CBF gene copy number variation at Frost Resistance-2 is associated with levels of freezing tolerance in temperate-climate cereals
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Nicola Pecchioni | Taniya Dhillon | E. Stockinger | N. Pecchioni | A. Tondelli | Alessandro Tondelli | Andrea K. Knox | Taniya Dhillon | Hongmei Cheng | Eric J. Stockinger | Andrea K. Knox | Hongmei Cheng | Hongmei Cheng
[1] S. Rhee,et al. The low temperature-responsive, SolanumCBF1 genes maintain high identity in their upstream regions in a genomic environment undergoing gene duplications, deletions, and rearrangements , 2008, Plant Molecular Biology.
[2] R. Chibbar,et al. Identification of quantitative trait loci and associated candidate genes for low-temperature tolerance in cold-hardy winter wheat , 2006, Functional & Integrative Genomics.
[3] W. Powell,et al. The Dicktoo x Morex Population , 1997 .
[4] G. Xue. The DNA-binding activity of an AP2 transcriptional activator HvCBF2 involved in regulation of low-temperature responsive genes in barley is modulated by temperature. , 2003, The Plant journal : for cell and molecular biology.
[5] J. Lupski,et al. Mechanisms of change in gene copy number , 2009, Nature Reviews Genetics.
[6] K. Shinozaki,et al. Two Transcription Factors, DREB1 and DREB2, with an EREBP/AP2 DNA Binding Domain Separate Two Cellular Signal Transduction Pathways in Drought- and Low-Temperature-Responsive Gene Expression, Respectively, in Arabidopsis , 1998, Plant Cell.
[7] E. Stockinger,et al. Fine mapping of a HvCBF gene cluster at the frost resistance locus Fr-H2 in barley , 2007, Theoretical and Applied Genetics.
[8] J. Medina,et al. Arabidopsis CBF1 and CBF3 have a different function than CBF2 in cold acclimation and define different gene classes in the CBF regulon , 2007, Proceedings of the National Academy of Sciences.
[9] J. Dubcovsky,et al. Genetic and Molecular Characterization of the VRN2 Loci in Tetraploid Wheat1[W][OA] , 2008, Plant Physiology.
[10] P. Hayes,et al. The Vrn-H2 locus is a major determinant of flowering time in a facultative × winter growth habit barley (Hordeum vulgare L.) mapping population , 2005, Theoretical and Applied Genetics.
[11] P. Hayes,et al. Large deletions within the first intron in VRN-1 are associated with spring growth habit in barley and wheat , 2005, Molecular Genetics and Genomics.
[12] A. Limin,et al. Low-temperature tolerance and genetic potential in wheat (Triticum aestivum L.): response to photoperiod, vernalization, and plant development , 2006, Planta.
[13] C. Fogher,et al. Fine mapping of a Hv CBF gene cluster at the frost resistance locus Fr-H 2 in barley * , 2008 .
[14] Antony V. Cox,et al. Identification of somatically acquired rearrangements in cancer using genome-wide massively parallel paired-end sequencing , 2008, Nature Genetics.
[15] B. Trevaskis,et al. MADS box genes control vernalization-induced flowering in cereals , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[16] A. Oliphant,et al. A draft sequence of the rice genome (Oryza sativa L. ssp. japonica). , 2002, Science.
[17] L. Gusta,et al. A re-evaluation of controlled freeze-tests and controlled environment hardening conditions to estimate the winter survival potential of hardy winter wheats , 2001 .
[18] E. Stockinger,et al. Mapping of barley homologs to genes that regulate low temperature tolerance in Arabidopsis , 2006, Theoretical and Applied Genetics.
[19] André Reis,et al. Psoriasis is associated with increased β-defensin genomic copy number , 2008, Nature Genetics.
[20] R. Ward,et al. Relationship between low-temperature tolerance and vernalization response in wheat and rye , 1996 .
[21] D. Rasmusson,et al. Registration of Morex Barley1 (Reg. No. 158) , 1979 .
[22] Charlotte N. Henrichsen,et al. Side effects of genome structural changes. , 2007, Current opinion in genetics & development.
[23] D. B. Fowler,et al. Selection for Winterhardiness in Wheat. I. Identification of Genotypic Variability1 , 1979 .
