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Genome Evolution
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Genome Evolution - nouveau livre

ISBN: 9781402010217

In the years since the publication of Susumu Ohno's 1970 landmark book Evolution by gene duplication tremendous advances have been made in molecular biology and especially in genomics. St… Plus…

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Genome Evolution: Gene and Genome Duplications and the Origin of Novel Gene Functions - edition reliée, livre de poche

2003, ISBN: 9781402010217

Editor: Meyer, Axel, Editor: van de Peer, Yves, Springer, Hardcover, Auflage: 2003, 252 Seiten, Publiziert: 2003-04-30T00:00:01Z, Produktgruppe: Book, 0.96 kg, Biochemistry, Biological Sc… Plus…

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Genome Evolution Gene and Genome Duplications and the Origin of Novel Gene Functions 2003 - Meyer, Axel und Yves van de Peer
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Meyer, Axel und Yves van de Peer:
Genome Evolution Gene and Genome Duplications and the Origin of Novel Gene Functions 2003 - livre d'occasion

2003

ISBN: 9781402010217

2003 Gepflegter, sauberer Zustand. 1432609/2 Versandkostenfreie Lieferung molecular biology,prokaryotes,RNA,evolution,Chromosom,the origin,saccharomyces cerevisiae,genes,, [PU:Springer Ne… Plus…

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Genome Evolution. Gene and Genome Duplications and the Origin of Novel Gene Functions. - edition reliée, livre de poche

2003, ISBN: 9781402010217

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Meyer, Axel (Editor), and Van de Peer, Yves (Editor):
Genome Evolution - Première édition

2003, ISBN: 9781402010217

Edition reliée

HARDBACK, Neubuch, [ED: 1], P xv + 237 1st Edition., [PU: Springer]

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Détails sur le livre
Genome Evolution: Gene and Genome Duplications and the Origin of Novel Gene Functions

PIn the years since the publication of Susumu Ohno's 1970 landmark book STRONGEvolution by gene duplication/STRONG tremendous advances have been made in molecular biology and especially in genomics. Studies of genome structure and function prerequisite to testing hypotheses of genome evolution were all but impossible until recent methodological advances./PPThis book evaluates newly generated empirical evidence as it pertains to theories of genomic evolutionary patterns and processes. Tests of hypotheses using analyses of complete genomes, interpreted in a phylogenetic context, provide evidence regarding the relative importance of gene duplication. The alternative explanation is that the evolution of regulatory elements that control the expression of and interactions among genes has been a more important force in shaping evolutionary innovation./PPThis collection of papers will be of interest to all academic and industry researchers working in the fields of molecular biology, biotechnology, genomics and genome centers. /P

Informations détaillées sur le livre - Genome Evolution: Gene and Genome Duplications and the Origin of Novel Gene Functions


EAN (ISBN-13): 9781402010217
ISBN (ISBN-10): 1402010214
Version reliée
Date de parution: 2003
Editeur: Springer
256 Pages
Poids: 0,960 kg
Langue: eng/Englisch

Livre dans la base de données depuis 2007-06-06T15:44:39+02:00 (Paris)
Page de détail modifiée en dernier sur 2023-11-24T21:53:00+01:00 (Paris)
ISBN/EAN: 9781402010217

ISBN - Autres types d'écriture:
1-4020-1021-4, 978-1-4020-1021-7
Autres types d'écriture et termes associés:
Auteur du livre: meyer axel, meyer yves, van peer, bernd luderer
Titre du livre: evolution gene duplication, genome duplication, genome evolution gene genome duplications origin novel gene functions, the evolution the genome, origins genome evolution, genom


Données de l'éditeur

Auteur: Axel Meyer; Yves van de Peer
Titre: Genome Evolution - Gene and Genome Duplications and the Origin of Novel Gene Functions
Editeur: Springer; Springer Netherland
237 Pages
Date de parution: 2003-04-30
Dordrecht; NL
Poids: 0,965 kg
Langue: Anglais
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
POD
XV, 237 p.

BB; Evolutionary Biology; Hardcover, Softcover / Biologie; Evolution; Verstehen; Chromosom; RNA; evolution; genes; molecular biology; prokaryotes; saccharomyces cerevisiae; the origin; Biochemistry, general; Human Genetics; Evolutionary Biology; Biochemistry; Medical Genetics; Biochemie; Genetik, Medizin; BC; EA

Foreword; A. Meyer, Y. Van de Peer. Early events in genome evolution. 1. Gene duplication and other evolutionary strategies: from the RNA world to the future; J. Brosius. 2. Major transitions in evolution by genome fusions: from prokaryotes to eukaryotes, metazoans, bilaterians and vertebrates; J. Spring. 3. Detection of gene duplications and block duplications in eukaryotic genomes; Wen-Hsiung Li, et al. 4. The evolutionary demography of duplicate genes; M. Lynch, J.S. Conery. Debating the 2R and 3R genome duplication hypotheses. 5. Functional evolution in the ancestral lineage of vertebrates or when genomic complexity was wagging its morphological tail; R. Aburomia, et al. 6. Numerous groups of chromosomal regional paralogies strongly indicate two genome doublings at the root of the vertebrates; L.-G. Lundin, et al. 7. Are (all) fishes ancient polyploids? Y. Van der Peer, et al. 8. More genes in vertebrates? P.W.H. Holland. 9. 2r or not 2R: testing the hypotheses of genome duplication in early vertebrates; A.L. Hughes, R. Friedman. 10. The 2R hypothesis and the human genome sequence; K. Hokamp, et al. Plant genome evolution. 11. Introns in, introns out in plant gene families: a genomic approach of the dynamics of gene structure; A. Lecharny, et al. 12. Investigating ancient duplication events in the Arabidopsis Genome; J. Raes, et al. Case studies. 13. Crystallin genes: speciallization by changes in gene regulation mat precede gene duplication; J. Piatigorsky. 14. Expansion of the epidermal growth factor receptor family by genome and gene duplication in fish; J.-N. Volff, M. Schartl. 15. The role of gene duplication in the evolution and function of the vertebrate Dlx/distal-less bigene clusters; K. Sumiyama, et al. 16. Dopamine receptors for every species: gene duplications and functional diversification in craniates; S. Le Crom, et al. 17. Nuclear receptors are markers of animal genome evolution; H.E. García, et al. 18. The fates of zebrafish Hox gene duplicates; C. Josefowicz, et al. 19. Phylogenetic analysis of the mammalian Hoc8 non-coding region; Chang-Bae Kim, et al. Gene networks and evolution. 20. Maximum likelihood methods for detecting adaptive evolution after gene duplication; J.P. Bielawski, Ziheng Yang. 21. Approach of the functional evolution of duplicated genes in Saccharomyces cerevisiae using a new classification method based on protein-protein interaction data; C. Brun, et al. 22. Developmental gene networks and evolution; J.P. Rast. Index.

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