powdery mildew resistance gene Pm3b from hexaploid wheat. , 2004, The Plant journal : for cell and molecular biology.
[30] M. Feldman,et al. A new powdery mildew resistance gene: Introgression from wild emmer into common wheat and RFLP-based mapping , 2000, Euphytica.
[31] R. Conner,et al. Impact of powdery mildew on the yield of soft white spring wheat cultivars , 2003 .
[32] Y. Gu,et al. Construction and characterization of a half million clone BAC library of durum wheat (Triticum turgidum ssp. durum) , 2003, Theoretical and Applied Genetics.
[33] Junhua Peng,et al. The organization and rate of evolution of wheat genomes are correlated with recombination rates along chromosome arms. , 2003, Genome research.
[34] B. Keller,et al. Genetic mapping of the Lr20-Pm1 resistance locus reveals suppressed recombination on chromosome arm 7AL in hexaploid wheat. , 2002, Genome.
[35] R. Wing,et al. Genome Dynamics and Evolution of the Mla (Powdery Mildew) Resistance Locus in Barley Online version contains Web-only data. Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.002238. , 2002, The Plant Cell Online.
[36] Andrea Brandolini,et al. Genetics and geography of wild cereal domestication in the near east , 2002, Nature Reviews Genetics.
[37] E. Stahl,et al. Evolutionary Dynamics of Plant R-Genes , 2001, Science.
[38] P. Finney,et al. Impact of Powdery Mildew and Leaf Rust on Milling and Baking Quality of Soft Red Winter Wheat. , 2001, Plant disease.
[39] N. Saitou,et al. The neighbor-joining method: a new method for reconstructing phylogenetic trees. , 1987, Molecular biology and evolution.
[40] N. Saito. The neighbor-joining method : A new method for reconstructing phylogenetic trees , 1987 .