[24] F. Sarhan,et al. The regulatory role of vernalization in the expression of low-temperature-induced genes in wheat and rye , 1996, Theoretical and Applied Genetics.
[25] E. Stockinger,et al. Expression levels of barley Cbf genes at the Frost resistance-H2 locus are dependent upon alleles at Fr-H1 and Fr-H2. , 2007, The Plant journal : for cell and molecular biology.
[26] P. Hayes,et al. Two loci on chromosome 5H determine low-temperature tolerance in a ‘Nure’ (winter) × ‘Tremois’ (spring) barley map , 2004, Theoretical and Applied Genetics.
[27] J. Snape,et al. Mapping genes affecting flowering time and frost resistance on chromosome 5B of wheat , 2003, Theoretical and Applied Genetics.
[28] Huanming Yang,et al. A Draft Sequence of the Rice Genome (Oryza sativa L. ssp. japonica) , 2002, Science.
[29] G. Fischbeck. Chapter 3 - Diversification through breeding , 2003 .
[30] Edwin H. Cook,et al. Copy-number variations associated with neuropsychiatric conditions , 2008, Nature.
[31] S. Karlin,et al. Prediction of complete gene structures in human genomic DNA. , 1997, Journal of molecular biology.
[32] T. Close,et al. Barley Cbf3 Gene Identification, Expression Pattern, and Map Location1 , 2002, Plant Physiology.
[33] M. Thomashow,et al. Arabidopsis Transcriptome Profiling Indicates That Multiple Regulatory Pathways Are Activated during Cold Acclimation in Addition to the CBF Cold Response Pathway Online version contains Web-only data. Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1 , 2002, The Plant Cell Online.
[34] S. Yasuda,et al. GENETICS OF EARLINESS AND GROWTH HABIT IN BARLEY , 1970 .
[35] M. Thomashow,et al. Roles of the CBF2 and ZAT12 transcription factors in configuring the low temperature transcriptome of Arabidopsis. , 2004, The Plant journal : for cell and molecular biology.
[36] O. Schabenberger,et al. Arabidopsis CBF1 overexpression induces COR genes and enhances freezing tolerance. , 1998, Science.
[37] T. Hintum,et al. Diversity in barley (Hordeum vulgare. , 2003 .
[38] D. Conrad,et al. Global variation in copy number in the human genome , 2006, Nature.
[39] S. Rhee,et al. Freezing-sensitive tomato has a functional CBF cold response pathway, but a CBF regulon that differs from that of freezing-tolerant Arabidopsis. , 2004, The Plant journal : for cell and molecular biology.
[40] L. Feuk,et al. Detection of large-scale variation in the human genome , 2004, Nature Genetics.
[41] D. Roberts. Identification of loci on chromosome 5A of wheat involved in control of cold hardiness, vernalization, leaf length, rosette growth habit, and height of hardened plants , 1990 .
[42] K. Struhl,et al. Current Protocols in Molecular Biology (New York: Greene Publishing Associates and Wiley-Interscience). Host-Range Shuttle System for Gene Insertion into the Chromosomes of Gram-negative Bacteria. , 1988 .
[43] A. C. Zeven,et al. Classification of landraces and improved cultivars of hexaploid wheats (Triticum aestivum, T. compactum and T. spelta) grown in the USA and described in 1922 , 1991, Euphytica.
[44] G. Breton,et al. TaVRT-1, a Putative Transcription Factor Associated with Vegetative to Reproductive Transition in Cereals1 , 2003, Plant Physiology.
[45] E. Stockinger,et al. Identification of candidate CBF genes for the frost tolerance locus Fr-Am2 in Triticummonococcum , 2008, Plant Molecular Biology.
[46] Jian-Kang Zhu,et al. ICE1: a regulator of cold-induced transcriptome and freezing tolerance in Arabidopsis. , 2003, Genes & development.
[47] J. Dubcovsky,et al. The cold-regulated transcriptional activator Cbf3 is linked to the frost-tolerance locus Fr-A2 on wheat chromosome 5A , 2003, Molecular Genetics and Genomics.
