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A synteny-based draft genome sequence of the forage grass Lolium perenne
Stephen L. Byrne
, Istvan Nagy
, Matthias Pfeifer
, Ian Armstead
, Suresh Swain
, Bruno Studer
,
Klaus Mayer
, Jacqueline D. Campbell
, Adrian Czaban
, Stephan Hentrup
, Frank Panitz
, Christian Bendixen
, Jakob Hedegaard
, Mario Caccamo
, Torben Asp
Aarhus University
Helmholtz Zentrum München German Research Center for Environmental Health
Roche Innovation Center Munich
Institute of Biological, Environmental and Rural Sciences
ETH Zurich
Iowa State University
Aarhus University
Aarhus University Hospital
Gut Health and Food Safety Programme
Research output
:
Contribution to journal
›
Article
›
peer-review
153
Scopus citations
Overview
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Keyphrases
Synteny
100%
Forage Grass
100%
Lolium Perenne
100%
Perennial Ryegrass
100%
Draft Genome Sequence
100%
Genome Sequencing
66%
Barley
66%
Temperate Region
66%
Breeding Progress
66%
Grassland
66%
Grass Species
66%
Grass Family
66%
Turfgrass
66%
Valuable Resources
66%
Transcriptome
33%
Wheat
33%
Pollen Allergen
33%
Transcriptional Changes
33%
Gene Model
33%
Mature Pollen
33%
Pollination
33%
Molecular Breeding
33%
New Variety
33%
Genomic Prediction
33%
Gene Order
33%
Pollen Grains
33%
Brachypodium Distachyon
33%
Poaceae
33%
Sequence Assembly
33%
Colinearity
33%
Outcrossing
33%
Self-incompatibility
33%
Pistil
33%
Pooideae
33%
Variety Development
33%
Gametophytic Self-incompatibility
33%
Transcriptomic Data
33%
Agricultural and Biological Sciences
Lolium perenne
100%
Forage Grasses
100%
Turf Grasses
33%
Grassland
33%
Transcriptome
33%
Stigma
16%
New Variety
16%
Brachypodium distachyon
16%
Brachypodium
16%
Pooideae
16%
Molecular Breeding
16%
Pistil
16%
Allergen
16%
Poaceae
16%
Outcrossing
16%
Biochemistry, Genetics and Molecular Biology
Synteny
100%
Perennial Ryegrass
100%
Self Incompatibility
33%
Transcriptome
33%
Outcrossing
16%
Gene Order
16%
Molecular Breeding
16%
Poaceae
16%
Genomics
16%
Brachypodium
16%