Fr. 189.00

The Foxtail Millet Genome

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

This book presents up-to-date information on foxtail millet genomics, with a particular focus on its agronomic importance, genome architecture, marker development, evolutionary and diversity studies, comparative genomics and stress biology. The topics discussed have the potential to open up a new era of crop improvement in foxtail millet and other related grass species.
Foxtail millet (Setaria italica L.) is the oldest domesticated crop in the world (domesticated >8700 years ago) and it has been extensively grown in the semi-arid regions of Asia, Europe and the Americas as a food and fodder crop ever since. Further, as a C4 crop with close genetic relatedness to several biofuel grasses, foxtail millet has been promoted as a model plant. In view of its importance, the US Department of Energy Joint Genome Institute and Beijing Genomics Institute have independently sequenced the genome of foxtail millet. The availability of the draft genome sequence has advanced the genomics andgenetics of this important crop, resulting in the development of large-scale genome-wide molecular markers and demonstration of their utility in genomics-assisted breeding, as well as the identification of the molecular and biological roles of several stress-responsive gene families in connection with abiotic stress tolerance. In addition, several open access databases have been developed to make these resources for crop improvement through structural and functional genomics widely available.

Sommario

Foxtail millet: an introduction.- Foxtail millet genome sequencing, assembly, annotation and application.- Transposable elements in Setaria genomes.- Exploiting genome sequence information to develop genomic resources for foxtail millet improvement.- Breeding strategies in foxtail millet.- Genome wide association studies for improving agronomic traits in foxtail millet.- Genetic structure of foxtail millet landraces.- Genetic determinants of abiotic stress tolerance in foxtail millet.- Genetic transformation of Setaria: A new perspective.- Nutrition potential of foxtail millet in comparison to other millets and major cereals.- Regulation of development and stress response by miRNAs.

Info autore

Gregg Hurwitz is the critically acclaimed author of The Tower, Minutes to Burn, Do No Harm, The Kill Clause, The Program, and Troubleshooter. He holds a B.A. in English and psychology from Harvard University and a master's degree from Trinity College, Oxford University. He lives in Los Angeles.
Dylan Baker, an award-winning stage performer and Tony nominee, has appeared in over 20 films, among them A Gentleman's Game, Random Hearts, and Happiness; he has been a series regular on Murder One and Feds.

Riassunto

This book presents up-to-date information on foxtail millet genomics, with a particular focus on its agronomic importance, genome architecture, marker development, evolutionary and diversity studies, comparative genomics and stress biology. The topics discussed have the potential to open up a new era of crop improvement in foxtail millet and other related grass species.
Foxtail millet (Setaria italica L.) is the oldest domesticated crop in the world (domesticated >8700 years ago) and it has been extensively grown in the semi-arid regions of Asia, Europe and the Americas as a food and fodder crop ever since. Further, as a C4 crop with close genetic relatedness to several biofuel grasses, foxtail millet has been promoted as a model plant. In view of its importance, the US Department of Energy Joint Genome Institute and Beijing Genomics Institute have independently sequenced the genome of foxtail millet. The availability of the draft genome sequence has advanced the genomics andgenetics of this important crop, resulting in the development of large-scale genome-wide molecular markers and demonstration of their utility in genomics-assisted breeding, as well as the identification of the molecular and biological roles of several stress-responsive gene families in connection with abiotic stress tolerance. In addition, several open access databases have been developed to make these resources for crop improvement through structural and functional genomics widely available.

Dettagli sul prodotto

Con la collaborazione di Mano Prasad (Editore), Manoj Prasad (Editore)
Editore Springer, Berlin
 
Lingue Inglese
Formato Copertina rigida
Pubblicazione 01.01.2017
 
EAN 9783319656168
ISBN 978-3-31-965616-8
Pagine 152
Dimensioni 183 mm x 261 mm x 14 mm
Peso 454 g
Illustrazioni XVI, 152 p. 17 illus., 16 illus. in color.
Serie Compendium of Plant Genomes
Compendium of Plant Genomes
Categorie Scienze naturali, medicina, informatica, tecnica > Biologia > Botanica

Biotechnologie, Botanik und Pflanzenwissenschaften, B, Agrarwissenschaften, biotechnology, Agriculture, Biomedical and Life Sciences, Botany & plant sciences, Agricultural science, Genetics (non-medical), Plant Genetics, Plant Genetics and Genomics, Plant breeding, Plant Breeding/Biotechnology, Plant Biotechnology

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