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A whole-genome shotgun approach for assembling and anchoring the hexaploid bread wheat genome
Authors
A Graner
A Kovach
+82 more
A Zimin
Adam Session
AR Hastie
AR Quinlan
Aydın Buluç
B Nystedt
C Alkan
C Feuillet
C Feuillet
C Saintenac
CR Cavanagh
CW Nossa
D Arend
Daniel S Rokhsar
E Paux
EK Khlestkina
EP Wilhelm
Evangelos Georganas
EW Myers
F Choulet
G Zhang
Gary J Muehlbauer
H Li
H Li
HQ Ling
I Birol
International Barley Genome Sequencing Consortium
International Rice Genome Sequencing P
International Wheat Genome Sequencing Consortium
J Dolezel
J Jia
J Jurka
J Oeveren van
JA Chapman
JA Poland
Jarrod A Chapman
JC Venter
Jeremy Schmutz
Jerry Jenkins
Jesse A Poland
JJ Smith
JL Weber
K Arumuganathan
K Devos
K Mochida
Katherine A Yelick
KD Pruitt
Kerrie Barry
KR Bradnam
KS Caldwell
L Ramsay
Leonid Oliker
LG Neves
LJ Williams
M Mascher
M Mascher
M Mascher
M Mascher
M Muñoz-Amatriaín
M-C Luo
Martin Mascher
ME Sorrells
MJ Truco
MW Hahn
N Poursarebani
Nils Stein
P Green
PS Schnable
R Brenchley
R Flavell
Robbie Waugh
SF Altschul
SF Altschul
Sunish Sehgal
T Belova
The Mouse Genome Sequencing Consortium
Uwe Scholz
Veronika Strnadova
X Wang
X Xu
Y Wu
Z Zhang
Publication date
1 January 2015
Publisher
'Springer Science and Business Media LLC'
Doi
View
on
PubMed
Abstract
Citation: Chapman, J. A., Mascher, M., Buluç, A., Barry, K., Georganas, E., Session, A., . . . Rokhsar, D. S. (2015). A whole-genome shotgun approach for assembling and anchoring the hexaploid bread wheat genome. Genome Biology, 16(1). doi:10.1186/s13059-015-0582-8Polyploid species have long been thought to be recalcitrant to whole-genome assembly. By combining high-throughput sequencing, recent developments in parallel computing, and genetic mapping, we derive, de novo, a sequence assembly representing 9.1 Gbp of the highly repetitive 16 Gbp genome of hexaploid wheat, Triticum aestivum, and assign 7.1 Gb of this assembly to chromosomal locations. The genome representation and accuracy of our assembly is comparable or even exceeds that of a chromosome-by-chromosome shotgun assembly. Our assembly and mapping strategy uses only short read sequencing technology and is applicable to any species where it is possible to construct a mapping population. © 2015 Chapman et al. licensee BioMed Central.Additional Authors: Muehlbauer, G. J.;Stein, N.;Rokhsar, D. S
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