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Polyploidy and Genome Evolution

Editat de Pamela S. Soltis, Douglas E. Soltis
en Limba Engleză Paperback – 9 noi 2014
Polyploidy – whole-genome duplication (WGD) – is a fundamental driver of biodiversity with significant consequences for genome structure, organization, and evolution.  Once considered a speciation process common only in plants, polyploidy is now recognized to have played a major role in the structure, gene content, and evolution of most eukaryotic genomes.  In fact, the diversity of eukaryotes seems closely tied to multiple WGDs. Polyploidy generates new genomic interactions – initially resulting in “genomic and transcriptomic shock” – that must be resolved in a new polyploid lineage.  This process essentially acts as a “reset” button, resulting in genomic changes that may ultimately promote adaptive speciation.
 
This book brings together for the first time the conceptual and theoretical underpinnings of polyploid genome evolution with syntheses of the patterns and processes of genome evolution in diverse polyploid groups.  Because polyploidy is most common and best studied in plants, the book emphasizes plant models, but recent studies of vertebrates and fungi are providing fresh perspectives on factors that allow polyploid speciation and shape polyploid genomes.  The emerging paradigm is that polyploidy – through alterations in genome structure and gene regulation – generates genetic and phenotypic novelty that manifests itself at the chromosomal, physiological, and organismal levels, with long-term ecological and evolutionary consequences.
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Specificații

ISBN-13: 9783642432811
ISBN-10: 3642432816
Pagini: 428
Ilustrații: VIII, 420 p.
Dimensiuni: 155 x 235 x 22 mm
Greutate: 0.59 kg
Ediția:2012
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Evolutionary Significance of Whole-Genome Duplication.- Genetic Consequences of Polyploidy in Plants.- Meiosis in polyploid plants.- Origins of Novel Phenotypic Variation in Polyploids.- Identifying the Phylogenetic Context of Whole-Genome Duplications in Plants.- Ancient and Recent Polyploidy in Monocots.- Genomic Plasticity in Polyploid Wheat.- Maize (Zea mays) as a model for studying the impact of gene and regulatory sequence loss following whole genome duplication.- Polyploidy in legumes.- Jeans, genes, and genomes: cotton as a model for studying polyploidy.-Evolutionary implications of genome and karyotype restructuring in Nicotiana tabacum L.- Polyploid evolution in Spartina: Dealing with highly redundant hybrid genomes.- Allopolyploid speciation in action: the origins and evolution of Senecio cambrensis.- The early stages of polyploidy: rapid and repeated evolution in Tragopogon.- Yeast as a window into changes in genome complexity due to polyploidization.- Two Rounds of Whole Genome Duplication: Evidence and Impact on the Evolution of Vertebrate Innovations.- Polyploidy in fish and the teleost genome duplication.- Polyploidization and sex chromosome evolution in amphibians.-

Recenzii

From the reviews:
“This book by Soltis and Soltis can be fully recommended to students, teachers and advanced researchers or other professionals in all fields of plant science, and not only in evolutionary genetics, for whom it will provide a valuable overview of the recent advances made in the field of the polyploidy-based evolution of eukaryotes, and notably of angiosperms.” (Eric Jenczewski and Karine Alix, Annals of Botany, Vol. 113 (7), May, 2014)

Textul de pe ultima copertă

Polyploidy – whole-genome duplication (WGD) – is a fundamental driver of biodiversity with significant consequences for genome structure, organization, and evolution.  Once considered a speciation process common only in plants, polyploidy is now recognized to have played a major role in the structure, gene content, and evolution of most eukaryotic genomes.  In fact, the diversity of eukaryotes seems closely tied to multiple WGDs. Polyploidy generates new genomic interactions – initially resulting in “genomic and transcriptomic shock” – that must be resolved in a new polyploid lineage.  This process essentially acts as a “reset” button, resulting in genomic changes that may ultimately promote adaptive speciation.
 
This book brings together for the first time the conceptual and theoretical underpinnings of polyploid genome evolution with syntheses of the patterns and processes of genome evolution in diverse polyploid groups.  Because polyploidy is most common and best studied in plants, the book emphasizes plant models, but recent studies of vertebrates and fungi are providing fresh perspectives on factors that allow polyploid speciation and shape polyploid genomes.  The emerging paradigm is that polyploidy – through alterations in genome structure and gene regulation – generates genetic and phenotypic novelty that manifests itself at the chromosomal, physiological, and organismal levels, with long-term ecological and evolutionary consequences.

Caracteristici

First book to give a complete overview on polyploidy Written by experts in plant genetics and genomics Special focus on evolutionary aspects Includes supplementary material: sn.pub/extras Includes supplementary material: sn.pub/extras