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Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome

Gabriel Keeble-Gagnère, Philippe Rigault, Josquin Tibbits, Raj Pasam, Matthew Hayden, Kerrie Forrest, Zeev Frenkel, Abraham Korol, Emma Huang, Colin Cavanagh, Jen Taylor, Michael Abrouk, Andrew Sharpe, David Konkin, Pierre Sourdille, Benoit Darrier, Frederic Choulet, Aurelien Bernard, Simone Rochfort, Adam Dimech, Nathan Watson-Haigh, Ute Baumann, Delphine Fleury, Paul Eckermann, Angela Juhasz, Sébastien Boisvert, Marc-Alexandre Nolin, Jaroslav Doležel, Hana Šimková, Helena Toegelová, Jan Šafář, Ming-Cheng Luo, Francisco Camara, Matthias Pfeifer, Don Isdale, Johan Nyström-Persson, International Wheat Genome Sequencing Consortium, Dal-Hoe Koo, Matthew Tinning, D Cui, Z Ru, Rudi Appels
doi: https://doi.org/10.1101/363465
Gabriel Keeble-Gagnère
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Philippe Rigault
Gydle;
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Josquin Tibbits
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Raj Pasam
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Matthew Hayden
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Kerrie Forrest
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Zeev Frenkel
Institute of Evolution, University of Haifa;
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Abraham Korol
Institute of Evolution, University of Haifa;
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Emma Huang
CSIRO-Plant Industry;
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Colin Cavanagh
CSIRO-Plant Industry;
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Jen Taylor
CSIRO-Plant Industry;
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Michael Abrouk
Institute of Experimental Botany, Olomouc, Czech Republic;
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Andrew Sharpe
Global Institute of Food Security;
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David Konkin
National Research Council of Canada;
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Pierre Sourdille
INRA UMR1095 Genetics, Diversity and Ecophysiology of Cereals;
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Benoit Darrier
INRA UMR1095 Genetics, Diversity and Ecophysiology of Cereals;
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Frederic Choulet
INRA UMR1095 Genetics, Diversity and Ecophysiology of Cereals;
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Aurelien Bernard
INRA UMR1095 Genetics, Diversity and Ecophysiology of Cereals;
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Simone Rochfort
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Adam Dimech
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Nathan Watson-Haigh
School of Agriculture, Food and Wine, University of Adelaide;
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Ute Baumann
School of Agriculture, Food and Wine, University of Adelaide;
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Delphine Fleury
School of Agriculture, Food and Wine, University of Adelaide;
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Paul Eckermann
School of Agriculture, Food and Wine, University of Adelaide;
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Angela Juhasz
Veterinary and Agriculture, Murdoch University;
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Sébastien Boisvert
Gydle;
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Marc-Alexandre Nolin
Gydle;
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Jaroslav Doležel
Centre of the Region Haná for Biotechnological and Agricultural Research;
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Hana Šimková
Centre of the Region Haná for Biotechnological and Agricultural Research;
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Helena Toegelová
Centre of the Region Haná for Biotechnological and Agricultural Research;
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Jan Šafář
Centre of the Region Haná for Biotechnological and Agricultural Research;
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Ming-Cheng Luo
UC Davis Plant Sciences;
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Francisco Camara
Bioinformatics and Genomics Program, Centre for Genomic Regulation (CRG);
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Matthias Pfeifer
Plant Genome and Systems Biology, Helmholtz Center, Munich;
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Don Isdale
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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Johan Nyström-Persson
Level Five Co. Ltd.;
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Dal-Hoe Koo
Wheat Genetics Resource Center and Department of Plant Pathology, Kansas State University;
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Matthew Tinning
Australian Genome Research Facility;
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D Cui
Henan Agricultural University;
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Z Ru
Henan Institute of Science and Technology
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Rudi Appels
Agriculture Victoria Research, Department of Economic Development, Jobs, Transport and Resources;
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  • For correspondence: rappels@unimelb.edu.au
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Abstract

Background: Numerous scaffold-level sequences for wheat are now being released and, in this context, we report on a strategy for improving the overall assembly to a level comparable to that of the human genome. Results: Using chromosome 7A of wheat as a model, sequence-finished megabase scale sections of this chromosome were established by combining a new independent assembly based on a BAC-based physical map, BAC pool paired end sequencing, chromosome arm specific mate-pair sequencing and Bionano optical mapping with the IWGSC RefSeq v1.0 sequence and its underlying raw data. The combined assembly results in 18 super-scaffolds across the chromosome. The value of finished genome regions is demonstrated for two approximately 2.5 Mb regions associated with yield and the grain quality phenotype of fructan carbohydrate grain levels. In addition, the 50 Mb centromere region analysis incorporates cytological data highlighting the importance of non-sequence data in the assembly of this complex genome region. Conclusions: Sufficient genome sequence information is shown to be now available for the wheat community to produce sequence-finished releases of each chromosome of the reference genome. The high-level completion identified that an array of seven fructosyl transferase genes underpins grain quality and yield attributes are affected by five f-box-only-protein-ubiquitin ligase domain and four root-specific lipid transfer domain genes. The completed sequence also includes the centromere.

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Posted July 09, 2018.
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Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome
Gabriel Keeble-Gagnère, Philippe Rigault, Josquin Tibbits, Raj Pasam, Matthew Hayden, Kerrie Forrest, Zeev Frenkel, Abraham Korol, Emma Huang, Colin Cavanagh, Jen Taylor, Michael Abrouk, Andrew Sharpe, David Konkin, Pierre Sourdille, Benoit Darrier, Frederic Choulet, Aurelien Bernard, Simone Rochfort, Adam Dimech, Nathan Watson-Haigh, Ute Baumann, Delphine Fleury, Paul Eckermann, Angela Juhasz, Sébastien Boisvert, Marc-Alexandre Nolin, Jaroslav Doležel, Hana Šimková, Helena Toegelová, Jan Šafář, Ming-Cheng Luo, Francisco Camara, Matthias Pfeifer, Don Isdale, Johan Nyström-Persson, International Wheat Genome Sequencing Consortium, Dal-Hoe Koo, Matthew Tinning, D Cui, Z Ru, Rudi Appels
bioRxiv 363465; doi: https://doi.org/10.1101/363465
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Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome
Gabriel Keeble-Gagnère, Philippe Rigault, Josquin Tibbits, Raj Pasam, Matthew Hayden, Kerrie Forrest, Zeev Frenkel, Abraham Korol, Emma Huang, Colin Cavanagh, Jen Taylor, Michael Abrouk, Andrew Sharpe, David Konkin, Pierre Sourdille, Benoit Darrier, Frederic Choulet, Aurelien Bernard, Simone Rochfort, Adam Dimech, Nathan Watson-Haigh, Ute Baumann, Delphine Fleury, Paul Eckermann, Angela Juhasz, Sébastien Boisvert, Marc-Alexandre Nolin, Jaroslav Doležel, Hana Šimková, Helena Toegelová, Jan Šafář, Ming-Cheng Luo, Francisco Camara, Matthias Pfeifer, Don Isdale, Johan Nyström-Persson, International Wheat Genome Sequencing Consortium, Dal-Hoe Koo, Matthew Tinning, D Cui, Z Ru, Rudi Appels
bioRxiv 363465; doi: https://doi.org/10.1101/363465

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