Analysis of the bread wheat genome using whole-genome shotgun sequencing

Author:

Brenchley Rachel,Spannagl Manuel,Pfeifer Matthias,Barker Gary L. A.,D’Amore Rosalinda,Allen Alexandra M.,McKenzie Neil,Kramer Melissa,Kerhornou Arnaud,Bolser Dan,Kay Suzanne,Waite Darren,Trick Martin,Bancroft Ian,Gu Yong,Huo Naxin,Luo Ming-Cheng,Sehgal Sunish,Gill Bikram,Kianian Sharyar,Anderson Olin,Kersey Paul,Dvorak Jan,McCombie W. Richard,Hall Anthony,Mayer Klaus F. X.,Edwards Keith J.,Bevan Michael W.,Hall Neil

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference44 articles.

1. United States. Department of Agriculture. World Agricultural Supply and Demand Estimates. Report No. WASDE-511; http://usda01.library.cornell.edu/usda/current/wasde/wasde-10-11-2012.pdf (2012)

2. Food and Agriculture Organisation of the United Nations. http://faostat.fao.org/default.aspx?lang=en (2011)

3. Nesbitt, M. & Samuel, D. in Hulled Wheats (eds Padulosi, S., Hammer, K. & Heller, J. ) 41–100 (Proc. 1st Internat. Workshop Hulled Wheats, International Plant Genetic Resources Institute, 1996)

4. Dvorak, J., Akhunov, E. D., Akhunov, A. R., Deal, K. R. & Luo, M. C. Molecular characterization of a diagnostic DNA marker for domesticated tetraploid wheat provides evidence for gene flow from wild tetraploid wheat to hexaploid wheat. Mol. Biol. Evol. 23, 1386–1396 (2006)

5. Salse, J. et al. New insights into the origin of the B genome of hexaploid wheat: evolutionary relationships at the SPA genomic region with the S genome of the diploid relative Aegilops speltoides. BMC Genomics 9, 555 (2008)

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