[48] E. Stockinger,et al. Structural, Functional, and Phylogenetic Characterization of a Large CBF Gene Family in Barley , 2005, Plant Molecular Biology.
[49] S. Mccarroll,et al. Copy-number variation and association studies of human disease , 2007, Nature Genetics.
[50] J. Snape,et al. Location of a gene for frost resistance on chromosome 5A of wheat , 1989, Euphytica.
[51] P. Hayes,et al. Molecular and Structural Characterization of Barley Vernalization Genes , 2005, Plant Molecular Biology.
[52] P. Harrison,et al. Localization of expression of three cold-induced genes, blt101, blt4. 9, and blt14, in different tissues of the crown and developing leaves of cold-acclimated cultivated barley , 1998, Plant physiology.
[53] E. Stockinger,et al. Low temperature regulation of the Arabidopsis CBF family of AP2 transcriptional activators as an early step in cold-induced COR gene expression. , 1998, The Plant journal : for cell and molecular biology.
[54] Philip M. Kim,et al. The current excitement about copy-number variation: how it relates to gene duplications and protein families. , 2008, Current opinion in structural biology.
[55] L. Yan,et al. Positional cloning of the wheat vernalization gene VRN1 , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[56] A. Feinberg,et al. A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity. , 1983, Analytical biochemistry.
[57] E. Stockinger,et al. Arabidopsis thaliana CBF1 encodes an AP2 domain-containing transcriptional activator that binds to the C-repeat/DRE, a cis-acting DNA regulatory element that stimulates transcription in response to low temperature and water deficit. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[58] J. Snape,et al. Mapping genes for flowering time and frost tolerance in cereals using precise genetic stocks , 2004, Euphytica.
[59] P. Hayes,et al. Erratum: Large deletions within the first intron in VRN-1 are associated with spring growth habit in barley and wheat (Molecular Genetics and Genomics 273:1 (54-65) DOI: org/10.1007/s00438-004-1095-4) , 2005 .
[60] H. H. Love,et al. Registration of Improved Wheat Varieties , 1926 .
[61] J. Dubcovsky,et al. The expression of several Cbf genes at the Fr-A2 locus is linked to frost resistance in wheat , 2005, Molecular Genetics and Genomics.
[62] A. Stella,et al. Genetic variants of HvCbf14 are statistically associated with frost tolerance in a European germplasm collection of Hordeum vulgare , 2009, Theoretical and Applied Genetics.
[63] S. J. Gilmour,et al. Overexpression of the Arabidopsis CBF3 transcriptional activator mimics multiple biochemical changes associated with cold acclimation. , 2000, Plant physiology.
[64] J. Dubcovsky,et al. A cluster of 11 CBF transcription factors is located at the frost tolerance locus Fr-Am2 in Triticum monococcum , 2006, Molecular Genetics and Genomics.
[65] M. Uemura,et al. Cold hardiness in plants: molecular genetics, cell biology and physiology. Seventh International Plant Cold Hardiness Seminar, Sapporo, Japan, 10-15 July 2004 , 2006 .
[66] J. Thompson,et al. The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. , 1997, Nucleic acids research.
[67] J. Cockram,et al. The Role of Double-Stranded Break Repair in the Creation of Phenotypic Diversity at Cereal VRN1 Loci , 2007, Genetics.
[68] K. S. Quisenberry. Inheritance of Winter Hardiness, Growth Habit, and Stem-Rust Reaction in Crosses Between Minhardi Winter and H-44 Spring Wheats , 1931 .
[69] Fernando A. Villanea,et al. Diet and the evolution of human amylase gene copy number variation , 2007, Nature Genetics.
[70] M. Thomashow,et al. Components of the Arabidopsis C-repeat/dehydration-responsive element binding factor cold-response pathway are conserved in Brassica napus and other plant species. , 2001, Plant physiology.
[71] A. Limin,et al. Interactions among factors regulating phenological development and acclimation rate determine low-temperature tolerance in wheat. , 2004, Annals of botany.
[72] E. Birney,et al. Challenges and standards in integrating surveys of structural variation , 2007, Nature Genetics.
[73] B. Trevaskis,et al. The molecular basis of vernalization-induced flowering in cereals. , 2007, Trends in plant science.