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Science 15 December 2000: Vol. 290. no. 5499, pp. 2114 - 2117 DOI: 10.1126/science.290.5499.2114
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Research Articles
The Origins of Genomic Duplications in Arabidopsis
Todd J. Vision,1*
Daniel G. Brown,2
Steven D. Tanksley3
Large segmental duplications cover much of the
Arabidopsis thaliana genome. Little is known about their
origins. We show that they are primarily due to at least four different
large-scale duplication events that occurred 100 to 200 million years
ago, a formative period in the diversification of the angiosperms. A
better understanding of the complex structural history of angiosperm genomes is necessary to make full use of Arabidopsis as a
genetic model for other plant species.
1 USDA-ARS Center for Agricultural
Bioinformatics, 604 Rhodes Hall, Cornell University, Ithaca, NY 14853, USA.
2 Whitehead Institute/MIT Center for Genome
Research, 320 Charles Street, Cambridge, MA 02141, USA.
3 Departments of Plant Breeding and Plant Biology,
252 Emerson Hall, Cornell University, Ithaca, NY 14853, USA.
*
To whom correspondence should be addressed. E-mail:
tv23{at}cornell.edu
Read the Full Text
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- V. Leh-Louis, B. Wirth, L. Despons, S. Wain-Hobson, S. Potier, and J. L. Souciet (2004)
Nucleic Acids Res.
32, 2069-2078
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- DNA Sequence Duplication in Rhodobacter sphaeroides 2.4.1: Evidence of an Ancient Partnership between Chromosomes I and II.
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J. Bacteriol.
186, 2019-2027
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- Tissue-Specific Gene Silencing Mediated by a Naturally Occurring Chalcone Synthase Gene Cluster in Glycine max.
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PLANT CELL
16, 819-835
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- Type-A Arabidopsis Response Regulators Are Partially Redundant Negative Regulators of Cytokinin Signaling.
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PLANT CELL
16, 658-671
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- Evaluation of Monocot and Eudicot Divergence Using the Sugarcane Transcriptome.
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Plant Physiology
134, 951-959
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- De novo variation in life-history traits and responses to growth conditions of resynthesized polyploid Brassica napus (Brassicaceae).
- M. E. Schranz and T. C. Osborn (2004)
Am. J. Botany
91, 174-183
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- Genomic Duplication, Fractionation and the Origin of Regulatory Novelty.
- R. J. Langham, J. Walsh, M. Dunn, C. Ko, S. A. Goff, and M. Freeling (2004)
Genetics
166, 935-945
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- Extensive gene gain associated with adaptive evolution of poxviruses.
- A. McLysaght, P. F. Baldi, and B. S. Gaut (2003)
PNAS
100, 15655-15660
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- Adaptive evolution in the Arabidopsis MADS-box gene family inferred from its complete resolved phylogeny.
- L. P. Martinez-Castilla and E. R. Alvarez-Buylla (2003)
PNAS
100, 13407-13412
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- An Analysis of Microsatellite Loci in Arabidopsis thaliana: Mutational Dynamics and Application.
- V. V. Symonds and A. M. Lloyd (2003)
Genetics
165, 1475-1488
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- Phylogenetic Analyses and Expression Studies Reveal Two Distinct Groups of Calreticulin Isoforms in Higher Plants.
- S. Persson, M. Rosenquist, K. Svensson, R. Galvao, W. F. Boss, and M. Sommarin (2003)
Plant Physiology
133, 1385-1396
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- Genome-Level Evolution of Resistance Genes in Arabidopsis thaliana.
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Genetics
165, 309-319
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