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Jacqueline Batley

Researcher at University of Western Australia

Publications -  1394
Citations -  78198

Jacqueline Batley is an academic researcher from University of Western Australia. The author has contributed to research in topics: Large Hadron Collider & Lepton. The author has an hindex of 119, co-authored 1212 publications receiving 68752 citations. Previous affiliations of Jacqueline Batley include Universidade Nova de Lisboa & Heidelberg University.

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Shifting the limits in wheat research and breeding using a fully annotated reference genome

Rudi Appels, +207 more
- 17 Aug 2018 - 
TL;DR: This annotated reference sequence of wheat is a resource that can now drive disruptive innovation in wheat improvement, as this community resource establishes the foundation for accelerating wheat research and application through improved understanding of wheat biology and genomics-assisted breeding.
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The genome of the mesopolyploid crop species Brassica rapa

Xiaowu Wang, +116 more
- 01 Oct 2011 - 
TL;DR: The annotation and analysis of the draft genome sequence of Brassica rapa accession Chiifu-401-42, a Chinese cabbage, and used Arabidopsis thaliana as an outgroup for investigating the consequences of genome triplication, such as structural and functional evolution.
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Early allopolyploid evolution in the post-Neolithic Brassica napus oilseed genome

Boulos Chalhoub, +86 more
- 22 Aug 2014 - 
TL;DR: The polyploid genome of Brassica napus, which originated from a recent combination of two distinct genomes approximately 7500 years ago and gave rise to the crops of rape oilseed, is sequenced.
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Combined Measurement of the Higgs Boson Mass in pp Collisions at √s=7 and 8 TeV with the ATLAS and CMS Experiments

Georges Aad, +5120 more
TL;DR: A measurement of the Higgs boson mass is presented based on the combined data samples of the ATLAS and CMS experiments at the CERN LHC in the H→γγ and H→ZZ→4ℓ decay channels.
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A chromosome-based draft sequence of the hexaploid bread wheat (Triticum aestivum) genome

Klaus F. X. Mayer, +95 more
- 18 Jul 2014 - 
TL;DR: Insight into the genome biology of a polyploid crop provide a springboard for faster gene isolation, rapid genetic marker development, and precise breeding to meet the needs of increasing food demand worldwide.