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The radish genome / Takeshi Nishio, Hiroyasu Kitashiba, editors.

Contributor(s): Kitashiba, Hiroyasu. | Nishio, T. (Takeshi)
Material type: materialTypeLabelE-bookSeries: (Compendium of plant genomes, 2199-4781).Publisher: Cham, Switzerland : Springer International Publishing, 2017Description: 1 recurso en línea.ISBN: 331959253X; 9783319592534.Subject: Plantas cultivadas | Técnicas agrícolasOnline resources: Click here to access onlineDigital Resources
Contents:
Economic and academic importance of radish -- Speciation and diversification of radish -- Genetic maps and whole genome sequences of radish -- Gene annotation and database of the radish -- Comparative analysis of the radish genome with Brassica genomes -- DNA polymorphism and genetic diversity of Raphanus accessions -- Cytoplasmic male sterility and mitochondrial genome variations in radish -- Gene expression profiles during tuberous root development -- MicroRNAs associated with tuberous root development -- Genetic profile of glucosinolate biosynthesis -- Genes for bolting and flowering -- Molecular mapping of disease resistance genes -- Polymorphism of self-incompatibility genes -- The use of genome information for intergeneric hybridization breeding -- F1 hybrid breeding using genome information.
Abstract: This book summarizes the latest information and the status quo of radish genome studies to stimulate innovations and improvements in breeding techniques and to promote further advances in the field. Radish (Raphanus sativus) is a member of the Brassicaceae family and is cultivated worldwide. Its varieties have been diversified in terms of size, shape, and the color of their roots and bio-components. Thanks to the development of high-throughput molecular techniques using next generation sequencers, complete genomes of cultivated and wild radish plants have been sequenced and published with annotations of predicted genes and single nucleotide polymorphism (SNP) information between radish cultivars and accessions. These, together with the construction of a high-density genetic map of radish and profiling of expression sequences in radish organs, have accelerated genetic studies, such as the identification of genes or loci associated with root development, pungent components, and plant disease resistance. Providing an overview of these advances, this book is a valuable resource for scientists involved in plant genetic research and crop breeding.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería SB351.R3 2017 EB (Browse shelf(Opens below)) Acceso electrónico eBook.20024191
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Includes index.

Economic and academic importance of radish -- Speciation and diversification of radish -- Genetic maps and whole genome sequences of radish -- Gene annotation and database of the radish -- Comparative analysis of the radish genome with Brassica genomes -- DNA polymorphism and genetic diversity of Raphanus accessions -- Cytoplasmic male sterility and mitochondrial genome variations in radish -- Gene expression profiles during tuberous root development -- MicroRNAs associated with tuberous root development -- Genetic profile of glucosinolate biosynthesis -- Genes for bolting and flowering -- Molecular mapping of disease resistance genes -- Polymorphism of self-incompatibility genes -- The use of genome information for intergeneric hybridization breeding -- F1 hybrid breeding using genome information.

This book summarizes the latest information and the status quo of radish genome studies to stimulate innovations and improvements in breeding techniques and to promote further advances in the field. Radish (Raphanus sativus) is a member of the Brassicaceae family and is cultivated worldwide. Its varieties have been diversified in terms of size, shape, and the color of their roots and bio-components. Thanks to the development of high-throughput molecular techniques using next generation sequencers, complete genomes of cultivated and wild radish plants have been sequenced and published with annotations of predicted genes and single nucleotide polymorphism (SNP) information between radish cultivars and accessions. These, together with the construction of a high-density genetic map of radish and profiling of expression sequences in radish organs, have accelerated genetic studies, such as the identification of genes or loci associated with root development, pungent components, and plant disease resistance. Providing an overview of these advances, this book is a valuable resource for scientists involved in plant genetic research and crop breeding.

Online resource; title from PDF title page (EBSCO, viewed October 17, 2017).

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