Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium

Tuberosa R., Graner A., Frison E. (eds).

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Bibliographic Details
Main Authors: Budak, Hikmet, Hernández Molina, Pilar, Schulman, Alan H.
Format: capítulo de libro biblioteca
Language:English
Published: Springer Nature 2014
Subjects:Brachypodium, Synteny, Model plants, Triticeae, Pooideae, Aveneae, Barley, Wheat, Phylogenetics, Cytogenetics, Genomics, Genome evolution, Germplasm collections, Mutagenesis, TILLING, T-DNA insertion lines, Trans-formation, Gene silencing, VIGS, Bioinformatics, Polyploidization, Molecularmarkers, Genome sequence, Map-based cloning, Transcription, Gene function, Biotic stress, Abiotic stress, Bioenergy, Yield, Plant architecture, Grain quality,
Online Access:http://hdl.handle.net/10261/188090
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spelling dig-ias-es-10261-1880902019-09-27T10:42:45Z Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium Budak, Hikmet Hernández Molina, Pilar Schulman, Alan H. Brachypodium Synteny Model plants Triticeae Pooideae Aveneae Barley Wheat Phylogenetics Cytogenetics Genomics Genome evolution Germplasm collections Mutagenesis TILLING T-DNA insertion lines Trans-formation Gene silencing VIGS Bioinformatics Polyploidization Molecularmarkers Genome sequence Map-based cloning Transcription Gene function Biotic stress Abiotic stress Bioenergy Yield Plant architecture Grain quality Tuberosa R., Graner A., Frison E. (eds). Brachypodium was proposed to become the Arabidopsis of the cereals due to its small stature, rapid life cycle, phylogenetic proximity to the “core Pooids,” and small genome. Due to the availability of a high quality genome sequence and the development of many tools for functional genomics, it has lived up to this promise. Here, the biology, genetics, and genomics of Brachypodium will be reviewed as a context for the use of the plant, particularly the annual diploid B. distachyon, as a research system. The available resources will be summarized. The use of Brachypodium as a tool for research on the cereal crops will be presented, as will current research in Brachypodium itself on traits relevant to grain and bioenergy production. Peer reviewed 2019-08-13T06:18:20Z 2019-08-13T06:18:20Z 2014 capítulo de libro http://purl.org/coar/resource_type/c_3248 Genomics of Plant Genetic Resources 24: 585-613 (2014) 978-94-007-7571-8 978-94-007-7572-5 (online) http://hdl.handle.net/10261/188090 10.1007/978-94-007-7572-5_24 en https://doi.org/10.1007/978-94-007-7572-5_24 Sí none Springer Nature
institution IAS ES
collection DSpace
country España
countrycode ES
component Bibliográfico
access En linea
databasecode dig-ias-es
tag biblioteca
region Europa del Sur
libraryname Biblioteca del IAS España
language English
topic Brachypodium
Synteny
Model plants
Triticeae
Pooideae
Aveneae
Barley
Wheat
Phylogenetics
Cytogenetics
Genomics
Genome evolution
Germplasm collections
Mutagenesis
TILLING
T-DNA insertion lines
Trans-formation
Gene silencing
VIGS
Bioinformatics
Polyploidization
Molecularmarkers
Genome sequence
Map-based cloning
Transcription
Gene function
Biotic stress
Abiotic stress
Bioenergy
Yield
Plant architecture
Grain quality
Brachypodium
Synteny
Model plants
Triticeae
Pooideae
Aveneae
Barley
Wheat
Phylogenetics
Cytogenetics
Genomics
Genome evolution
Germplasm collections
Mutagenesis
TILLING
T-DNA insertion lines
Trans-formation
Gene silencing
VIGS
Bioinformatics
Polyploidization
Molecularmarkers
Genome sequence
Map-based cloning
Transcription
Gene function
Biotic stress
Abiotic stress
Bioenergy
Yield
Plant architecture
Grain quality
spellingShingle Brachypodium
Synteny
Model plants
Triticeae
Pooideae
Aveneae
Barley
Wheat
Phylogenetics
Cytogenetics
Genomics
Genome evolution
Germplasm collections
Mutagenesis
TILLING
T-DNA insertion lines
Trans-formation
Gene silencing
VIGS
Bioinformatics
Polyploidization
Molecularmarkers
Genome sequence
Map-based cloning
Transcription
Gene function
Biotic stress
Abiotic stress
Bioenergy
Yield
Plant architecture
Grain quality
Brachypodium
Synteny
Model plants
Triticeae
Pooideae
Aveneae
Barley
Wheat
Phylogenetics
Cytogenetics
Genomics
Genome evolution
Germplasm collections
Mutagenesis
TILLING
T-DNA insertion lines
Trans-formation
Gene silencing
VIGS
Bioinformatics
Polyploidization
Molecularmarkers
Genome sequence
Map-based cloning
Transcription
Gene function
Biotic stress
Abiotic stress
Bioenergy
Yield
Plant architecture
Grain quality
Budak, Hikmet
Hernández Molina, Pilar
Schulman, Alan H.
Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium
description Tuberosa R., Graner A., Frison E. (eds).
format capítulo de libro
topic_facet Brachypodium
Synteny
Model plants
Triticeae
Pooideae
Aveneae
Barley
Wheat
Phylogenetics
Cytogenetics
Genomics
Genome evolution
Germplasm collections
Mutagenesis
TILLING
T-DNA insertion lines
Trans-formation
Gene silencing
VIGS
Bioinformatics
Polyploidization
Molecularmarkers
Genome sequence
Map-based cloning
Transcription
Gene function
Biotic stress
Abiotic stress
Bioenergy
Yield
Plant architecture
Grain quality
author Budak, Hikmet
Hernández Molina, Pilar
Schulman, Alan H.
author_facet Budak, Hikmet
Hernández Molina, Pilar
Schulman, Alan H.
author_sort Budak, Hikmet
title Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium
title_short Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium
title_full Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium
title_fullStr Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium
title_full_unstemmed Analysis and Exploitation of Cereal Genomes with the Aid of Brachypodium
title_sort analysis and exploitation of cereal genomes with the aid of brachypodium
publisher Springer Nature
publishDate 2014
url http://hdl.handle.net/10261/188090
work_keys_str_mv AT budakhikmet analysisandexploitationofcerealgenomeswiththeaidofbrachypodium
AT hernandezmolinapilar analysisandexploitationofcerealgenomeswiththeaidofbrachypodium
AT schulmanalanh analysisandexploitationofcerealgenomeswiththeaidofbrachypodium
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